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Journal articles on the topic 'Hydrometeorological hazard'

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1

Lanza, L., and F. Siccardi. "Hydrometeorological hazard in A changing perspective." Surveys in Geophysics 16, no. 2 (1995): 137–39. http://dx.doi.org/10.1007/bf00665776.

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2

Tejakusuma, I. G., E. H. Sittadewi, and R. Fitriani. "Hydrometeorological hazard detection and warning for risk reduction in West Java, Indonesia." IOP Conference Series: Earth and Environmental Science 1192, no. 1 (2023): 012043. http://dx.doi.org/10.1088/1755-1315/1192/1/012043.

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Abstract Climate-related disasters, including hydrometeorological disasters, have increased over the last decade, accounting for more than 90% of all-natural disasters in Indonesia. To reduce the risk of disaster, the hydrometeorological disaster must be mitigated. The research, carried out at Sukakerti and Tugumukti villages in West Java, aimed at assessing flash flood disaster conditions and designing hydrometeorological disaster early warning instrumentation for community preparedness. Sukakerti Village has a V-shaped river valley and winding primary and secondary forest morphology. Rainfal
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3

Radeva, Kalina, and Nina Nikolova. "Hydrometeorological Drought hazard and vulnerability assessment for Northern Bulgaria." Geographica Pannonica 24, no. 2 (2020): 112–23. http://dx.doi.org/10.5937/gp24-25074.

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4

Ahmed, A., MS Hossain, and AK Majumder. "Impact of Hydrometeorological Hazards on Agricultural Production at Chalan Beel, Bangladesh." SAARC Journal of Agriculture 18, no. 2 (2021): 181–93. http://dx.doi.org/10.3329/sja.v18i2.51118.

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Agriculture of Bangladesh is closely dependent on weather, rainfall pattern and land formation. However, frequent hydro-meteorological hazards cause to adversely affect the normal agricultural process and production. This study aimed to assess the impact of Hydro meteorological hazards on the crop cultivation practices, possible mitigation and adaptation measures for the farmers at Chalan Beel area under Pabna district, Bangladesh. There are 90 people having land and engaged with crop cultivation directly at Chalan Beel were been selected by applying purposive sampling method and interviewed b
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Carlos Lam, Juan, Jürgen Hackl, Magnus Heitzler, Bryan T. Adey, and Lorenz Hurni. "Impact Assessment of Extreme Hydrometeorological Hazard Events on Road Networks." Journal of Infrastructure Systems 26, no. 2 (2020): 04020005. http://dx.doi.org/10.1061/(asce)is.1943-555x.0000530.

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Kroll, Josephin, Jasper M. C. Denissen, Mirco Migliavacca, Wantong Li, Anke Hildebrandt, and Rene Orth. "Spatially varying relevance of hydrometeorological hazards for vegetation productivity extremes." Biogeosciences 19, no. 2 (2022): 477–89. http://dx.doi.org/10.5194/bg-19-477-2022.

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Abstract. Vegetation plays a vital role in the Earth system by sequestering carbon, producing food and oxygen, and providing evaporative cooling. Vegetation productivity extremes have multi-faceted implications, for example on crop yields or the atmospheric CO2 concentration. Here, we focus on productivity extremes as possible impacts of coinciding, potentially extreme hydrometeorological anomalies. Using monthly global satellite-based Sun-induced chlorophyll fluorescence data as a proxy for vegetation productivity from 2007–2015, we show that vegetation productivity extremes are related to hy
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Harrison, Sara E., Sally H. Potter, Raj Prasanna, Emma E. H. Doyle, and David Johnston. "Identifying the Impact-Related Data Uses and Gaps for Hydrometeorological Impact Forecasts and Warnings." Weather, Climate, and Society 14, no. 1 (2022): 155–76. http://dx.doi.org/10.1175/wcas-d-21-0093.1.

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Abstract Impact forecasts and warnings (IFW) are key to resilience for hydrometeorological hazards. Communicating the potential social, economic, and environmental hazard impacts allows individuals and communities to adjust their plans and better prepare for the consequences of the hazard. IFW systems require additional knowledge about impacts and underlying vulnerability and exposure. Lack of data or knowledge about impacts, vulnerability, and exposure has been identified as a challenge for IFW implementation. In this study, we begin to address this challenge by developing an understanding of
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8

Docherty, Julia M., Feng Mao, Wouter Buytaert, Julian RA Clark, and David M. Hannah. "A framework for understanding water-related multi-hazards in a sustainable development context." Progress in Physical Geography: Earth and Environment 44, no. 2 (2020): 267–84. http://dx.doi.org/10.1177/0309133319900926.

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Hazards often do not occur in isolation and, for this reason, a multi-hazard approach is vital in realising their impact and providing solutions for disaster risk reduction and sustainable development. We present a novel framework that emerges from a bibliometric analysis of the multi-hazard literature and a critical appraisal of the existing approaches. It was found that multi-hazard research has expanded greatly over the last 20 years, furthering our understanding of the subject with important applications in risk assessment and management. These studies have contextualised multi-hazards, de
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Mavrouli, Maria, Spyridon Mavroulis, Efthymios Lekkas, and Athanassios Tsakris. "Infectious Diseases Associated with Hydrometeorological Hazards in Europe: Disaster Risk Reduction in the Context of the Climate Crisis and the Ongoing COVID-19 Pandemic." International Journal of Environmental Research and Public Health 19, no. 16 (2022): 10206. http://dx.doi.org/10.3390/ijerph191610206.

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Hydrometeorological hazards comprise a wide range of events, mainly floods, storms, droughts, and temperature extremes. Floods account for the majority of the related disasters in both developed and developing countries. Flooding alters the natural balance of the environment and frequently establish a favorable habitat for pathogens and vectors to thrive. Diseases caused by pathogens that require vehicle transmission from host to host (waterborne) or a host/vector as part of their life cycle (vector-borne) are those most likely to be affected by flooding. Considering the most notable recent de
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10

Viazilov, E. D., and D. A. Melnikov. "INCREASING AWARENESS FOR ADAPTATION TO NATURAL HAZARDOUS AND EXTREME EVENTS." Journal of Oceanological Research 52, no. 2 (2024): 169–82. http://dx.doi.org/10.29006/1564-2291.jor-2024.52(2).9.

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The global community faces major economic challenges related to the adaptation of enterprises and populations to climate change and natural hazards. For the first time, as part of the implementation of the new paradigm of hydrometeorological support, it proposed to increase the awareness of enterprise managers and the population with IT achievements. The basic principles for the development of hydrometeorological support presented, which will help raise the awareness of enterprise managers and the population. To increase awareness, services for identifying natural hazards in the flow of operat
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11

Taoukidou, Nikoleta, Dimitrios Karpouzos, and Pantazis Georgiou. "Flood Hazard Assessment Through AHP, Fuzzy AHP, and Frequency Ratio Methods: A Comparative Analysis." Water 17, no. 14 (2025): 2155. https://doi.org/10.3390/w17142155.

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Floods are the biggest hydrometeorological disaster, affecting millions annually. Thus, flood hazard assessment is crucial and plays a pivotal role in rational water management. This study was undertaken to evaluate flood hazards through the application of MCDM methods and a bivariate statistical model integrated with GIS. The methodologies applied were AHP, fuzzy AHP, and the frequency ratio. Eight flood-related criteria were considered—elevation, flow accumulation, geology, slope, land use/land cover (LULC), distance from the drainage network, drainage density, and rainfall index—for the con
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Aliyah, Nur, Supriatna, and A. Azis Kurniawan. "A Study on the Potential Vulnerability of Debris Flow Hazard in Sukabumi Regency." Jurnal Lanskap Indonesia 14, no. 2 (2022): 45–49. http://dx.doi.org/10.29244/jli.v14i2.39087.

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Debris-flow hazards are a hydrometeorological disaster that often occurs in parts of Indonesia. The intensity of Debris-flow hazards increases Debris-flow hazards are a Debris-flow Debris-flow hazards are a hydrometeorological disaster that often occurs in parts of Indonesia. The intensity of Debris-flow hazards increases in various parts of Indonesia in line with climate change and environmental degradation. Sukabumi Regency has a diverse topography with a relatively high annual rainfall rate of 2,805 mm/year with 144 rainy days. In 2020, Sukabumi Regency was affected by Debris-flow hazards i
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Sfetsos, Athanasios, Nadia Politi, and Diamando Vlachogiannis. "Multi-Hazard Extreme Scenario Quantification Using Intensity, Duration, and Return Period Characteristics." Climate 11, no. 12 (2023): 242. http://dx.doi.org/10.3390/cli11120242.

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Many modern frameworks for community resilience and emergency management in the face of extreme hydrometeorological and climate events rely on scenario building. These scenarios typically cover multiple hazards and assess the likelihood of their occurrence. They are quantified by their main characteristics, including likelihood of occurrence, intensity, duration, and spatial extent. However, most studies in the literature focus only on the first two characteristics, neglecting to incorporate the internal hazard dynamics and their persistence over time. In this study, we propose a multidimensio
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14

Yafyazova, R., B. Stepanov, and S. Buralhiev. "REVIEW OF DEBRIS-FLOW HAZARD CAUSED BY RAINFALL IN THE MOUNTAIN TERRITORY OF THE REPUBLIC OF KAZAKHSTAN FOR 2023." Hydrometeorology and Ecology 113, no. 2 (2024): 150–68. http://dx.doi.org/10.54668/2789-6323-2024-113-2-150-168.

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The review was prepared based on the results of monitoring the debris-flow hazard caused by rainfall in the mountainous territory of the Republic of Kazakhstan for 2023. Monitoring was carried out for debris-flow hazard areas of Almaty, Zhetysu, Zhambyl, Turkestan, Mangistau, Abay and East Kazakhstan regions. The Ile, Kungey, Teriskey, Zhetysu, Kyrgyz and Talas Alatau, Ugam, Mangystau, Saur, Tarbagatai and Kazakhstan Altai mountains ridges are debris-flow hazard areas. The Review contains a map of debris-flow hazard on the territory of the Republic of Kazakhstan, information on the hydrometeor
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15

Bhandari, Ganesh. "A Review of Flood Risk Assessment Due to Probable Maximum Precipitation in the West Rapti River Basin, Nepal." INTERNATIONAL JOURNAL OF SCIENTIFIC RESEARCH IN ENGINEERING AND MANAGEMENT 09, no. 05 (2025): 1–9. https://doi.org/10.55041/ijsrem47121.

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Abstract Floods driven by extreme precipitation events pose significant risks to communities, infrastructure, and ecosystems, particularly in regions with complex topography, such as Nepal. Probable Maximum Precipitation (PMP) is a critical parameter for assessing flood risk and designing resilient infrastructure. This review examines the methodologies and findings of a study focused on flood risk assessment in the West Rapti River Basin, Nepal, with emphasis on PMP and Probable Maximum Flood (PMF). This study employs hydrometeorological and statistical methods to estimate PMP, utilizes Snyder
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16

Mahmood, Shakeel, and Attia Atiq. "Debris Flow Hazard Assessment in District Chitral, Eastern Hindu Kush, Pakistan." Prevention and Treatment of Natural Disasters 1, no. 3 (2022): 1–10. http://dx.doi.org/10.54963/ptnd.v1i3.88.

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The aim of this study is debris flow risk zonation using geological and hydrometeorological indicators in district Chitral, Hindu Kush Region Northwest Pakistan. The research is based on secondary data. Multi criteria Analysis (MCA) in Geographical Information System (GIS) environment was used to achieve the objective of the study. The geological and hydrometeorological parameters were analyzed by making five classes of each parameter. The classes are ranked as most favorable and least favorable with numerical weights. The weights were assigned in accordance to their importance in debris flow
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17

Glantz, Michael H., Lino Naranjo-Diaz, Qian Ye, and Gregory E. Pierce. "Mainstreaming the Full ENSO: Linking Present Weather and Future Climate." International Journal of Disaster Risk Science 13, no. 6 (2022): 829–41. http://dx.doi.org/10.1007/s13753-022-00459-6.

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AbstractIn this article we propose that all countries that are striving to become a Weather-Ready Nation (WRN) would benefit greatly from including El Niño-Southern Oscillation (ENSO)-related research findings into their decision-making processes, not only when an El Niño or a La Niña forecast has been issued quasi-periodically. For an aspiring WRN, to benefit from ENSO information, such as disruptive or beneficial changes that could be foreseeably expected to occur in seasonal flow and in sub-seasonal hydrometeorological anomalies, requires its continuous mainstreaming about the status of the
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18

Yuniartanti, Rizki Kirana. "Rekomendasi Adaptasi dan Mitigasi Bencana Banjir di Kawasan Rawan Bencana (KRB) Banjir Kota Bima." Journal of Regional and Rural Development Planning 2, no. 2 (2018): 118. http://dx.doi.org/10.29244/jp2wd.2018.2.2.118-132.

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Flood disaster occurred on December 21, 2016, December 23, 2016, and January 2, 2017 in Bima city area, covering Mpunda district, Rasanae Timur district, Asakota district, Rasanae Barat district, and Raba district. The urban area is the most affected area of flash flood, mainly residential areas that are located more than 50 meters from the flood plains, with flood heights ranging from 1 to 4 meters. The main factor that caused flood disaster is high rainfall. In addition to the hydrometeorological factor, flood in Bima city was caused by various factors, including its location at a basin area
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19

Ismailov, N. Y., and A. U. Chymyrov. "MAPPING OF AVALANCHE HAZARD ALONG THE OSH-BISHKEK ROAD." Herald of KSUCTA, №2, Part 1, 2022, no. 2-1-2022 (April 30, 2022): 276–82. http://dx.doi.org/10.35803/1694-5298.2022.2.276-282.

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This article describes in detail the new methodology and results of research on mapping and development of the avalanche hazard geodatabase of the Bishkek-Osh transport corridor. The Bishkek-Osh Road, connecting the northern and southern parts of the country, has a strategic role, but prone to various types of natural and man-made risks, the most frequent of which are avalanches. Reduction of the avalanche risk, which annually cause significant socio-economic losses, is possible with the application of new technologies, scientific and technological achievements. The research has used modern ge
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20

Widjonarko, Widjonarko, and Maryono Maryono. "Sustainable Land Use Model In Garang Watershed." IOP Conference Series: Earth and Environmental Science 1082, no. 1 (2022): 012028. http://dx.doi.org/10.1088/1755-1315/1082/1/012028.

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Abstract Land cover change is a phenomenon that often occurs along with population growth and economic activity. This phenomenon not only occurs in urban areas but also penetrates into suburban areas, which incidentally have an important role in the water flow system. The same condition occurs in the Garang Watershed, Semarang City, where changes in land cover have begun to penetrate the water catchment area. Land cover change in the Garang watershed system will certainly have consequences for potential water-related disasters, and it will get worse due to climate change. Climate change in man
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21

Rahmat, Gernowo, and Purwantoro Sasongko Dwi. "Tropical convective cloud growth models for hydrometeorological disaster mitigation in Indonesia." Global Journal of Engineering and Technology Advances 6, no. 2 (2021): 114–20. https://doi.org/10.5281/zenodo.4616237.

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Heavy rain in Semarang on 1 January 2020 caused flooding. The existence of heavy rain cannot be separated from the dynamics of weather parameters which are closely related to the convection process and cloud formation. In this paper research has been conducted using Weather Research and Forecasting (WRF), to analyze the growth patterns of convective clouds as an effort to mitigate the initial events of extreme rainfall disasters. Several weather parameters that support cloud growth are very significant, namely the parameter values that support the convection process to form convective clouds (
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22

DOMINTE, (CROITORU) VIOLETA, and MIHAIL LUCA. "Considerations on Floods in the Prut–Bârlad Basin." Buletinul Institutului Politehnic din Iași, Secția Chimie și Inginerie Chimică 69, no. 3 (2023): 55–66. https://doi.org/10.5281/zenodo.10072428.

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The work presents an analysis of historical floods and areas with potentially significant risk to floods, in the Prut–Bârlad river basin, as well as measures to reduce flood risk. Over the years, floods have had significant consequences for human activity, the environment, cultural heritage and economic activity. In order to reduce flood risk, various programmes for tracking hydrometric and hydrometeorological parameters have been created, critical defence work has been fixed, the warning system has been implemented-alarm, the defence plan has been updated against floods, critical points were
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23

Lyubitskiy, Yu V., A. N. Vrazhkin, and P. O. Kharlamov. "Forecasting of hazardous marine hydrometeorological phenomena for the regions of oil and gas deposit development on the Sea of Okhotsk Shelf." IOP Conference Series: Earth and Environmental Science 895, no. 1 (2021): 012023. http://dx.doi.org/10.1088/1755-1315/895/1/012023.

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Abstract A brief description of the marine hazard forecast methods and technology for the Sea of Okhotsk developed in the Federal State Budgetary Institution “ Far Eastern Regional Hydrometeorological Research Institute (FERHRI)” is presented. These methods and technology provide numerical prognostic products for the following parameters: wave height, period and direction; sea ice concentration, thickness, drift and compression; sea level and storm surges. The successful cases of practical applications of these forecasts demonstrate the effectiveness of the developed forecast methods and techn
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Allende Ccahuana, Teófilo. "Análisis de los peligros hidrometeorológico y caída de roca en la ciudad de Pucalá y CP Huaca Rajada y Sipán." Revista del Instituto de investigación de la Facultad de minas, metalurgia y ciencias geográficas 27, no. 53 (2024): e25046. http://dx.doi.org/10.15381/iigeo.v27i53.25046.

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The objective of the research is to develop an analysis of the hydrometeorological and rockfall hazards that impact the city of Pucalá and the populated centers of Huaca Rajada and Sipán, based on multi-criteria evaluation (MCE) techniques, where the variables of the susceptibility of the territory and the evaluation parameters for fluvial flooding, flooding, debris flow and rockfall hazards are identified. In addition, a matrix is used to assign weightings according to the relative importance of each variable and its descriptors with respect to the probability of increasing hazard levels. The
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Putra, Dekka Dhirgantara, Bahrul Fikry Sofwany, Hukma Zulfinanda та Iqbal Kamaruddin. "Flash flood (Δ) risk and damage assessment in batu, East Java". Jurnal Teknosains 12, № 1 (2022): 72. http://dx.doi.org/10.22146/teknosains.78483.

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Hydrometeorological disasters are showing an increasing trend in Indonesia. Flash floods are part of a hydrometeorological disaster that has a significant livelihood impact. Flash Flood is triggered by the intensity of extreme rain, several actions of mitigation can be taken by early warning systems, hazard and risk mapping, community preparedness, and climate change adaptation. So, how does future land use have an impact, and how much loss will result from the flash flood disaster in Batu City? The hydrometeorological disaster that occurred in Indonesia was the Batu Flash Flood. The Flash Flo
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Tylkowski, J., and R. Kolander. "Potential hydrometeorological threshold values of the coastal hazard—an example from the Polish Southern Baltic coast." Russian Meteorology and Hydrology 39, no. 9 (2014): 614–19. http://dx.doi.org/10.3103/s1068373914090064.

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27

Nelson, Andrew, Sarah Lindbergh, Lucy Stephenson, et al. "Coupling Natural Hazard Estimates with Road Network Analysis to Assess Vulnerability and Risk: Case Study of Freetown (Sierra Leone)." Transportation Research Record: Journal of the Transportation Research Board 2673, no. 8 (2019): 11–24. http://dx.doi.org/10.1177/0361198118822272.

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Many of the world’s most disaster-prone cities are also the most difficult to model and plan. Their high vulnerability to natural hazards is often defined by low levels of economic resources, data scarcity, and limited professional expertise. As the frequency and severity of natural disasters threaten to increase with climate change, and as cities sprawl and densify in hazardous areas, better decision-making tools are needed to mitigate the effects of near- and long-term extreme events. We use mostly public data from landslide and flooding events in 2017 in Freetown, Sierra Leone to simulate t
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Pryakhina, Galina, Vasiliy Dmitriev, Antonina Chetverova, Tatiana Osipova, Aleksandr Ogurtsov, and Evgeniy Akilov. "Assessment of the explosion hazard of the Antarctic Oasis lake using a composite index based on territorial determinants." InterCarto. InterGIS 28, no. 2 (2022): 552–66. http://dx.doi.org/10.35595/2414-9179-2022-2-28-552-566.

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Lake outbursts floods is belonging to the hydrometeorological hazards. They occur as a result of destruction of snow-ice or earth dams and are most typical for lakes of alpine and polar regions. Glacial lakes outbursts floods (GLOF) are widely spread on water bodies of Antarctic oases. Methods for GLOF’s hazard assessment include monitoring, component analysis, point-by-point estimates, etc.) often overestimate the degree of the GLOF’s hazard compare to the real situation. The article presents the first experience of using the method of constructing composite indices (CI) based on territorial
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Finnigan, Gerard A. "The natural environment as a disaster hazard." Disaster Prevention and Management: An International Journal 28, no. 6 (2019): 724–37. http://dx.doi.org/10.1108/dpm-09-2019-0294.

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Purpose The rapid deterioration of the earth’s natural ecosystems are increasing the risk of human morbidity and mortality worldwide. Hydrometeorological hazards are concentrating contaminants from the damaged environment and exposing large vulnerable populations to life threating illnesses and death. This study performed a retrospective health risk assessment on two recent events where such impacts unfolded, namely, the 2015 south east Equatorial Asia smoke haze disaster and the 2016 Melbourne thunderstorm asthma epidemic. The purpose of this paper is to test if the characterisation of health
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Massoud, Elias C., Lauren Andrews, Rolf Reichle, et al. "Seasonal forecasting skill for the High Mountain Asia region in the Goddard Earth Observing System." Earth System Dynamics 14, no. 1 (2023): 147–71. http://dx.doi.org/10.5194/esd-14-147-2023.

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Abstract. Seasonal variability of the global hydrologic cycle directly impacts human activities, including hazard assessment and mitigation, agricultural decisions, and water resources management. This is particularly true across the High Mountain Asia (HMA) region, where availability of water resources can change depending on local seasonality of the hydrologic cycle. Forecasting the atmospheric states and surface conditions, including hydrometeorologically relevant variables, at subseasonal-to-seasonal (S2S) lead times of weeks to months is an area of active research and development. NASA's
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Ramesh, K. J., A. Ramakrishna Nagaraju, M. V. Ramanamurthy, G. Prasad Rao, and Y. Ramesh. "Framework development of hydrometeorological observational network and hazard mitigation modelling systems in respect of floods and cyclones." Natural Hazards 41, no. 3 (2007): 531–48. http://dx.doi.org/10.1007/s11069-006-9048-3.

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Lara Carvajal, Guadalupe Isabel, Rodolfo Sosa Echeverría, Víctor Magaña, Georgina Fernández Villagómez, and Jonathan D. W. Kahl. "Assessment of Chemical Risks Associated with Hydrometeorological Phenomena in a Mexican Port on the Gulf of Mexico." Journal of Marine Science and Engineering 10, no. 10 (2022): 1518. http://dx.doi.org/10.3390/jmse10101518.

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Accidents in port areas in the Gulf of Mexico have had great economic costs, since this is an area exposed to extreme phenomena. Tropical cyclones or cold fronts, also known as Tehuantepecers, result in intense winds and waves that impact the coastal infrastructure. The chemical risk associated with extreme winds and waves for the fuel storage tanks of the facility of the Port of Veracruz, the main Mexican port in the Gulf of Mexico, was evaluated with a historical analysis of accidents as a tool to identify significant factors in disasters and establish risk acceptance criteria. It was found
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Efstratiadis, Andreas, Panagiotis Dimas, George Pouliasis, et al. "Revisiting Flood Hazard Assessment Practices under a Hybrid Stochastic Simulation Framework." Water 14, no. 3 (2022): 457. http://dx.doi.org/10.3390/w14030457.

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We propose a novel probabilistic approach to flood hazard assessment, aiming to address the major shortcomings of everyday deterministic engineering practices in a computationally efficient manner. In this context, the principal sources of uncertainty are defined across the overall modeling procedure, namely, the statistical uncertainty of inferring annual rainfall maxima through distribution models that are fitted to empirical data, and the inherently stochastic nature of the underlying hydrometeorological and hydrodynamic processes. Our work focuses on three key facets, i.e., the temporal pr
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Glantz, Michael H., and Gregory E. Pierce. "Forecast Hesitancy: Why are People Reluctant to Believe, Accept, or Respond to Various Weather, Water, and Climate Hazard-Related Forecasts?" International Journal of Disaster Risk Science 12, no. 4 (2021): 600–609. http://dx.doi.org/10.1007/s13753-021-00353-7.

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AbstractCurrent discussions of the social phenomenon of “vaccine hesitancy” with regard to Covid-19 provide an opportunity to use hesitancy as a means to shift thinking about untimely and delayed responses to forecasts of hydrometeorological hazards. Hesitancy, that is, provides a paradigm through which such regrettably delayed responses to hydromet hazards might be better understood and effectively addressed. Without exaggeration, just about every hydromet event provides an example of how hesitancy hinders individual, community, and national government risk-reducing preventive and mitigative
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Llasat, M. C., L. López, M. Barnolas, and M. Llasat-Botija. "Flash-floods in Catalonia: the social perception in a context of changing vulnerability." Advances in Geosciences 17 (July 29, 2008): 63–70. http://dx.doi.org/10.5194/adgeo-17-63-2008.

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Abstract. In assessing a flood event two risk components need to be considered: the intrinsic hazard of the hydrometeorological event causing the flood and the vulnerability of the area where the precipitation has been registered. In the present study four flood events selected by the FLASH European project have been classified according to the characteristics of the meteorological event (classification according to hazard) and according to the physical and economic damages caused (classification according to vulnerability). The social impact of these events is analysed taking into account the
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Fatmawati, D., E. A. Nurdin, E. I. Pangastuti, F. A. Kurnianto, and Y. Yushardi. "Analysis of Landslide Disaster at the Quaternary Volcanic Landform." IOP Conference Series: Earth and Environmental Science 975, no. 1 (2022): 012012. http://dx.doi.org/10.1088/1755-1315/975/1/012012.

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Abstract Indonesia as a country that has two seasons, namely the rainy and dry seasons, making it vulnerable to natural disasters such as hydrometeorological disasters where disasters occur due to conditions and weather such as landslides. This study aims to analyze the vulnerability of landslides and it relationship with the quaternary volcanic landform in Gandusari District, Blitar Regency. The method used is quantitative with a scoring that refers to the estimation model of Puslittanak, 2004 with parameters that consist of rainfall, geology, slope, land cover, and soil type. After getting t
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Tylkowski, Jacek, Marcin Winowski, Marcin Hojan, Paweł Czyryca, and Mariusz Samołyk. "Influence of hydrometeorological hazards and sea coast morphodynamics on development of <i>Cephalanthero</i> <i>rubrae-Fagetum</i> (Wolin island, the southern Baltic Sea)." Natural Hazards and Earth System Sciences 21, no. 1 (2021): 363–74. http://dx.doi.org/10.5194/nhess-21-363-2021.

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Abstract. Climate changes, sea transgression and sea coast erosion observed today cause dynamic changes in coastal ecosystems. In the elaboration, cause and effect interrelations between abiotic hazards (hydrometeorological conditions and sea coast morphodynamics) and biotic (Cephalanthero rubrae-Fagetum phytocoenosis) components of natural environment have been defined. An up-to-date phytosociological analysis of a very valuable Cephalanthero rubrae-Fagetum site on cliff tableland was conducted in the context of hitherto temporal variability of climatic conditions and the rate of cliff coast
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Wilopo, Wilopo, Poetika Puspasari, Sobar Sutisna, Syamsul Maarif, and I. Dewa Ketut Kerta Widana. "Socio-Geospatial Characteristic of Communities Affected by Contemporary Hydrometeorological Disaster During The Covid-19 Pandemic in Cimanggung Sub-District, Sumedang District, West Java Province." Technium Social Sciences Journal 29 (March 9, 2022): 523–36. http://dx.doi.org/10.47577/tssj.v29i1.6137.

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Hydrometeorological disasters has dominated the list of disasters in Indonesia in recent years. Cimanggung Sub-District in Sumedang District which located in West Java Province is one of the areas experiencing hydrometeorological disasters, namely landslides and floods in January 2021. This disaster event is an example of an interesting phenomenon to conduct innovative research in the context of disaster management that occurred in the Covid-19 pandemic era. Thus, this research aims to analyze the socio-geospatial characteristics of the affected community so that it can explore the level of su
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Yang, Quntao, Shuliang Zhang, Qiang Dai, and Rui Yao. "Assessment of Community Vulnerability to Different Types of Urban Floods: A Case for Lishui City, China." Sustainability 12, no. 19 (2020): 7865. http://dx.doi.org/10.3390/su12197865.

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Urban flooding is a severe and pervasive hazard caused by climate change, urbanization, and limitations of municipal drainage systems. Cities face risks from different types of floods, depending on various geographical, environmental, and hydrometeorological conditions. In response to the growing threat of urban flooding, a better understanding of urban flood vulnerability is needed. In this study, a comprehensive method was developed to evaluate the vulnerability of different types of urban floods. First, a coupled urban flood model was built to obtain the extent of influence of various flood
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Mužíková, Bronislava, Vítězslav Vlček, and Tomáš Středa. "Tendencies of climatic extremes occurrence in different Moravian regions and landscape types." Acta Universitatis Agriculturae et Silviculturae Mendelianae Brunensis 59, no. 5 (2011): 169–78. http://dx.doi.org/10.11118/actaun201159050169.

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In this study present frequency of several characteristic days as tropical, summer, arctic, frost and ice days and also length of heat waves was compared with modelled future occurrence of these climate extreme indices. Climate-diagrams were used for drought hazard assessment. The main objective of our research was to detect possible changes of frequency of the extreme events toward future. Data from four localities in the Czech Republic (Moravia) were chosen for the evaluation. Each locality represents different climatic, landscape and settlement conditions. Localities are represented by the
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ЯИЦКАЯ, Н. А., та А. А. МАГАЕВА. "КЛИМАТИЧЕСКИЙ СДВИГ ГИДРОМЕТЕОРОЛОГИЧЕСКОГО РЕЖИМА АЗОВСКОГО И КАСПИЙСКОГО МОРЕЙ". География и природные ресурсы 46, № 1 (2025): 105–13. https://doi.org/10.15372/gipr20250110.

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Проанализирована пространственно-временная изменчивость гидрометеорологического режима, опасных гидрометеорологических явлений и их сочетаний в Азовском и Каспийском морях за период 1950-2020 гг. Дана оценка современной динамики процессов на фоне климатических флуктуаций. На основе данных наблюдений и результатов математического моделирования выполнен анализ температуры воздуха, ледовитости и продолжительности ледового сезона, межгодовой динамики ветрового волнения и штормовой активности. Показано, что с 1975 г. для обеих акваторий наблюдается устойчивый рост суммы температур воздуха и увеличе
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Janeček, Miloslav, Vít Květoň, Eliška Kubátová, Dominika Kobzová, Michaela Vošmerová, and Jana Chlupsová. "Values of rainfall erosivity factor for the Czech Republic." Journal of Hydrology and Hydromechanics 61, no. 2 (2013): 97–102. http://dx.doi.org/10.2478/johh-2013-0013.

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Abstract The processing of ombrographic data from 29 meteorological stations of the Czech Hydrometeorological Institute (CHMI), according to the terms of the Universal Soil Loss Equation for calculating long term loss of soil through water erosion, erosion hazard rains and their occurrence have been selected, with their relative amount and erosiveness - R-Factors determined for each month and years. By comparing the value of the time division of the R-Factor in the area of the Czech Republic and in selected areas of the USA it has been demonstrated that this division may be applied in the cond
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Wibowo, A., N. Rohman, Rusdah ., A. H. Achadi, and I. Amri. "Clustering Indonesian Provinces by Disaster Intensity using K-Means Algorithm: a Data Mining Approach." Disaster Advances 17, no. 12 (2024): 1–8. https://doi.org/10.25303/1712da0108.

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Indonesia, as part of the Pacific Ring of Fire, is highly susceptible to various natural hazard events including geological and hydrometeorological disasters. This study aims to classify Indonesian provinces based on their disaster vulnerability using the K-Means clustering algorithm. The clustering process considers area and population data to ensure accurate grouping. The results of the study successfully categorized Indonesian provinces into distinct clusters based on their disaster vulnerability levels. These clusters provide valuable insights for the National Disaster Management Agency (B
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Basuki, Y., and Widjonarko. "Hydrometeorological hazard prediction in the kuto bodri river region central java based on normalized difference vegetation index (ndvi) analysis." IOP Conference Series: Earth and Environmental Science 683, no. 1 (2021): 012098. http://dx.doi.org/10.1088/1755-1315/683/1/012098.

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Sutanto, Samuel J., Melati van der Weert, Veit Blauhut, and Henny A. J. Van Lanen. "Skill of large-scale seasonal drought impact forecasts." Natural Hazards and Earth System Sciences 20, no. 6 (2020): 1595–608. http://dx.doi.org/10.5194/nhess-20-1595-2020.

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Abstract. Forecasting of drought impacts is still lacking in drought early-warning systems (DEWSs), which presently do not go beyond hazard forecasting. Therefore, we developed drought impact functions using machine learning approaches (logistic regression and random forest) to predict drought impacts with lead times up to 7 months ahead. The observed and forecasted hydrometeorological drought hazards – such as the standardized precipitation index (SPI), standardized precipitation evaporation index (SPEI), and standardized runoff index (SRI) – were obtained from the The EU-funded Enhancing Eme
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Hawa Putri Lestari, Nadya, Jasisca Meirany, Nana Novita Pratiwi, Arfena Deah Lestari, and Mochammad Meddy Danial. "Hazard analysis and extreme weather mitigation in Pontianak city based on Geographic Information System." Teknisia 29, no. 2 (2025): 69–79. https://doi.org/10.20885/teknisia.vol29.iss2.art1.

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The geographical location of Pontianak City, situated on the Equator, creates a high potential for hydrometeorological disasters, particularly extreme weather events such as whirlwinds. Based on the history of recurring events, it is essential to conduct this research to recommend disaster mitigation strategies based on hazard analysis and the Extreme Weather Disaster Class Index in Pontianak City. The data used are slope, land use, annual rainfall, and surface air temperature. These parameters are processed using the ArcGIS software. The results of the hazard analysis indicate that Pontianak
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Sahani, Jeetendra, Prashant Kumar, Sisay Debele, et al. "Hydro-meteorological risk assessment methods and management by nature-based solutions." Science of the Total Environment 696 (August 14, 2019): 1–17. https://doi.org/10.5281/zenodo.3902807.

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Hydro-meteorological risk (HMR) management involves a range of methods, such as monitoring of uncertain climate, planning and prevention by technical countermeasures, risk assessment, preparedness for risk by early warnings, spreading knowledge and awareness, response and recovery. To execute HMR management by risk assessment, many models and tools, ranging from conceptual to sophisticated/numerical methods are currently in use. However, there is still a gap in systematically classifying and documenting them in the field of disaster risk management. This paper discusses various methods used fo
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Escobar-González, Diego, Marcos Villacís, Sebastián Páez-Bimos, et al. "Soil Moisture Forecast Using Transfer Learning: An Application in the High Tropical Andes." Water 16, no. 6 (2024): 832. http://dx.doi.org/10.3390/w16060832.

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Soil moisture is a critical variable in the hydrological cycle and the climate system, significantly impacting water resources, ecosystem functioning, and the occurrence of extreme events. However, soil moisture data are often scarce, and soil water dynamics are not fully understood in mountainous regions such as the tropical Andes of Ecuador. This study aims to model and predict soil moisture dynamics using in situ-collected hydrometeorological data for training and data-driven machine-learning techniques. Our results highlight the fundamental role of vegetation in controlling soil moisture d
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Al Kuisi, Mustafa, Naheel Al Azzam, Tasneem Hyarat, and Ibrahim Farhan. "Flood Hazard and Risk Assessment of Flash Floods for Petra Catchment Area Using Hydrological and Analytical Hierarchy (AHP) Modeling." Water 16, no. 16 (2024): 2283. http://dx.doi.org/10.3390/w16162283.

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Floods are a widespread natural disaster that occur in most areas of the world, except for the polar regions. To minimize the damage caused by floods, effective management strategies and policies must be implemented. Petra and Wadi Musa areas are prone to floods, which happen every 2–3 years and result in significant harm to both lives and properties. To address this issue, a composite hazard and vulnerability index is commonly utilized to evaluate flood risk and guide policy formation for flood risk reduction. These tools are efficient and cost-effective in generating accurate results. Accord
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Ningrum, Widya, Rizaldi Boer, and Apip. "Statistical Assessment of High-Resolution Climate Model Rainfall Data in the Ciliwung Watershed, Indonesia." Agromet 37, no. 1 (2023): 21–33. http://dx.doi.org/10.29244/j.agromet.37.1.21-33.

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The impact of climate change on hydrometeorological hazards pointed out the necessity for information on rainfall data. Using Climate Hazard Group InfraRed Precipitation with Station (CHIRPS) data could solve the problem of the scarcity of observed rainfall data at a finer spatial resolution. This paper examines the performance of high-resolution rainfall climate model data called CORDEX SEA and NEXGDPP in the Ciliwung watershed, Indonesia. We used CHIRPS data as observed data, which was separately divided for calibration (1981-2005) and validation (2006-2020) of the climate models. Totally 14
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