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1

Ulya, Nur Arifatul. "Economic Value of Forest Hydrological Benefit of Musi Watershed: Case of Perapau Sub Watershed." Indonesian Journal of Geography 51, no. 1 (2019): 23. http://dx.doi.org/10.22146/ijg.36087.

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Forest area in upper Perapau sub watershed that provide a hydrological benefit for community living surrounding are now partially converted to plantations, dry land farms and paddy fields, whereas the forests are part of protected forest and wildlife reserve. The land cover change occurs due to lack of understanding about economic value of hydrological benefits of forests in the Perapau sub watershed. This study aims to determine the economic value of hydrological benefits of forests in Perapau sub watershed. Procurement cost method used to estimate the economic value of the hydrological benef
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Kaykhosravi, Sarah, Karen Abogadil, Usman T. Khan, and Mojgan A. Jadidi. "The Low-Impact Development Demand Index: A New Approach to Identifying Locations for LID." Water 11, no. 11 (2019): 2341. http://dx.doi.org/10.3390/w11112341.

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The primary goal of low impact development (LID) is to capture urban stormwater runoff; however, multiple indirect benefits (environmental and socioeconomic benefits) also exist (e.g., improvements to human health and decreased air pollution). Identifying sites with the highest demand or need for LID ensures the maximization of all benefits. This is a spatial decision-making problem that has not been widely addressed in the literature and was the focus of this research. Previous research has focused on finding feasible sites for installing LID, whilst only considering insufficient criteria whi
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Zhu, Bowen, Xianhong Xie, Yibing Wang, and Xuehua Zhao. "The Benefits of Continental-Scale High-Resolution Hydrological Modeling in the Detection of Extreme Hydrological Events in China." Remote Sensing 15, no. 9 (2023): 2402. http://dx.doi.org/10.3390/rs15092402.

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High-resolution hydrological modeling is crucial for detecting extreme hydrological events and understanding fundamental terrestrial processes. However, spatial resolutions in current hydrological modeling studies have been mostly constrained to relatively coarse resolution (~10–100 km), and they therefore have a difficult time addressing flooding or drought issues with fine resolutions. In this study, a continental-scale high-resolution hydrological modeling framework (0.0625°, ~6 km) driven by remote sensing products was used to detect extreme hydrological event occurrences in China and eval
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Zhang, Lei, Desmond Ofosu Anim, and Amos T. Kabo-Bah. "Integration of Geographical Information Science (GIS) Technology in Hydrological Modeling: A Critical Review." Advanced Materials Research 838-841 (November 2013): 2284–91. http://dx.doi.org/10.4028/www.scientific.net/amr.838-841.2284.

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Current trends in hydrological modeling depend on spatial datasets, complex computational tasks and representation. As the need for the development of hydrological modeling capabilities have evolved, its integration with geographic information system (GIS) has provided a significant contribution to the efforts of hydrologic models. It serves the role of providing support in data capturing and improving hydrological modeling efforts by giving tools for effective analysis. This integration of GIS technology and hydrological modeling has resulted in great value and presents potential benefits to
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Vu, T. T., J. Kiesel, B. Guse, and N. Fohrer. "Towards an improved understanding of hydrological change – linking hydrologic metrics and multiple change point tests." Journal of Water and Climate Change 10, no. 4 (2018): 743–58. http://dx.doi.org/10.2166/wcc.2018.068.

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Abstract Understanding the connections between climate, anthropogenic impacts, and hydrology is fundamental for assessing future climate change. However, a comprehensive methodology is lacking to understand significant changes in the discharge regime and their causes. We propose an approach that links change point tests with hydrologic metrics applied to two Vietnamese catchments where both climatic and anthropogenic changes are observed. The change points in discharge series are revealed by six widely used change point tests. Then, 171 hydrologic metrics are investigated to evaluate all possi
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Nurfatriani, Fitri, and Zahrul Muttaqin. "THE ECONOMIC VALUE OF WATER FOR COMMERCIAL USE IN UPPER BRANTAS SUB-WATERSHED." Journal of Forestry Research 5, no. 2 (2008): 75–90. https://doi.org/10.20886/ijfr.2008.5.2.75-90.

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This research was aimed at calculating the economic value of hydrological benefits associated with protecting forest in the upper Brsnts Sub-watershed. The hydrological benefit was limited to commercial uses of water from the forest which included:. tap/drinking water,hydropower generation, and industrial uses. The economic value was calculated using the full cost method in which the cost should be paid by all users gaining benefits. The calculated cost was futner used to determine a tariff for water usages, one that better reflected teh sustainable use value of water.
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7

Monrabal-Martinez, C., J. Aberle, T. M. Muthanna, and M. Orts-Zamorano. "Hydrological benefits of filtering swales for metal removal." Water Research 145 (November 2018): 509–17. http://dx.doi.org/10.1016/j.watres.2018.08.051.

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8

Creutzfeldt, B., A. Güntner, S. Vorogushyn, and B. Merz. "The benefits of gravimeter observations for modelling water storage changes at the field scale." Hydrology and Earth System Sciences Discussions 7, no. 2 (2010): 2221–60. http://dx.doi.org/10.5194/hessd-7-2221-2010.

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Abstract. Water storage is the fundamental state variable of hydrological systems. However, comprehensive data on total water storage changes (WSC) are practically inaccessible by hydrological measurement techniques at the field or catchment scale, and hydrological models are highly uncertain in representing the storage term due to the lack of adequate validation or calibration data. In this study, we assess the benefit of temporal gravimeter measurements for modelling WSC at the field scale. A simple conceptual hydrological model is calibrated and evaluated against records of a superconductin
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Creutzfeldt, B., A. Güntner, S. Vorogushyn, and B. Merz. "The benefits of gravimeter observations for modelling water storage changes at the field scale." Hydrology and Earth System Sciences 14, no. 9 (2010): 1715–30. http://dx.doi.org/10.5194/hess-14-1715-2010.

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Abstract. Water storage is the fundamental state variable of hydrological systems. However, comprehensive data on total water storage changes (WSC) are practically inaccessible by hydrological measurement techniques at the field or catchment scale, and hydrological models are highly uncertain in representing the storage term due to the lack of adequate validation or calibration data. In this study, we assess the benefit of temporal gravimeter measurements for modelling WSC at the field scale. A simple conceptual hydrological model is calibrated and evaluated against records of a superconductin
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10

Rochman, Syaiful, Nuryani Rustaman, Taufik Ramlan Ramalis, et al. "How Bibliometric Analysis Using VOSviewer Based on Artificial Intelligence Data (using ResearchRabbit Data): Explore Research Trends in Hydrology Content." ASEAN Journal of Science and Engineering 4, no. 2 (2023): 251–94. https://doi.org/10.17509/ajse.v4i2.71567.

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The purpose of this study was to analyze and map research in hydrology content. We reviewed 45 articles related to hydrology content published from 2014 to 2024. There are several previous literature review studies analyzing hydrology in engineering. However, we have not found any studies that investigate the projects, topics covered, and benefits of implementing hydrological processes in science education. The research method used was a systematic and bibliometric literature review using VoSviewer with ResearchRabbit database. This study analyzed content characteristics based on publication y
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11

Eric, Marija, Celia Fan, Darko Joksimovic, and James Y. Li. "Modeling low impact development potential with hydrological response units." Water Science and Technology 68, no. 11 (2013): 2382–90. http://dx.doi.org/10.2166/wst.2013.502.

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Evaluations of benefits of implementing low impact development (LID) stormwater management techniques can extend up to a watershed scale. This presents a challenge for representing them in watershed models, since they are typically orders of magnitude smaller in size. This paper presents an approach that is focused on trying to evaluate the benefits of implementing LIDs on a lot level. The methodology uses the concept of urban hydrological response Unit and results in developing and applying performance curves that are a function of lot properties to estimate the potential benefit of large-sca
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12

Pisharoty, P. R. "Economic and Social Benefits of Meteorological and Hydrological Service." MAUSAM 42, no. 1 (2022): 123. http://dx.doi.org/10.54302/mausam.v42i1.4937.

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13

Hough, M. N. "Economic and social benefits of meteorological and hydrological services." Agricultural and Forest Meteorology 62, no. 1-2 (1992): 139. http://dx.doi.org/10.1016/0168-1923(92)90010-2.

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14

Galarza-Molina, Sandra, Andrés Torres, Pervys Rengifo, et al. "The benefits of an eco-productive green roof in Bogota, Colombia." Indoor and Built Environment 26, no. 8 (2016): 1135–43. http://dx.doi.org/10.1177/1420326x16665896.

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In peri-urban areas of Bogota, people harvest and use untreated rainwater. Initial research indicates that water collected from roofs contains high turbidity values, as well as high concentrations of total suspended solids, biochemical oxygen demand 5-Day and heavy metals. Moreover, these areas do not generally have access to public sewer systems. An eco-productive green roof with the aim of reducing poverty and improving the quality of life of the communities located peri-urban areas of Bogota has been described and examined. These eco-roofs are made with cheaply attainable materials (e.g. re
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15

Nitin, Mishra1 Amit Kumar Sharma1 and Sanjeev Kuma2. "RAIN WATER HARVESTING AN EMERGING TECHNOLOGY IN CHANGING CONDITION A CASE STUDY OF GRAPHIC ERA UNIVERSITY." INTERNATIONAL JOURNAL OF ENGINEERING SCIENCES & RESEARCH TECHNOLOGY 4, no. 6 (2017): 11–21. https://doi.org/10.5281/zenodo.583649.

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Often, as a frantic response to problems of water scarcity and consequent hardships faced by both urban and rural communities, India has invested heavily in rainwater harvesting. Unlike investment in large water resource systems, these efforts, by and large, lack hydrological planning and sound economic analysis: research on the impact of local water harvesting/groundwater recharge activities in India is very sparse. This paper identifies six critical issues in rainwater harvesting efforts in water-scarce regions of India. First: there is no emphasis on potential local supplies and the demand
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16

Michelon, Anthony, Lionel Benoit, Harsh Beria, Natalie Ceperley, and Bettina Schaefli. "Benefits from high-density rain gauge observations for hydrological response analysis in a small alpine catchment." Hydrology and Earth System Sciences 25, no. 4 (2021): 2301–25. http://dx.doi.org/10.5194/hess-25-2301-2021.

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Abstract. Spatial rainfall patterns exert a key control on the catchment-scale hydrologic response. Despite recent advances in radar-based rainfall sensing, rainfall observation remains a challenge, particularly in mountain environments. This paper analyzes the importance of high-density rainfall observations for a 13.4 km2 catchment located in the Swiss Alps, where rainfall events were monitored during 3 summer months using a network of 12 low-cost, drop-counting rain gauges. We developed a data-based analysis framework to assess the importance of high-density rainfall observations to help pr
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17

Rodrigues, Dulce Buchala Bicca, Paulo Tarso Sanches Oliveira, Teodorico Alves Sobrinho, and Eduardo Mario Mendiondo. "Hydrological benefits in the context of Brazilian environmental services program." Environment, Development and Sustainability 15, no. 4 (2012): 1037–48. http://dx.doi.org/10.1007/s10668-012-9424-y.

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18

Ocio, D., T. Beskeen, and K. Smart. "Fully distributed hydrological modelling for catchment-wide hydrological data verification." Hydrology Research 50, no. 6 (2019): 1520–34. http://dx.doi.org/10.2166/nh.2019.006.

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Abstract Hydrological data scarcity and uncertainty is a fundamental challenge in hydrology, particularly in places with weak or declining investment in hydrometric networks. It is well established that fully distributed hydrological models can provide robust estimation of flows at ungauged locations, through local calibration and regionalisation using spatial datasets of physical properties. Even in situations where data are abundant, the existence of inconsistent information is not uncommon. The measurement, estimation or interpolation of rainfall, potential evapotranspiration and flow as we
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19

Dillon, Andrew, and Ram Fishman. "Dams: Effects of Hydrological Infrastructure on Development." Annual Review of Resource Economics 11, no. 1 (2019): 125–48. http://dx.doi.org/10.1146/annurev-resource-100518-093913.

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Hydrological investments, particularly irrigation dams, have multiple potential benefits for economic development. Dams also have financial, environmental, and distributional impacts that can affect their benefits and costs. This article reviews the evidence on the impact of dams on economic development, focusing on the levels and variability of agricultural productivity, and its effect on poverty, health, electricity generation, and flood control. We also review the evidence on irrigation efficiency and collective action of dam maintenance. Throughout the discussion, we highlight the empirica
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20

Iritz, László. "Application of an Adaptive Forecast Algorithm to the River Västerdalälven." Hydrology Research 19, no. 5 (1988): 293–302. http://dx.doi.org/10.2166/nh.1988.0021.

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During the last two decades, advances in electronic engineering, hydrological modelling and systems theory have given considerable benefits to the hydrological forecast developments. Today several powerful adaptive techniques are available, which can improve the reliability of hydrological forecasting. One of these techniques is the self-tuning predictor based on an ARMA type model using direct parameter estimation by recursive least square algorithm. The selftuning predictor has been tested on the River Västerdalälven in Sweden.
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21

Lu, You, Fuqiang Tian, Liying Guo, et al. "Socio-hydrologic modeling of the dynamics of cooperation in the transboundary Lancang–Mekong River." Hydrology and Earth System Sciences 25, no. 4 (2021): 1883–903. http://dx.doi.org/10.5194/hess-25-1883-2021.

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Abstract. The transboundary Lancang–Mekong River basin has experienced dynamics of cooperation over the past several decades, which is a common emergent response in transboundary coupled human–water systems. Downstream countries rely on the Mekong River for fisheries, agriculture, navigation and ecological services, while upstream countries have been constructing dams to generate hydropower. The dam construction and operation in upstream countries have changed the seasonality of streamflow in downstream countries, affecting their economic benefits. More recently, cooperation between upstream a
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22

Zhang, Xiaoyan, Jiandong Yu, Liangguo Wang, and Rui Zhang. "Determination of River Ecological Flow Thresholds and Development of Early Warning Programs Based on Coupled Multiple Hydrological Methods." Water 16, no. 14 (2024): 1986. http://dx.doi.org/10.3390/w16141986.

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In order to safeguard the health of river ecosystems and maintain ecological balance, it is essential to rationally allocate water resources. This study utilized continuous runoff data from 1967 to 2020 at the Zhouqu Hydrological Station on the Bailong River. Five hydrological methods, tailored to the hydrological characteristics of the Zhouqu hydrological cross-section, were employed. These methods included the improved dynamic calculation method, the NGPRP method, the improved monthly frequency computation method, the improved RVA method, and the Tennant method. Ecological flow calculations
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23

Gebrehiwot, S. G., U. Ilstedt, A. I. Gärdenas, and K. Bishop. "Hydrological characterization of watersheds in the Blue Nile Basin." Hydrology and Earth System Sciences Discussions 7, no. 4 (2010): 4089–111. http://dx.doi.org/10.5194/hessd-7-4089-2010.

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Abstract. We made a hydrological characterization of 32 watersheds (31–4350 km2) in the Blue Nile Basin, using data from a study of water and land resources in the Blue Nile Basin, Ethiopia published in 1964 by the US Bureau of Reclamation (USBR). The USBR document contains data on flow, climate, topography, geology, soil type, and land use for the period from 1959 to 1963. The aim of the study was to identify which combination of watershed variables best explain the variation in the hydrological regime, with special focus to low flow and, what kind of land use low flow might benefit from. Pri
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Acosta, Eileen Andrea, Se Jong Cho, Claudio Klemz, et al. "Biophysical Benefits Simulation Modeling Framework for Investments in Nature-Based Solutions in São Paulo, Brazil Water Supply System." Water 15, no. 4 (2023): 681. http://dx.doi.org/10.3390/w15040681.

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In order to understand the hydrological impacts of the nature-based solutions in the Cantareira Water Supply System, this study evaluates six different land cover and land use change scenarios. The first and second consider the restoration of native vegetation in riparian areas, the third prioritizes restoration sites using biophysical characteristics (optimized restoration scenario derived from Resource Investment Optimization System—RIOS), the fourth considers best management practices and the fifth and sixth are hypothetical extreme scenarios converting all pasture to forest and vice versa.
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Lozano-Baez, Sergio Esteban, Yamileth Domínguez-Haydar, Simone Di Prima, Miguel Cooper, and Mirko Castellini. "Shade-Grown Coffee in Colombia Benefits Soil Hydraulic Conductivity." Sustainability 13, no. 14 (2021): 7768. http://dx.doi.org/10.3390/su13147768.

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Secondary tropical forests and coffee agroforestry systems contain fewer trees than native forests but can positively impact soil hydrological functions, such as water infiltration compared to the pasture land that they replace. However, for both land uses it remains in how far the soil hydraulic characteristics are comparable to that of native forest. Therefore, we investigated the saturated hydraulic conductivity (Ks) and some hydrophysical soil attributes in four land-use types: (i) a shade-grown coffee; (ii) a natural regenerated forest 15 years ago; (iii) a pasture; and (iv) a reference f
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O'Farrell, P. J., J. S. Donaldson, and M. T. Hoffman. "Local benefits of retaining natural vegetation for soil retention and hydrological services." South African Journal of Botany 75, no. 3 (2009): 573–83. http://dx.doi.org/10.1016/j.sajb.2009.06.008.

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27

Jones, Kelly W., Alex Mayer, Juan Von Thaden, et al. "Measuring the net benefits of payments for hydrological services programs in Mexico." Ecological Economics 175 (September 2020): 106666. http://dx.doi.org/10.1016/j.ecolecon.2020.106666.

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28

Sukwika, Tatan. "Community Participation Provides Hydrological Environmental Services In the Watershed Area." Sustainable Environmental and Optimizing Industry Journal 5, no. 1 (2023): 56–65. http://dx.doi.org/10.36441/seoi.v5i1.1800.

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The extent of critical and potential critical land in the Kambaniru watershed has encouraged community perceptions where management of land and forests in the watershed-based area of community empowerment is an important effort. To be able to achieve a good Kambaniru watershed condition, the behavior and activities of land and forest utilization by the community must comply with the principles of soil and water conservation. High population growth rate and followed by pressure on land has the potential to create new social problems in the form of poverty. On the other hand, the large potential
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29

Collados-Lara, Antonio-Juan, Juan-de-Dios Gómez-Gómez, David Pulido-Velazquez, and Eulogio Pardo-Igúzquiza. "An approach to identify the best climate models for the assessment of climate change impacts on meteorological and hydrological droughts." Natural Hazards and Earth System Sciences 22, no. 2 (2022): 599–616. http://dx.doi.org/10.5194/nhess-22-599-2022.

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Abstract. This paper describes the benefits of using more reliable local climate scenarios to analyse hydrological responses. It assumes that Regional Climate Model (RCM) simulations are more reliable when they provide better approximations to the historical basic and drought statistics after applying a bias correction to them. We have investigated whether the best solutions in terms of their approximation to the local meteorology may also provide the best hydrological assessments. We have carried out a classification of the corrected RCM simulations used for both approximations. This has been
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Shrestha, Ashish, Felipe Augusto Arguello Souza, Samuel Park, et al. "Socio-hydrological modeling of the tradeoff between flood control and hydropower provided by the Columbia River Treaty." Hydrology and Earth System Sciences 26, no. 19 (2022): 4893–917. http://dx.doi.org/10.5194/hess-26-4893-2022.

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Abstract. The Columbia River Treaty (CRT) signed between the United States and Canada in 1961 is known as one of the most successful transboundary water treaties. Under continued cooperation, both countries equitably share collective responsibilities of reservoir operations and flood control and hydropower benefits from treaty dams. As the balance of benefits is the key factor of cooperation, future cooperation could be challenged by external social and environmental factors which were not originally anticipated or change in the social preferences of the two actors. To understand the robustnes
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31

Jaun, S., and B. Ahrens. "Evaluation of a probabilistic hydrometeorological forecast system." Hydrology and Earth System Sciences Discussions 6, no. 2 (2009): 1843–77. http://dx.doi.org/10.5194/hessd-6-1843-2009.

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Abstract. Medium range hydrological forecasts in mesoscale catchments are only possible with the use of hydrological models driven by meteorological forecasts, which in particular contribute quantitative precipitation forecasts (QPF). QPFs are accompanied by large uncertainties, especially for longer lead times, which are propagated within the hydrometeorological model system. To deal with this limitation of predictability, a probabilistic forecasting system is tested, which is based on a hydrological-meteorological ensemble prediction system. The meteorological component of the system is the
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Jaun, S., and B. Ahrens. "Evaluation of a probabilistic hydrometeorological forecast system." Hydrology and Earth System Sciences 13, no. 7 (2009): 1031–43. http://dx.doi.org/10.5194/hess-13-1031-2009.

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Abstract. Medium range hydrological forecasts in mesoscale catchments are only possible with the use of hydrological models driven by meteorological forecasts, which in particular contribute quantitative precipitation forecasts (QPF). QPFs are accompanied by large uncertainties, especially for longer lead times, which are propagated within the hydrometeorological model system. To deal with this limitation of predictability, a probabilistic forecasting system is tested, which is based on a hydrological-meteorological ensemble prediction system. The meteorological component of the system is the
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Zhao, Xinfeng, Hongyan Wang, Mingyu Bai, et al. "A Comprehensive Review of Methods for Hydrological Forecasting Based on Deep Learning." Water 16, no. 10 (2024): 1407. http://dx.doi.org/10.3390/w16101407.

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Artificial intelligence has undergone rapid development in the last thirty years and has been widely used in the fields of materials, new energy, medicine, and engineering. Similarly, a growing area of research is the use of deep learning (DL) methods in connection with hydrological time series to better comprehend and expose the changing rules in these time series. Consequently, we provide a review of the latest advancements in employing DL techniques for hydrological forecasting. First, we examine the application of convolutional neural networks (CNNs) and recurrent neural networks (RNNs) in
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Yao, Liming, Zhongwen Xu, Huijuan Wu, and Xudong Chen. "A novel data-driven analytical framework on hierarchical water allocation integrated with blue and virtual water transfers." Hydrology and Earth System Sciences 24, no. 5 (2020): 2769–89. http://dx.doi.org/10.5194/hess-24-2769-2020.

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Abstract. In this study a novel data-driven analytical framework is proposed for cooperative strategies that ensure the optimal allocation of blue and virtual water transfers under different hydrological and economic conditions. A Stackelberg–Nash–Harsanyi equilibrium model is also developed to deal with the hierarchical conflicts between the water affairs bureau and multiple water usage sectors and overcome problems associated with water scarcity and uneven distribution. It was found that cooperative blue and virtual water transfer strategies could save water and improve utilization efficienc
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Dubey, Shivam. "Ramsar wetlands: Critical zones for maintenance for ecological equilibrium." Journal of Pharmaceutical and Biological Sciences 12, no. 2 (2025): 127–34. https://doi.org/10.18231/j.jpbs.2024.019.

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Wetlands are essential for preserving the global hydrological cycle, controlling the climate, preserving ecosystem diversity, and ensuring human well-being. Humans can benefit directly from wetland ecosystems in terms of economic value in addition to indirect benefits. As a result, it is among the most significant and fruitful ecosystems. But in previous ages, people didn't value wetlands; instead, they saw them as a haven for mosquitoes, disease-carrying insects, and places to die. This led to the loss of many wetlands worldwide.
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Lavers, David A., Maria-Helena Ramos, Linus Magnusson, et al. "A Vision for Hydrological Prediction." Atmosphere 11, no. 3 (2020): 237. http://dx.doi.org/10.3390/atmos11030237.

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IMproving PRedictions and management of hydrological EXtremes (IMPREX) was a European Union Horizon 2020 project that ran from September 2015 to September 2019. IMPREX aimed to improve society’s ability to anticipate and respond to future extreme hydrological events in Europe across a variety of uses in the water-related sectors (flood forecasting, drought risk assessment, agriculture, navigation, hydropower and water supply utilities). Through the engagement with stakeholders and continuous feedback between model outputs and water applications, progress was achieved in better understanding th
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Moura, Larissa Brêtas, Tárcio Rocha Lopes, Sérgio Nascimento Duarte, Pietro Sica, and Marcos Vinícius Folegatti. "Hydrological Assessment Using the SWAT Model in the Jundiaí River Basin, Brazil: Calibration, Model Performance, and Land Use Change Impact Analysis." Resources 14, no. 7 (2025): 112. https://doi.org/10.3390/resources14070112.

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Flow regulation and water quality maintenance are considered ecosystem services, as they provide environmental benefits with a measurable economic value to society. Distributed or semi-distributed hydrological models can help identify where land use decisions yield the greatest economic and environmental returns related to water resources. For these reasons, this study integrated simulations performed with the SWAT (Soil and Water Assessment Tool) model under varying land use conditions, aiming to balance potential benefits with the loss of ecosystem services. Among the tested parameters, thos
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Perrels, A., Th Frei, F. Espejo, L. Jamin, and A. Thomalla. "Socio-economic benefits of weather and climate services in Europe." Advances in Science and Research 10, no. 1 (2013): 65–70. http://dx.doi.org/10.5194/asr-10-65-2013.

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Abstract. There is a rising interest around the world for a better understanding of the economic and social value added of weather services. National hydro-meteorological services and international cooperative bodies in meteorology have ever more to justify their use of public budgets. Furthermore, the development of hydrological and meteorological services is to a large extent steered by expectations regarding the eventual benefits of the envisaged new developments. This article provides a compact overview of the impediments for uptake of socio-economic benefit (SEB) studies, methods and resu
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Amour, I., Z. Mussa, A. Bibov, and T. Kauranne. "Using ensemble data assimilation to forecast hydrological flumes." Nonlinear Processes in Geophysics 20, no. 6 (2013): 955–64. http://dx.doi.org/10.5194/npg-20-955-2013.

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Abstract. Data assimilation, commonly used in weather forecasting, means combining a mathematical forecast of a target dynamical system with simultaneous measurements from that system in an optimal fashion. We demonstrate the benefits obtainable from data assimilation with a dam break flume simulation in which a shallow-water equation model is complemented with wave meter measurements. Data assimilation is conducted with a Variational Ensemble Kalman Filter (VEnKF) algorithm. The resulting dynamical analysis of the flume displays turbulent behavior, features prominent hydraulic jumps and avoid
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Han, Dongyang, Guanghui Lv, and Xuemin He. "A Research on the Ecological Operation of Reservoirs Based on the Indicators of Hydrological Alteration." Sustainability 14, no. 11 (2022): 6400. http://dx.doi.org/10.3390/su14116400.

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The conventional reservoir operation strategy considering hydropower production ignores the ecology of the downstream rivers and causes a series of environmental problems. To ensure the sustainable development of a reservoir, the operation strategy should consider both the economic benefits of the power station and the ecological benefits in downstream rivers, the key to which is to select suitable parameters for quantifying the ecological objectives of the rivers and incorporate them into the reservoir operation model. To this end, the ecological index (EI) based on the Indicators of Hydrolog
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Li, Xiao-Juan, Jun-Xi Deng, Wan-Jun Xie, et al. "Comprehensive Benefit Evaluation of Pervious Pavement Based on China’s Sponge City Concept." Water 14, no. 9 (2022): 1500. http://dx.doi.org/10.3390/w14091500.

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Sponge cities provide broad hydrological functions to alleviate urban flooding and other water-related problems in China. Conventional impervious paving cannot meet contemporary sustainable city goals. The permeable paving technology offers primary benefits such as increasing stormwater infiltration, drainage, purification, groundwater recharge, and microclimatic amelioration. Few studies have evaluated the embracive range of benefits and the social functions holistically. This study aimed to develop a comprehensive benefit evaluation system to cover a broad range of indicators. Nineteen indic
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LEPRIEUR, F., M. A. HICKEY, C. J. ARBUCKLE, G. P. CLOSS, S. BROSSE, and C. R. TOWNSEND. "Hydrological disturbance benefits a native fish at the expense of an exotic fish." Journal of Applied Ecology 43, no. 5 (2006): 930–39. http://dx.doi.org/10.1111/j.1365-2664.2006.01201.x.

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Oviedo Escobar, Nicolas, and Andres Torres. "Hydric Attenuation and Hydrological Benefits for Implementing Productive Green Roof in Soacha, Colombia." Ingenieria y Universidad 18, no. 2 (2014): 291. http://dx.doi.org/10.11144/javeriana.iyu18-2.hahb.

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Este trabajo evalúa la atenuación hídrica de un techo verde productivo mediante tres indicadores: lag-time, coeficiente de escorrentía y porcentaje de retención volumétrica. Se utilizaron dos especies de plantas: una herbácea (Lactucasativa) y una crucífera (Raphanus sativus). Se registraron ocho eventos de lluvia en cuatro casas del barrio La Isla,en Soacha, Colombia (4° 34’ 22.3”, 74° 10’ 53.5”, 2701msnm). Se observaron retardos de la escorrentía hasta de 32 minutos, coeficientes equivalentes de escorrentía mínimos hasta de 0,1 y porcentajes de retención volumétrica máximos cercanos al 80 %.
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Liu, Saiyan, Qin Zhang, Yangyang Xie, Pengcheng Xu, and Huihua Du. "Evaluation of Minimum and Suitable Ecological Flows of an Inland Basin in China Considering Hydrological Variation." Water 15, no. 4 (2023): 649. http://dx.doi.org/10.3390/w15040649.

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Ecological flows in rivers are critical to the health and stability of river ecosystems, especially for inland drylands where ecological conditions are rapidly deteriorating. Climate change and human activities lead to hydrological variation, which in turn alters the hydrological and ecological balance of local ecosystems. Therefore, it is important to study the ecological flow under hydrological variation. In this study, the second-largest inland river basin in China, the Hei River Basin, was selected as the case study. The heuristic segmentation method, monthly minimum average flow method, t
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Iacob, Oana, John S. Rowan, Iain Brown, and Chris Ellis. "Evaluating wider benefits of natural flood management strategies: an ecosystem-based adaptation perspective." Hydrology Research 45, no. 6 (2014): 774–87. http://dx.doi.org/10.2166/nh.2014.184.

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Climate change is projected to alter river flows and the magnitude/frequency characteristics of floods and droughts. Ecosystem-based adaptation highlights the interdependence of human and natural systems, and the potential to buffer the impacts of climate change by maintaining functioning ecosystems that continue to provide multiple societal benefits. Natural flood management (NFM), emphasising the restoration of innate hydrological pathways, provides important regulating services in relation to both runoff rates and water quality and is heralded as a potentially important climate change adapt
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Ma, Zixuan, Dan Zhu, and Caiming Du. "A Discussion on Adaptive Applications of Some Chinese Design Codes in Guinea and Localization of Flood Standards." E3S Web of Conferences 346 (2022): 01009. http://dx.doi.org/10.1051/e3sconf/202234601009.

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Chinese engineering team participated in the construction of several water conservancy and hydropower projects in areas which have differences in climate characteristics from China. Due to a lack of hydrological and climatic data and the absence of systematic design specifications in these areas, considering construction safety, most of the Chinese designs and constructions are based on the extreme values with the Chinese design codes. The S Project in Guinea established a rainfall-runoff model through open-source remote sensing satellite precipitation data and limited hydrological station mea
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Zhang, Yiyang. "SUDS: New solution for urban flooding." Applied and Computational Engineering 58, no. 1 (2024): 283–88. http://dx.doi.org/10.54254/2755-2721/58/20240734.

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Climate change causing extreme weather events across the world. The excising urban drainage system facing the great stress of managing heavy precipitation events and caused urban flooding. The specialists in the urban designing field are searching for more effective way of managing flooding events. Sustainable Urban Drainage System is kind of drainage system design which simulating nature rainwater managing practices. In this research, the SUDS is analyzed mainly from three aspects: Flood managing ability, economic benefits, and ecological benefits. This research reviews the existing SUDS exam
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Karimi, P., W. G. M. Bastiaanssen, and D. Molden. "Water Accounting Plus (WA+) – a water accounting procedure for complex river basins based on satellite measurements." Hydrology and Earth System Sciences Discussions 9, no. 11 (2012): 12879–919. http://dx.doi.org/10.5194/hessd-9-12879-2012.

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Abstract. Coping with the issue of water scarcity and growing competition for water among different sectors requires proper water management strategies and decision processes. A pre-requisite is a clear understanding of the basin hydrological processes, manageable and unmanageable water flows, the interaction with land use and opportunities to mitigate the negative effects and increase the benefits of water depletion on society. Currently, water professionals do not have a common framework that links hydrological flows to user groups of water and their benefits. The absence of a standard hydro
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Tangdamrongsub, N., S. C. Steele-Dunne, B. C. Gunter, P. G. Ditmar, and A. H. Weerts. "Data assimilation of GRACE terrestrial water storage estimates into a regional hydrological model of the Rhine River basin." Hydrology and Earth System Sciences Discussions 11, no. 10 (2014): 11837–82. http://dx.doi.org/10.5194/hessd-11-11837-2014.

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Abstract. The ability to estimate Terrestrial Water Storage (TWS) realistically is essential for understanding past hydrological events and predicting future changes in the hydrological cycle. Inadequacies in model physics, uncertainty in model land parameters, and uncertainties in meteorological data commonly limit the accuracy of hydrological models in simulating TWS. In an effort to improve model performance, this study investigated the benefits of assimilating TWS estimates derived from the Gravity Recovery And Climate Experiment (GRACE) data into the OpenStreams-wflow model using an Ensem
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Algallar, John Christopher, and Doris Montecastro. "Managing Urban Water Resources: A Review of Challenges, Techniques, and Sustainability Strategies." Engineering, Technology & Applied Science Research 15, no. 3 (2025): 23149–62. https://doi.org/10.48084/etasr.9989.

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This paper highlights key challenges in coastal urban water resource management, focusing on the environmental, socio-economic, and governance dimensions that widely contribute to these issues. It discusses assessment methods, such as hydrological modeling, involving the Soil and Water Assessment Tool (SWAT), the Hydrologic Engineering Center-Hydrologic Modeling System (HEC-HMS), Remote Sensing (RS), Geographic Information System (GIS), and water quality assessment, emphasizing their practical usage, benefits, and disadvantages. It also highlights sustainable development strategies, such as In
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