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Journal articles on the topic 'Hydrological services'

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1

Ekka, Anjana, Yong Jiang, Saket Pande, and Pieter van der Zaag. "How economically and environmentally viable are multiple dams in the upper Cauvery Basin, India? A hydro-economic analysis using a landscape-based hydrological model." Hydrology and Earth System Sciences 28, no. 14 (2024): 3219–41. http://dx.doi.org/10.5194/hess-28-3219-2024.

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Abstract. The construction of dams threatens the health of watershed ecosystems. The purpose of this study is to show how multiple dams in a basin can impact hydrological flow regimes and subsequently aquatic ecosystems that depend on river flows. The approach assesses the ecosystem services (ESs), including the tradeoffs between economic and ecological services due to altered flow regimes. It uses a previously developed model that integrates a landscape-based hydrological model with a reservoir operations model on a basin scale. The approach is novel because not only does it offer the analysi
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2

Duku, C., H. Rathjens, S. J. Zwart, and L. Hein. "Towards ecosystem accounting: a comprehensive approach to modelling multiple hydrological ecosystem services." Hydrology and Earth System Sciences Discussions 12, no. 3 (2015): 3477–526. http://dx.doi.org/10.5194/hessd-12-3477-2015.

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Abstract. Ecosystem accounting is an emerging field that aims to provide a consistent approach to analysing environment-economy interactions. In spite of the progress made in mapping and quantifying hydrological ecosystem services, several key issues must be addressed if ecohydrological modelling approaches are to be aligned with ecosystem accounting. They include modelling hydrological ecosystem services with adequate spatiotemporal detail and accuracy at aggregated scales to support ecosystem accounting, distinguishing between service capacity and service flow, and linking ecohydrological pr
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3

Nunes, Carvalho-Santos, and Pastor. "Impacts of Wildfires on Hydrological Ecosystem Services." Proceedings 30, no. 1 (2020): 48. http://dx.doi.org/10.3390/proceedings2019030048.

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Forest and natural landscapes are usually considered to provide increased hydrological services over agriculture due to increased vegetation cover. Natural vegetation is expected to protect soils against erosion, regulate floods by increasing litter and soil water retention and decreased sediment yield. Afforestation is therefore used to control floods and prevent soil degradation, and water supplies are usually taken from forested watersheds. In the second half of the XXth century, agricultural abandonment in the northern rim of the Mediterranean led to extensive afforestation and renaturaliz
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4

Rodda, John C. "Towards a funding future for hydrological services?" International Journal of Water Resources Development 6, no. 3 (1990): 170–77. http://dx.doi.org/10.1080/07900629008722469.

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5

Zabaleta, Ane, Eneko Garmendia, Petr Mariel, Ibon Tamayo, and Iñaki Antigüedad. "Land cover effects on hydrologic services under a precipitation gradient." Hydrology and Earth System Sciences 22, no. 10 (2018): 5227–41. http://dx.doi.org/10.5194/hess-22-5227-2018.

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Abstract. Climate change impacts on the hydrological cycle are altering the quantity, quality, and temporal distribution of riverine discharge, necessitating a more rigorous consideration of changes in land cover and land use. This study establishes relationships between different land cover combinations (e.g. percentages of forest – both native and exotic – and pastureland) and hydrological services, using hydrological indices estimated at annual and seasonal timescales in an area with a steep precipitation gradient (900–2600 mm yr−1). Using discharge data from 20 catchments in the Bay of Bis
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Bissolli, Peter, Hermann Mächel, Maya Körber, Andrea Kreis, Buhalqem Mamtimin, and Stefan Rösner. "The WMO Regional Climate Centre – Provider of Climate Services for National Meteorological and Hydrological Services in Europe." Meteorologische Zeitschrift 29, no. 5 (2020): 349–53. http://dx.doi.org/10.1127/metz/2020/0938.

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7

Hendrayanto, Hendrayanto, and S. Sudomo. "Hydrological Services of Forests and Their Compensation Initiatives." Jurnal Manajemen Hutan Tropika (Journal of Tropical Forest Management) 19, no. 1 (2013): 79–84. http://dx.doi.org/10.7226/jtfm.19.1.79.

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8

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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9

Duku, C., H. Rathjens, S. J. Zwart, and L. Hein. "Towards ecosystem accounting: a comprehensive approach to modelling multiple hydrological ecosystem services." Hydrology and Earth System Sciences 19, no. 10 (2015): 4377–96. http://dx.doi.org/10.5194/hess-19-4377-2015.

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Abstract. Ecosystem accounting is an emerging field that aims to provide a consistent approach to analysing environment–economy interactions. One of the specific features of ecosystem accounting is the distinction between the capacity and the flow of ecosystem services. Ecohydrological modelling to support ecosystem accounting requires considering among others physical and mathematical representation of ecohydrological processes, spatial heterogeneity of the ecosystem, temporal resolution, and required model accuracy. This study examines how a spatially explicit ecohydrological model can be us
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10

Kozma, Zsolt, Bence Decsi, Tamás Ács, et al. "Supposed Effects of Wetland Restoration on Hydrological Conditions and the Provisioning Ecosystem Services—A Model-Based Case Study at a Hungarian Lowland Catchment." Sustainability 15, no. 15 (2023): 11700. http://dx.doi.org/10.3390/su151511700.

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Climate change and water scarcity increase the vulnerability of crop production and other ecosystem services (ES) in flood-protected lowlands under a continental climate. Restoration of wetlands leads to a higher water-buffering capacity of the landscape, strengthening various ecosystem services, and fostering adaptation to climatic, ecological, and agricultural challenges. Such restoration efforts require extensive land-use change, leading to trade-offs in provisioning and regulating ES. However, knowledge is limited about these situations, especially in the case of lowland areas. Here, we in
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11

Underwood, Emma C., Allan D. Hollander, Lorraine E. Flint, Alan L. Flint, and Hugh D. Safford. "Climate change impacts on hydrological services in southern California." Environmental Research Letters 13, no. 12 (2018): 124019. http://dx.doi.org/10.1088/1748-9326/aaeb59.

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12

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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13

Wu, Yanfeng, Guangxin Zhang, and Alain N. Rousseau. "Quantitative assessment on basin-scale hydrological services of wetlands." Science China Earth Sciences 63, no. 2 (2019): 279–91. http://dx.doi.org/10.1007/s11430-018-9372-9.

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14

Goodall, Jonathan L., Kathleen D. Saint, Mehmet B. Ercan, et al. "Coupling climate and hydrological models: Interoperability through Web Services." Environmental Modelling & Software 46 (August 2013): 250–59. http://dx.doi.org/10.1016/j.envsoft.2013.03.019.

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15

Sharov, Vladimir, and Maria Popova. "Data efficiency of meteorological and hydrological services in Bulgaria." Meteorological Applications 2, no. 4 (2007): 347–50. http://dx.doi.org/10.1002/met.5060020408.

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16

Kanianska, Radoslava, Nikola Benková, Janka Ševčíková, et al. "Fluvisols Contribution to Water Retention Hydrological Ecosystem Services in Different Floodplain Ecosystems." Land 11, no. 9 (2022): 1510. http://dx.doi.org/10.3390/land11091510.

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Water retention is an important hydrological ecosystem service of active floodplain soils. The aim of the study was to evaluate the soil chemical, physical, and hydrological properties in Fluvisols in three different ecosystems that have an impact on water retention hydrological ecosystem services (WRHESs). We selected 16 localities along the Štiavnica River in Central Slovakia, 8 located in riparian zones (RZ), 5 in arable lands (AL), and 3 in grasslands (GL). Soil samples were collected from two layers (0–10 and 20–30 cm). In the laboratory, the soil physical (soil texture) and soil chemical
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17

Martínez Duarte, Juan A. "Mechanism of payments for hydrological ecosystem services in the Watershed of the Piray Miní stream." Visión de Futuro, no. 26, No 2 - 2022 (July 1, 2022): 127–42. http://dx.doi.org/10.36995/j.visiondefuturo.2022.26.02.004.en.

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To promote the conservation and forest hydrological restoration of the ecosystems located in the watershed of the Piray Miní stream, which supplies water to Eldorado, economic compensation mechanisms are required for the owners of the properties that provide environmental services to society. The objective of this work is to analyze the situation of environmental and socioeconomic factors, related to the watershed of the Piray Miní stream, and to propose a scheme of payments for hydrological ecosystem services for the conservation and restoration of ecosystems. Regarding the materials and meth
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18

Yu, Qian, Jinyan Yang, and Yijing Zhang. "Practice of Information Construction of Hydrological Archives." MATEC Web of Conferences 246 (2018): 02050. http://dx.doi.org/10.1051/matecconf/201824602050.

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Hydrological work has developed rapidly with the advancement of national economy and social technology. China now has comprehensive hydrological projects and reliable hydrological station network involved with water level, rainfall, groundwater, evaporation, and sediment. Through the hydrological station network to collect the changes and movement rules of water in the natural world, the researchers sorted the obtained data parameters into hydrological materials, and compiled all the data materials and rules into hydrological archives. The records in the hydrological archives are the rules obt
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19

Wagener, T., C. Kelleher, M. Weiler, et al. "It takes a community to raise a hydrologist: the Modular Curriculum for Hydrologic Advancement (MOCHA)." Hydrology and Earth System Sciences Discussions 9, no. 2 (2012): 2321–56. http://dx.doi.org/10.5194/hessd-9-2321-2012.

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Abstract. Protection from hydrological extremes and the sustainable supply of hydrological services in the presence of climate change and increasing population pressure are the defining societal challenges for hydrology in the 21st century. A review of the existing literature shows that these challenges and their educational consequences for hydrology were foreseeable and were predicted by some. Surveys of the current educational basis, however, also clearly demonstrate that hydrology education is not yet prepared to deal with this challenge. We present our own vision of the necessary future e
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20

Roslinda, Emi, and Yuliantini Yuliantini. "THE ECONOMIC VALUE OF HYDROLOGICAL SERVICES IN MENDALAM SUB WATERSHED, KAPUAS HULU REGENCY, WEST KALIMANTAN, INDONESIA." JOURNAL OF FORESTRY RESEARCH 1, no. 1 (2014): 1–8. https://doi.org/10.20886/ijfr.2014.1.1.1-8.

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  Forest ecosystem supports almost all of  the needs of  human being through its contribution of  tangible and intangible values.  Currently, the intangible values have gained less attention than the tangible values that cause  underestimation of  the total value of  the forest conversion into other more tangibly profitable usages, and miss-management of  the forest. One of  the important intangible values is the hydrological value that has been hardly calculated until now.  This research the intangible values of  water for household,
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21

Sutopo, Muhammad Fauzi, and Ikhwanuddin Mawardi. "Model Dan Nilai Jasa Hidrologis Dalam Perlindungan Ekosistem Hutan Dan DAS." Jurnal Teknologi Lingkungan 19, no. 2 (2018): 267. http://dx.doi.org/10.29122/jtl.v19i2.2875.

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ABSTRACTResearch on modeling and hydrological services in forest and watershed (DAS) ecosystem protection is still very little done in Indonesia; therefore, this research will be very useful for related stakeholders, since the purpose of the research will answer two problems, namely: (1) what factors can significantly affect the hydrological services in the protection of forest and watershed ecosystem both in the upstream and downstream areas DAS and (2) establish the economic value of hydrological services in upstream and downstream watershed areas. The results of the study indicate that: wat
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22

Roslinda, Emi, and Yuliantini Yuliantini. "THE ECONOMIC VALUE OF HYDROLOGICAL SERVICES IN MENDALAM SUB WATERSHED, KAPUAS HULU REGENCY, WEST KALIMANTAN, INDONESIA." Indonesian Journal of Forestry Research 1, no. 1 (2014): 1–8. https://doi.org/10.59465/ijfr.2014.1.1.1-8.

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Forest ecosystem supports almost all of the needs of human being through its contribution of tangible and intangible values. Currently, the intangible values have gained less attention than the tangible values that cause underestimation of the total value of the forest conversion into other more tangibly profitable usages, and miss-management of the forest. One of the important intangible values is the hydrological value that has been hardly calculated until now. This research the intangible values of water for household, transportation, agriculture and fishing in Mendalam Sub Watershed, Kalim
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23

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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24

Gush, M. B. "Hydrological services of fruit trees in gardens and urban horticulture." Acta Horticulturae, no. 1331 (December 2021): 245–52. http://dx.doi.org/10.17660/actahortic.2021.1331.33.

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25

van den Hurk, Bart J. J. M., Laurens M. Bouwer, Carlo Buontempo, et al. "Improving predictions and management of hydrological extremes through climate services." Climate Services 1 (March 2016): 6–11. http://dx.doi.org/10.1016/j.cliser.2016.01.001.

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26

Acharya, Gayatri. "Approaches to valuing the hidden hydrological services of wetland ecosystems." Ecological Economics 35, no. 1 (2000): 63–74. http://dx.doi.org/10.1016/s0921-8009(00)00168-3.

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27

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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28

Kundzewicz, Z. W., and P. Matczak. "Extreme hydrological events and security." Proceedings of the International Association of Hydrological Sciences 369 (June 11, 2015): 181–87. http://dx.doi.org/10.5194/piahs-369-181-2015.

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Abstract. Economic losses caused by hydrological extremes – floods and droughts – have been on the rise, worldwide. Hydrological extremes jeopardize human security and cause serious threats to human life and welfare and societal livelihood. Floods and droughts can undermine societies' security, understood as freedom from threat and the ability of societies to maintain their independent identity and their functional integrity against forces of change. Several dimensions of security are reviewed in the context of hydrological extremes. Floods and droughts pose a burden and serious challenges to
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Helmschrot, J. "Environmental information management and hydrological system modelling for the assessment of hydrological eco system functions and services (ESF/ESS) in the Okavango River Basin." Zentralblatt für Geologie und Paläontologie, Teil I 2014, no. 1 (2014): 305–38. http://dx.doi.org/10.1127/zgpi/2014/0305-0338.

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30

Wang, Kelin, Chunhua Zhang, Hongsong Chen, et al. "Karst landscapes of China: patterns, ecosystem processes and services." Landscape Ecology 34, no. 12 (2019): 2743–63. http://dx.doi.org/10.1007/s10980-019-00912-w.

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Abstract Context The karst region of southwestern China, one of the largest continuous karsts in the world, is known for its unique landscapes and rich biodiversity. This region has suffered severe environmental degradation (e.g., vegetation cover loss, soil erosion and biodiversity loss). In recent decades, Chinese governments at different levels have initiated several ecological programs (e.g., Green for Grain, Mountain Closure) to restore the degraded environment and to alleviate poverty. Objectives This study summarizes landscape studies of karst landscapes patterns, their dynamics and int
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31

Singh, Kuldeep. "Stream Order Delineation using SRTM 30 meter Resolution Digital Elevation Model (DEM) and Hydrology Tools in ArcGIS 10.3 and QGIS: Mapping of Drainage Pattern of Mandi District, Himachal Pradesh, India." Asian Review of Civil Engineering 10, no. 2 (2021): 9–17. http://dx.doi.org/10.51983/tarce-2021.10.2.3118.

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The paper describes step by step watershed and stream network delineation based on digital elevation models using the Hydrology tools in ArcGIS and online services for Hydrology and Hydrologic data. The 30-meter resolution SRTM image of Himachal Pradesh was downloaded from open topology website. This was further processed in QGIS and ArcGIS 10.3 software. The different hydrological processes and data management tools were used like, fill, Flow direction; flow accumulation, map algebra, stream orders, stream feature and stream dissolve in order to get the final map of Mandi drainage pattern.
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32

Ruíz-García, Víctor H., Ma Amparo Borja de la Rosa, Jesús D. Gómez-Díaz, Carlos Asensio-Grima, Moisés Matías-Ramos, and Alejandro I. Monterroso-Rivas. "Forest Fires, Land Use Changes and Their Impact on Hydrological Balance in Temperate Forests of Central Mexico." Water 14, no. 3 (2022): 383. http://dx.doi.org/10.3390/w14030383.

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Temperate forests play a fundamental role in the provision, regulation, and support of hydrological environmental services, but they are subject to constant changes in land use (clearing, overgrazing, deforestation, and forest fires) that upset the hydrological balance. Through scenarios simulated with the Water Evaluation and Planning (WEAP) hydrological model, the present study analyzes the effects of forest fires and land use changes on the hydrological balance in the microwatersheds of central Mexico. The land use changes that took place between 1995 and 2021 were estimated, and projection
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33

Lüke, Anna, and Jochen Hack. "Comparing the Applicability of Commonly Used Hydrological Ecosystem Services Models for Integrated Decision-Support." Sustainability 10, no. 2 (2018): 346. http://dx.doi.org/10.3390/su10020346.

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Different simulation models are used in science and practice in order to incorporate hydrological ecosystem services in decision-making processes. This contribution compares three simulation models, the Soil and Water Assessment Tool, a traditional hydrological model and two ecosystem services models, the Integrated Valuation of Ecosystem Services and Trade-offs model and the Resource Investment Optimization System model. The three models are compared on a theoretical and conceptual basis as well in a comparative case study application. The application of the models to a study area in Nicaragu
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34

Adamu, Abubakar Abbas, Salisu Dan'Azumi, and Mujahid Abbas. "RAINFALL-RUNOFF SIMULATION OF A SUB-CATCHMENT USING HEC-HMS." Platform : A Journal of Engineering 6, no. 4 (2022): 41. http://dx.doi.org/10.61762/pajevol6iss4art20976.

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Hydrological data in the form of stream flow is very scarce in most developing countries. This affects the planning and management of urban watersheds. Therefore, it is necessary to estimate peak discharge from rainfall using hydrologic models based on some measurable watershed characteristics. This study aims to model the rainfall-runoff process from a typical urban watershed using Hydrologic Engineering Center Hydrological Modeling System (HEC-HMS) software. The catchment basin has a total area of 21.91 km2, and a dendritic stream system. Soil Conservative Services (SCS) Curve number was use
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35

Stewart, B. "Measuring what we manage – the importance of hydrological data to water resources management." Proceedings of the International Association of Hydrological Sciences 366 (April 10, 2015): 80–85. http://dx.doi.org/10.5194/piahs-366-80-2015.

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Abstract. Water resources cannot be managed, unless we know where they are, in what quantity and quality, and how variable they are likely to be in the foreseeable future. Data from hydrological networks are used by public and private sectors for a variety of different applications. This paper discusses the value proposition behind the collection, analysis and use of hydrological data in support of these applications. The need for hydrological data and the requirements for the data are outlined, and information is provided on topics such as status of networks and data access and sharing. This
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36

Allodi, Alessandro, Letizia Angelo, Fabio Bordini, et al. "Hydrology across Disciplines: Organization and Application Experiences of a Public Hydrological Service in Italy." Climate 10, no. 3 (2022): 32. http://dx.doi.org/10.3390/cli10030032.

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Water is a fundamental resource for human life and nature; flood management, water supply systems and water protection policies are a few examples of equally important disciplines across the whole hydrological cycle. The present work focuses on the creation and sharing of hydrological knowledge within public activities, with regard to materials and methods adopted for developing and supplying hydrological information, suitable to different stakeholders needs, throughout different disciplines and sectors of environment, economy, society, as well as research and analysis. The aim of this work is
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37

Ouyang, Ying, Sudhanshu Sekhar Panda, and Gary Feng. "Linking Climate-Change Impacts on Hydrological Processes and Water Quality to Local Watersheds." Climate 10, no. 7 (2022): 96. http://dx.doi.org/10.3390/cli10070096.

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38

Ruiz-García, Víctor H., Carlos Asensio-Grima, A. Guillermo Ramírez-García, and Alejandro Ismael Monterroso-Rivas. "The Hydrological Balance in Micro-Watersheds Is Affected by Climate Change and Land Use Changes." Applied Sciences 13, no. 4 (2023): 2503. http://dx.doi.org/10.3390/app13042503.

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Temperate forests are key to the balance and provision of hydrological and environmental services. Currently, these forests are subject to human alterations as well as to the effects of global change, including warming, variability, deforestation, and forest fires. As a consequence, the hydrological balance has been modified. The present study simulates the effects of climate change and land use change on the hydrological balance of micro-watersheds in Mexico using the hydrological model Water Evaluation and Planning (WEAP). The land use change between 1995 and 2021 was estimated to establish
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39

Kundzewicz, Z. W., and P. Matczak. "Hydrological extremes and security." Proceedings of the International Association of Hydrological Sciences 366 (April 10, 2015): 44–53. http://dx.doi.org/10.5194/piahs-366-44-2015.

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Abstract. Economic losses caused by hydrological extremes – floods and droughts – have been on the rise. Hydrological extremes jeopardize human security and impact on societal livelihood and welfare. Security can be generally understood as freedom from threat and the ability of societies to maintain their independent identity and their functional integrity against forces of change. Several dimensions of security are reviewed in the context of hydrological extremes. The traditional interpretation of security, focused on the state military capabilities, has been replaced by a wider understanding
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40

Gichamo, Tseganeh Z., Nazmus S. Sazib, David G. Tarboton, and Pabitra Dash. "HydroDS: Data services in support of physically based, distributed hydrological models." Environmental Modelling & Software 125 (March 2020): 104623. http://dx.doi.org/10.1016/j.envsoft.2020.104623.

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41

Ćosić-Flajsig, Gorana, Ivan Vučković, and Barbara Karleuša. "An Innovative Holistic Approach to an E-flow Assessment Model." Civil Engineering Journal 6, no. 11 (2020): 2188–202. http://dx.doi.org/10.28991/cej-2020-03091611.

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River water resources provide a wide range of necessary ecosystem services, including regulating, provisioning, supporting and cultural services. Ecosystem services are linked to an appropriate level of functionality of river water resource processes, which can be connected with river basin environmental objectives. Environmental objectives can be achieved only if appropriate flow and sediment regimes and related river morphology quality are guaranteed. The obligation to define environmental flow (E-flow) in the European Union Water Framework Directive European (WFD) is not explicit, and the i
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42

Berthet, Lionel, François Bourgin, Charles Perrin, Julie Viatgé, Renaud Marty, and Olivier Piotte. "A crash-testing framework for predictive uncertainty assessment when forecasting high flows in an extrapolation context." Hydrology and Earth System Sciences 24, no. 4 (2020): 2017–41. http://dx.doi.org/10.5194/hess-24-2017-2020.

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Abstract. An increasing number of flood forecasting services assess and communicate the uncertainty associated with their forecasts. While obtaining reliable forecasts is a key issue, it is a challenging task, especially when forecasting high flows in an extrapolation context, i.e. when the event magnitude is larger than what was observed before. In this study, we present a crash-testing framework that evaluates the quality of hydrological forecasts in an extrapolation context. The experiment set-up is based on (i) a large set of catchments in France, (ii) the GRP rainfall–runoff model designe
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Kim, Ye Inn, Bernie Engel, Won Seok Jang, and Young Jo Yun. "Evaluating Wildfire-Induced Changes in a Water-Yield Ecosystem Service at the Local Scale Using the InVEST Model." Water 17, no. 9 (2025): 1260. https://doi.org/10.3390/w17091260.

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This study evaluates the applicability of the InVEST (Integrated Valuation of Ecosystem Services and Tradeoffs) model for assessing wildfire-induced changes in water-related ecosystem services at a localized scale. Wildfires significantly alter hydrological processes by reducing vegetation cover, which in turn affects water-yield dynamics. To quantify these changes, we applied the InVEST annual water-yield model to a 4.95 km2 wildfire-affected area and validated its outputs against the physically based SWAT model. The study utilized Sentinel-2 imagery to create pre- and post-wildfire land cove
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Sadgui, Oumayma, and Abdellatif Khattabi. "Economic Assessment of Hydrologic Ecosystem Services in Morocco’s Protected Areas: A Case Study of Ifrane National Park." Sustainability 16, no. 20 (2024): 8800. http://dx.doi.org/10.3390/su16208800.

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This study delves into the complex interplay between land use dynamics, hydrological services, and intangible benefits within the context of Ifrane National Park (INP) in Morocco. Due to its extensive mountain forests and numerous wetlands, INP is a crucial contributor to the nation’s water supply and a vital source of hydrological ecosystem services (HES). However, climate change and evolving land use patterns have led to diminishing water resources and the desiccation of certain wetlands. This research used the Integrated Valuation of Ecosystem Services and Tradeoffs software (InVEST 3.10.2)
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Schroeter, Serena, Harald Richter, Craig Arthur, et al. "Forecasting the impacts of severe weather." January 2021 10.47389/36, No 1 (2021): 76–83. http://dx.doi.org/10.47389/36.1.76.

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National meteorological and hydrological services provide severe weather warning information to inform decision-making by emergency management organisations. Such information also helps communities to take defensive and mitigating actions prior to and during severe weather events. Globally, warning information issued by meteorological and hydrological services varies widely. This can range from solely hazard-based to impact-based forecasting encompassing the exposure and vulnerability of communities to severe weather. The most advanced of these systems explicitly and quantitatively model the i
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Liu, Tingting, Nathaniel H. Merrill, Arthur J. Gold, Dorothy Q. Kellogg, and Emi Uchida. "Modeling the Production of Multiple Ecosystem Services from Agricultural and Forest Landscapes in Rhode Island." Agricultural and Resource Economics Review 42, no. 1 (2013): 251–74. http://dx.doi.org/10.1017/s1068280500007711.

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This study spatially quantifies hydrological ecosystem services and the production of ecosystem services at the watershed scale. We also investigate the effects of stressors such as land use change, climate change, and choices in land management practices on production of ecosystem services and their values. We demonstrate the approach in the Beaver River watershed in Rhode Island. Our key finding is that choices in land use and land management practices create tradeoffs across multiple ecosystem services and the extent of these tradeoffs depends considerably on the scenarios and ecosystem ser
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Krennert, Thomas, Georg Pistotnik, Rainer Kaltenberger, and Christian Csekits. "Crowdsourcing of weather observations at national meteorological and hydrological services in Europe." Advances in Science and Research 15 (May 18, 2018): 71–76. http://dx.doi.org/10.5194/asr-15-71-2018.

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Abstract. National Meteorological and Hydrological Services (NMHSs) increase their efforts to deliver impact-based weather forecasts and warnings. At the same time, a desired increase in cost-efficiency prompts these services to automatize their weather station networks and to reduce the number of human observers, which leads to a lack of “ground truth” information about weather phenomena and their impact. A possible alternative is to encourage the general public to submit weather observations, which may include crucial information especially in high-impact situations. We wish to provide an ov
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Von Thaden, Juan, Robert H. Manson, Russell G. Congalton, Fabiola López-Barrera, and Jacob Salcone. "A regional evaluation of the effectiveness of Mexico’s payments for hydrological services." Regional Environmental Change 19, no. 6 (2019): 1751–64. http://dx.doi.org/10.1007/s10113-019-01518-3.

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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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Sun, Feixiang, Yihe Lyu, Bojie Fu, and Jian Hu. "Hydrological services by mountain ecosystems in Qilian Mountain of China: A review." Chinese Geographical Science 26, no. 2 (2016): 174–87. http://dx.doi.org/10.1007/s11769-015-0791-9.

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