Assessment of water retention function as tool to improve integrated watershed management (case study of Poprad river basin, Slovakia).
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Summary
The results showed a significant influence of land-use on retention function; however, this impact could be limited by extreme precipitation or high soil water saturation.
- Type
- article
- Published
- 2017-12-01
- Cited by
- 37
- References
- 38
- OpenAlex
- https://openalex.org/W28511353
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:4447178
Keywords
Zingiber officinale, Traditional medicine, Medicine
References
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- The Water Retention Index: Using land use planning to manage water resources in Europe
- Probabilistic properties of the date of maximum river flow, an approach based on circular statistics in lowland, highland and mountainous catchment
- Link between hydric potential and predictability of maximum flow for selected catchments in Western Carpathians.
- Changes in demand and supply of ecosystem services under scenarios of future land use in Vorarlberg, Austria
- New Empirical Model Using Landscape Hydric Potential Method to Estimate Median Peak Discharges in Mountain Ungauged Catchments
- Analysis of short – term heavy rains in eastern Slovakia in the period 2003 - 2018
- The value of river valleys for restoring landscape features and the continuity of urban ecosystem functions – A review
- The influence of land cover changes on landscape hydric potential and river flows: Upper Vistula, Western Carpathians
- SWAT model-based quantification of the impact of land-use change on forest-regulated water flow
- Spatiotemporal variations in water conservation function of the Tibetan Plateau under climate change based on InVEST model
- Modeling water regulation ecosystem services: A review in the context of ecosystem accounting
- Spatio-Temporal Dynamics of Water Conservation Service of Ecosystems in the Zhejiang Greater Bay Area and Its Impact Factors Analysis
- A framework for identifying priority areas through integrated eco-environmental risk assessment for a holistic watershed management approach
- The concept for innovative Comprehensive Assessment of Lowland Rivers
- Quantifying the Soil Water Storage Capacity of Flysh Catchments Surrounded by Mixed Forests in Outer Carpathians
- Assessment of the Spatiotemporal Impact of Water Conservation on the Qinghai-Tibet Plateau
- Are we losing water storage capacity mostly due to climate change – Analysis of the landscape hydric potential in selected catchments in East-Central Europe
- Spatial and Temporal Evolution Characteristics of Water Conservation in the Three-Rivers Headwater Region and the Driving Factors over the Past 30 Years
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