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HydroCNHS: A Python Package of Hydrological Model for Coupled Natural–Human Systems
Publisher: ASCE
Abstract: Modeling coupled natural–human systems (CNHS) to inform comprehensive water resources management policies or describe hydrological cycles in the Anthropocene has become popular in recent years. To fulfill this need, we ...
When Threshold and Metric Selection Matter for Resilience Planning in an Uncertain and Changing World
Publisher: ASCE
Abstract: Translation of a system’s performance goals into measurable quantities is fundamental for water systems planning. Frequently, the selected metrics are the same threshold-based metrics that have been common in water systems ...
Case Study on Hydropolitics in Afghanistan and Pakistan: Energy and Water Impacts of Kunar River Development
Publisher: ASCE
Abstract: There is growing interest from Afghanistan in using the untapped hydroelectric potential of the Kabul River Basin, on which both Pakistan and Afghanistan are simultaneously upstream and downstream riparians, to meet the ...
Expanded Decision-Scaling Framework to Select Robust Long-Term Water-System Plans under Hydroclimatic Uncertainties
Publisher: American Society of Civil Engineers
Abstract: This paper presents a decision-scaling based framework to determine whether one or more preselected planning alternatives for a multiobjective water-resources system are robust to a variety of nonstationary hydroclimatic ...
Guiding Groundwater Policy in the Indus Basin of Pakistan Using a Physically Based Groundwater Model
Publisher: American Society of Civil Engineers
Abstract: The exponential increase in groundwater usage over the past few decades in the Punjab province in Pakistan is responsible for the significant groundwater table decline in many parts of the province, leading to an urgent ...
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