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Jay R. Lund

Researcher at University of California, Davis

Publications -  300
Citations -  9726

Jay R. Lund is an academic researcher from University of California, Davis. The author has contributed to research in topics: Water supply & Water resources. The author has an hindex of 50, co-authored 292 publications receiving 8595 citations. Previous affiliations of Jay R. Lund include Centro Federal de Educação Tecnológica de Minas Gerais & University of California.

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Hydro-economic models: concepts, design, applications, and future prospects.

TL;DR: This paper identifies the key steps in model design and diverse problems, formulations, levels of integration, spatial and temporal scales, and solution techniques addressed and used by over 80 hydro-economic modeling efforts dating back 45 years from 23 countries.
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Economic-engineering optimization for California water management

TL;DR: An economic-engineering optimization model of California's major water supply system is presented in this article, and the model's develop- ment, calibration, limitations, and results are reviewed.
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Climate warming and water management adaptation for California

TL;DR: The ability of California's water supply system to adapt to long-term climatic and demographic changes is examined in this article, where two climate warming and a historical climate scenario are examined with population and land use estimates for the year 2100 using a statewide economic-engineering optimization model of water supply management.
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Water and climate: Recognize anthropogenic drought.

TL;DR: California's current extreme drought must be a lesson for managing water in a warmer, more densely populated world, say Amir AghaKouchak and colleagues.
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Optimization of California's Water Supply System: Results and Insights

TL;DR: In this article, the authors present results of a large-scale economic-engineering optimization model of California's water supply system, which illustrates the value of optimization modeling for providing integrated information needed to manage a complex multipurpose water system.