John L Sabo
Datos Biográficos
| ID | 6019905 |
|---|---|
| NOMBRE | John L Sabo |
| NOMBRES | John L |
| APELLIDO | Sabo |
| FIRMA | SABO J L |
| AFILIACIONES | Arizona State University |
| ORCID | 0000-0001-5259-0709 |
| VERIFICADO | Sí |
| TOTAL DE OBRAS | 5 |
| TOTAL DE CITAS | 0 |
| TOTAL COMO AUTOR | 5 |
| TOTAL COMO EDITOR | 0 |
| PRIMER AÑO DE PUBLICACIÓN | 2003 |
| AÑO MÁS RECIENTE DE PUBLICACIÓN | 2025 |
| ÍNDICE H | 0 |
Linking freshwater hydrology to global food security in the Mekong Basin
Tropical flood pulse rivers are crucial for global food security, especially in developing nations. The Mekong River basin is one of the world’s most significant agricultural regions, sustaining millions through rice production and export. However, rapid hydrological changes from hydropower development, altered flow regimes, and climate variability threaten the flood pulses essential for rice cultivation. Using a multivariate autoregressive state…
Coordination of natural and built infrastructure to better manage extreme events
Natural infrastructure offers a promising, soft-path solution to water security challenges; however, the scientific framework for siting and measuring the efficacy of such restoration projects is nascent. In this paper, we developed a hydro-finance modeling framework to analyze the impact of constructed wetlands on streamflow extremes and cash flow compared to a purely built, or hard path, infrastructure project. Wetlands significantly diminished…
Design principles for engineering wetlands to improve resilience of coupled built and natural water infrastructure
Intensifying climate extremes and the ageing of built infrastructure have prompted the idea of replacing the ageing built infrastructure with natural infrastructure. In this paper, we discuss how a distributed portfolio of smaller wetlands performs compared to a flood control reservoir in terms of flood mitigation. Using a framework of a loosely coupled land surface model with a hydrodynamic model, in the Brazos basin (Texas), we find that (i) tw…
The U.S. food–energy–water system
Morris, W. F., and D. F. Doak. 2003. Quantitative Conservation Biology
Sabo, J. 2003. Morris, W. F., and D. F. Doak. 2003. Quantitative Conservation Biology: Theory and Practice of Population Viability Analysis. Sinauer Associates, Sunderland, Massachusetts, USA. Conservation Ecology 7(2):2. https://doi.org/10.5751/ES-00512-070202
Sin obras prominentes en esta página.
Morris, W. F., and D. F. Doak. 2003. Quantitative Conservation Biology
Sabo, J. 2003. Morris, W. F., and D. F. Doak. 2003. Quantitative Conservation Biology: Theory and Practice of Population Viability Analysis. Sinauer Associates, Sunderland, Massachusetts, USA. Conservation Ecology 7(2):2. https://doi.org/10.5751/ES-00512-070202
The U.S. food–energy–water system
Design principles for engineering wetlands to improve resilience of coupled built and natural water infrastructure
Intensifying climate extremes and the ageing of built infrastructure have prompted the idea of replacing the ageing built infrastructure with natural infrastructure. In this paper, we discuss how a distributed portfolio of smaller wetlands performs compared to a flood control reservoir in terms of flood mitigation. Using a framework of a loosely coupled land surface model with a hydrodynamic model, in the Brazos basin (Texas), we find that (i) tw…
Coordination of natural and built infrastructure to better manage extreme events
Natural infrastructure offers a promising, soft-path solution to water security challenges; however, the scientific framework for siting and measuring the efficacy of such restoration projects is nascent. In this paper, we developed a hydro-finance modeling framework to analyze the impact of constructed wetlands on streamflow extremes and cash flow compared to a purely built, or hard path, infrastructure project. Wetlands significantly diminished…
Linking freshwater hydrology to global food security in the Mekong Basin
Tropical flood pulse rivers are crucial for global food security, especially in developing nations. The Mekong River basin is one of the world’s most significant agricultural regions, sustaining millions through rice production and export. However, rapid hydrological changes from hydropower development, altered flow regimes, and climate variability threaten the flood pulses essential for rice cultivation. Using a multivariate autoregressive state…
Environmental Science (4 obras) · Business (3 obras) · Ecology (3 obras) · Environmental resource management (3 obras) · Geography (3 obras) · Geology (3 obras) · Water resources management and optimization (3 obras) · Computer Science (2 obras) · Engineering (2 obras) · Flood Risk Assessment and Management (2 obras)