三角洲流域的水资源预算:将许多不同的部分组合在一起

Q3 Agricultural and Biological Sciences
Jiro Ariyama, G. Boisramé, M. Brand
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引用次数: 4

摘要

作者:Ariyama, Jiro;加布里埃尔·f·s·布伊斯拉姆;摘要:水资源预算整合和总结了有效水资源管理所必需的水的投入和产出。利用从不同来源收集的水数据,我们为萨克拉门托-圣华金三角洲(Delta)、萨克拉门托河(SR)流域和圣华金河(SJR)流域构建了三个水预算(12年平均年、湿润年和极度干旱年)。尽管三角洲存在多种水资源预算,但本文提出的水资源预算是第一个提供以下所有三个方面的预算:(1)整个三角洲流域的水资源预算,分为与管理相关的组成部分;(2)干湿年之间和流域不同区域之间的比较;(3)讨论可用水资源数据中的主要差距和不确定性,以指导和指导未来的数据收集和水资源管理。结果表明,从1998年到2009年,三角洲平均每年获得2420万英亩英尺(maf)的水,这些水主要以河流流出(71%)、水出口(22%)和蒸散(ET)的形式流出;6%)。SR流域的降水量为56.9 maf(95%为降水)。SR流域的主要产出是蒸散发(63%)和流向三角洲的流量(34%)。SJR流域的总水量为28.7 maf,由降水(74%)、三角洲来水(18%)和库容耗竭(7%)组成。SJR流域的主要产出是蒸散发(65%)、水出口(19%)和流向三角洲(14%)。大多数数值每年变化很大。虽然对河流流量、出水量和河谷降水的测量和估计相对较好,但山区地下水储存量变化以及蒸散发和降水的不确定性较高。为了建立更详细和准确的水预算,必须改进这些组成部分的数据收集和综合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Water Budgets for the Delta Watershed: Putting Together the Many Disparate Pieces
Author(s): Ariyama, Jiro; Boisrame, Gabrielle F. S.; Brand, Marina Riley | Abstract: Water budgets integrate and summarize the water inputs and outputs that are essential for effective water resources management. Using water data collected from different sources, we constructed three water budgets (a 12-year annual average, a wet year, and a critically dry year) for the Sacramento–San Joaquin Delta (Delta), the Sacramento River (SR) watershed, and the San Joaquin River (SJR) watershed. Although multiple water budgets for the Delta exist, the water budgets presented here are the first to provide all three of the following: (1) water budgets for the entire Delta watershed, divided into management-relevant components, (2) comparisons between wet and dry years and between different regions of the watershed, and (3) discussion of major gaps and uncertainties in the available water data to guide and inform future data collection and water management. Results show that, from 1998 to 2009, the Delta received 24.2 million acre feet (maf) of water each year on average, which primarily exited the Delta as river outflow (71%), water exports (22%), and evapotranspiration (ET; 6%). The SR watershed received 56.9 maf of water (95% as precipitation). The major outputs from the SR watershed were ET (63%) and flows to the Delta (34%). In the SJR watershed, total water input was 28.7 maf composed of precipitation (74%), water imported from the Delta (18%), and storage depletion (7%). The major outputs from the SJR watershed were ET (65%), water exports (19%), and flows to the Delta (14%). Most values varied greatly from year to year. Although streamflows, water exports, and valley precipitation are relatively well measured and estimated, uncertainties are higher for groundwater storage change as well as for ET and precipitation in montane regions. Improvement in data collection and synthesis in these components is necessary to build a more detailed and accurate water budget.
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来源期刊
San Francisco Estuary and Watershed Science
San Francisco Estuary and Watershed Science Environmental Science-Water Science and Technology
CiteScore
2.90
自引率
0.00%
发文量
24
审稿时长
24 weeks
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