渭河流域生态基流及其保障措施研究
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在研究实施过程中,利用外方在植物群落演替分析、水沙-水质耦合模拟技术以及生态基流量计算的敏感性和不确定性分析方面的先进技术,由中方进行水文分析和水量模拟,建立生态评估指标体系,共同建立集成的生态水文过程模拟模型,评估利益相关方在用水计划和生态基础流量方面的利益和冲突,确定生态系统保护目标,估算渭河流域生态保护目标所需生态基流,确定当地生态基础流量,进行不确定性和敏感性分析,以期为渭河流域水资源水环境综合管理提供理论依据和技术支撑。
The overall objectives of the proposed project are to develop estimation methods for environmental flow requirement (EFR) appropriate to the characteristics of the Wei River in China, to put forward protection measures to safeguard environment flow, and to provide theoretical guidance and technical support for restoring healthy ecosystem of the river. The following are the specific goals to be achieved in line with these objectives: 1) Develop and provide solid scientific and appropriate estimation methods for EFR of the Wei River; 2) Establish an index system and determine the major ttributes of individual indicators for the assessment of ecosystem health of the river; 3) Quantify the social and economic impacts of different levels of environmental flow allocation on the economic sectors, in particular agriculture/irrigation, under various water allocation and management plans; 4) Determine the ecologically sound and practically realistic level of EFR for the Wei River, with involvement of stakeholder interests in the river basin; 5) Incorporate uncertainty and sensitivity analysis procedures in the determination of EFR and the relevant analysis. 6) Provide solid theoretical bases, state of the art techniques, and practically feasible protection measures for safeguarding the desired environmental flow in the river.
项目受资助省
1.Estimating water deficit and its uncertainties in water-scarce area using integrated modeling approach
- 关键词:
- 缺水地区;不确定性;建模方法;回归估计;水资源短缺;集成;水量平衡模型;回归分析方法
- Shou-ke WEI
- 《水科学与水工程:英文版》
- 2012年
- 卷
- 4期
- 期刊
2.Assessing interannual variability of evapotranspiration at the catchment scale using satellite-based evapotranspiration data sets
- 关键词:
- MEAN ANNUAL EVAPOTRANSPIRATION; WATER-BALANCE; SOIL-MOISTURE; GLOBALWATER; CLIMATE; MODEL; PRECIPITATION; EVAPORATION; FRAMEWORK; DYNAMICS
- Cheng, Lei;Xu, Zongxue;Wang, Dingbao;Cai, Ximing
- 《WATER RESOURCES RESEARCH》
- 2011年
- 47卷
- 期
- 期刊
The catchment water-energy balance at the interannual scale remains a challenge for bridging the important gap in our knowledge of the hydrologic cycle. This study investigates interannual evapotranspiration (ET) variability and water-energy balance at over 547 catchments across the contiguous United States in different climate zones. The investigation is based on ET data estimated from satellite images and surface daily meteorological data during the period of 1983-2006 provided by the University of Montana. We find that the interannual relationship between annual potential ET to annual precipitation (PET/P) and ET/P, the energy, and water factors defined with the Budyko curve framework can be captured by a linear function, with an average goodness of fit of 0.928 over all the catchments. The linear relationship is validated by another independent remote sensing ET product generated by the University of Washington and is demonstrated to be rational using regression diagnostics. Additionally, a comparison study using a water balance method and the Budyko curve is undertaken to examine the linear relationship. In addition to water supply and energy supply, the primary controls on evapotranspiration, soil water storage, response of vegetation to climate variability, and human interference are also major factors of the interannual relationship between PET/P and ET/P.
...3.Instream flow requirements for sediment transport in the lower Weihe River
- 关键词:
- the Weihe River; instream flow requirements; sediment transport; channelsedimentation; erosion-deposition;YELLOW-RIVER; WATER; ESTUARY; DELTA; LOAD
- Song, Jinxi;Xu, Zongxue;Hui, Yanghe;Li, Huaien;Li, Qi
- 《HYDROLOGICAL PROCESSES》
- 2010年
- 24卷
- 24期
- 期刊
Estimation of instream flow requirements for sediment transport (IFRST) in the downstream Weihe River is important for the maintenance of a healthy ecosystem of the river. In this study, the IFRST for the lower Weihe River is estimated on the basis of the observed hydrological data during the period 1960-2001. The results showed that the mean annual IFRSTs for the reach between Lintong and Huaxian and the reach below Huaxian were 6.85 and 7.62 billion m(3)/year, respectively, and the standard errors were 0.50 and 0.76 billion m(3)/year, respectively. The results also showed that the Sanmenxia Reservoir is an important driver for the changes in channel morphology and hydraulics, as well as the IFRST. Furthermore, according to the hydrological frequency (p value) estimated from annual instream flow data during the period 1960-2001, four typical years (p = 25%, 50%, 75% and 90%) for the two reaches of the Weihe River were determined. The analysis showed that the IFRST has a negative power functional relationship with the sediment concentration. On the basis of the efficiency coefficients (R(2)) during three sub-periods 1960-1973, 1974-1990 and 1991-2001, the annual IFRSTs in the above two reaches for the four typical years were estimated under different deposition and erosion-deposition conditions. The results provide useful references for restoration and water resource management of the Weihe River. Copyright (C) 2010 John Wiley & Sons, Ltd.
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