...
首页> 外文期刊>Environmental Science and Pollution Research >Water Quantity and Quality Dynamics of the THC - Tuyamuyun Hydroengineering Complex - and Implications for Reservoir Operation
【24h】

Water Quantity and Quality Dynamics of the THC - Tuyamuyun Hydroengineering Complex - and Implications for Reservoir Operation

机译:THC-土鸭木云水利枢纽工程的水量和水质动态及其对水库运行的启示

获取原文
获取原文并翻译 | 示例
           

摘要

Background. In the Aral Sea basin, safe water resources are scarce and steadily becoming scarcer. Particularly high quality water is going to become a rare good. The object of the study was the Tuyamuyun Hydroengineering Complex (THC), a complex of artificial water reservoirs located in the lower Amu Darya River, which provides water for irrigation, industry, and drinking for the lower Amu Darya region. The focus was on operation of one of its four reservoirs, the Kaparas, which is mainly used for drinking water supply. The objective includes the investigation of impacts of conventional operation schemes on the reservoir water quality for improving drinking water quality (salinity). Basic operation rules for Kaparas, which can be considered as representative for conventional dam operation under dry year conditions, had to be identified and improved operation schemes derived. Methods. Existing data archives were analysed, and further data were acquired from field surveys, data processing and modelling studies. Historical data were identified, which are appropriate to determine representative schemes for the conventional operation. For the simulation of time-dependent and depth-dependent changes of reservoir salinisation, the reservoir water quality model Lac was used and linked with the THC model. Results and Discussion. Modelling results for the simulation of temperature dynamics and density stratification showed a sufficient congruence with the measured temperature profiles. The conformity of measured and calculated salt concentration is basically ensured. The reservoir, which fill with higher saline water at the end of the summer, aggravates the entrainment of high saline water in the entire water column. Conclusions. The current conventional operation regime mainly leads to filling the Kaparas reservoir with high saline water during the winter months. Even in the event of starting with comparable low salinity levels, the simulation demonstrates the rapid deterioration of the reservoir water quality. Under dry year conditions, the WHO standards for drinking water will be exceeded by 30 percent after two years, so that the impact of dry years in the context of water stress becomes visible. Recommendations and Outlook. Processed data and results are now available to identify enhanced reservoir operation strategies for salinity reduction by changing the period of reservoir filling and release, as well as to initiate a detailed analysis of how water deficits in dry years may be reduced by improved operation regimes. Using adapted and enhanced operation rules for THC reservoirs, the local population within the lower Aral Sea basin might be supplied with more potable water of higher quality in future.
机译:背景。在咸海流域,安全的水资源越来越稀缺,并且日益稳定。特别高品质的水将成为稀有商品。该研究的目标是图亚姆云水力工程综合体(THC),这是位于阿穆尔河下游的人工蓄水池,为阿穆尔河下游地区的灌溉,工业和饮用提供水。重点是其四个水库之一的Kaparas水库的运行,该水库主要用于饮用水供应。目的包括研究常规操作方案对水库水质的影响,以改善饮用水水质(盐度)。必须确定Kaparas的基本运行规则,可以将其视为在干旱年份条件下常规大坝运行的代表,并得出改进的运行方案。方法。分析了现有的数据档案,并从现场调查,数据处理和建模研究中获取了更多数据。确定了历史数据,这些数据适合确定常规操作的代表性方案。为了模拟随时间变化和随深度变化的储层盐化变化,使用了储层水质模型Lac并将其与THC模型联系起来。结果与讨论。用于模拟温度动态和密度分层的建模结果表明,与测得的温度曲线具有足够的一致性。基本上确保了所测量和计算的盐浓度的一致性。夏季结束时,水库中充满了较高的盐水,加剧了整个水柱中夹带的高盐水。结论当前的常规作业方式主要导致在冬季月份向Kaparas水库注满高盐分的水。即使在开始时具有较低的盐度水平,该模拟也表明了水库水质的迅速恶化。在干旱年份条件下,两年后将超过WHO的饮用水标准30%,因此干旱年份在缺水情况下的影响显而易见。建议和展望。现在可以使用处理后的数据和结果来确定增强的储层运行策略,以通过改变储层充注和释放时间来降低盐度,并开始详细分析如何通过改进的运行方式来减少干旱年份的水分亏缺。使用适用于THC水库的经过改进的改进操作规则,未来可能会向咸海下游海域的当地居民提供更多质量更高的饮用水。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号