首页> 外文会议>International Conference on Ocean, Offshore and Arctic Engineering >SALINITY RESPONSE TO THE RUNOFF FROM YANGTZE RIVER BASIN AT QINGCAOSHA RESERVOIR AREA IN YANGTZE ESTUARY
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SALINITY RESPONSE TO THE RUNOFF FROM YANGTZE RIVER BASIN AT QINGCAOSHA RESERVOIR AREA IN YANGTZE ESTUARY

机译:盐度对长江盆地兖诗地区的长江盆地径流的回应

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Qingcaosha Reservoir locates in the Yangtze Estuary of China is an estuary reservoir. As the third water source region of Shanghai city, about 717,000 m~3/d raw water will be supplied from the Reservoir when the project is finished. In order to avoid salt water from saltwater intrusion, it is necessary to reveal the rule of salinity variation in the Qingcaosha Reservoir area. Saltwater intrusion in the Yangtze Estuary is mainly impacted by the fresh water discharge from the Yangtze River and the open sea tides. The salinity response of Qingcaosha Reservoir area to the runoff will be discussed. In the paper, the hydrodynamic and saltwater intrusion model of Yangtze Estuary is developed and calibrated with the TELEMAC model. The model domain covers the whole Yangtze Estuary and the Hangzhou Bay. Hydrological data of 9 tidal stations and 5 current measuring points during spring tide, middle tide and neap tide in March, 2002, are used to calibrate the salinity data. Comparisons of the calculated results and measurements show that the hydrodynamic model and the salinity model can reflect precisely the law of currents and the salt water intrusion in the Yangtze Estuary, and they can be used to forecast the salinity in Qingcaosha Reservoir region. According to the different characteristic discharges corresponding to the different cumulative frequencies, the salinity distributions in Yangtze Estuary are calculated under the conditions of different flow into the sea. The simulation results show that the salinity values will decrease with the increasing of discharge. When the upstream discharge is below 16,700 m~3/s, the average value in dry season, the salinity response to the runoff is very sensitive. The salinity amplitude at the downstream gate area is inversely proportional to the upstream discharge, whereas, the parameter at upstream gate area is proportional to the upstream discharge if it isn't up to the average value in dry seasons. The salinity at the downstream area of reservoir is obviously higher than that at the head region.
机译:清加沙水库位于中国的长江河口是一个河口水库。作为上海市第三水源区,当项目完成时,将从水库提供约717,000米〜3 / D原水。为了避免盐水侵入盐水,有必要揭示青春纪储层区域的盐度变化规则。长江河口的咸水侵入主要受到长江和开放海潮的淡水排放。将讨论Qingcaosha水库区域到径流的盐度响应。本文用Telemac模型开发和校准了长江河口的流体动力学和咸水入侵模型。模型领域涵盖了整个长江口和杭州湾。 2002年3月春季潮汐,中潮和NeAP潮汐潮汐站和5次电流测量点的水文数据用于校准盐度数据。计算结果和测量的比较表明,流体动力学模型和盐度模型可以精确地反映了长江河口的电流和盐水侵入的规律,它们可用于预测清加沙水库区域的盐度。根据对应于不同累积频率的不同特性排放,长江河口的盐度分布在不同流入海中的情况下计算。仿真结果表明,随着放电的增加,盐度值将降低。当上游放电低于16,700米〜3 / s时,旱季的平均值,对径流的盐度反应非常敏感。下游栅极区域的盐度幅度与上游放电成反比,而如果在干燥季节中的平均值下,上游栅极区域的参数与上游放电成比例。水库下游区域的盐度明显高于头部区域的盐度。

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