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Modeling the Influence of River Flow and Salt Water Intrusion in the Terengganu Estuary, Malaysia

机译:模拟河流流水和盐水侵入在马来西亚的河流盐水侵入的影响

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Salinity intrusion is a major concern when the freshwater extraction station is located in the estuary. This paper attempt to predict the salt intrusion length in the upper stretch of estuary, by applying different magnitudes of freshwater discharge at the river regime. The integrated two dimensional hydrodynamics model associated with advection dispersion model was performed to investigate the salinity intrusion. The model was well calibrated and verified by the measured data undertaken during dry season. The maximum salt intrusion length to the threshold of salinity density is 1.00 ppt on the existing condition was predicted at 9.97 km from the river mouth. Moreover, with the magnitude of 100.00 mV and 30.00 m~3s~(-1) freshwater discharges at the upstream boundary (Kpg Tanggol), it was predicted the maximum salt intrusion length was 11.84 km and 21.41 km, respectively, from the river mouth. Therefore, it was determined the minimum freshwater discharge of approximately 100.00 mV1 is required at the Kpg Tanggol river gauging station, in order to maintain the acceptable salinity levels at the Pulau Musang freshwater pump house. However, the actual water discharge at the Kpg Tanggol boundary station should be higher, since the minimum discharge does not take into consideration the amount of water extraction by the Pulau Musang and SATU pump stations. Further analysis is required to execute the consequences of water extraction toward the salinity intrusion in the Terengganu estuary that coupled with projected sea level rise.
机译:盐度入侵是淡水抽取站位于河口的主要问题。本文试图通过在河流制度上施加不同的淡水放电幅度来预测河口上部盐的盐入侵长度。进行了与平流分散模型相关的集成二维流体动力学模型,以研究盐度侵扰。该模型良好校准并通过旱季期间进行的测量数据进行验证。盐度密度阈值的最大盐入侵长度为1.00 ppt,距离河口有9.97公里。此外,在上游边界(KPG Tanggol)的100.00 mV和30.00m〜3s〜(-1)淡水排出的情况下,预测最大盐入侵长度为11.84公里,21.41km,从河口。因此,在KPG Tanggol河衡量站中确定需要大约100.00 MV1的最小淡水放电,以维持Pulau Musang淡水泵房的可接受的盐度水平。然而,KPG Tanggol边界站的实际排水应更高,因为最小放电不考虑Pulau Musang和Satu泵站的水提取量。需要进一步分析来执行水提取朝着达鹏猴河口中的盐度入侵的后果,与预计的海平面上升相结合。

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