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Assessing the Impacts of Sea Level Rise on Salinity Intrusion and Transport Time Scales in a Tidal Estuary, Taiwan

机译:评估台湾海平面上升对潮汐河口盐度入侵和运输时间尺度的影响

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Global climate change has resulted in a gradual sea level rise. Sea level rise can cause saline water to migrate upstream in estuaries and rivers, thereby threatening freshwater habitat and drinking-water supplies. In the present study, a three-dimensional hydrodynamic model was established to simulate salinity distributions and transport time scales in the Wu River estuary of central Taiwan. The model was calibrated and verified using tidal amplitudes and phases, time-series water surface elevation and salinity distributions in 2011. The results show that the model simulation and measured data are in good agreement. The validated model was then applied to calculate the salinity distribution, flushing time and residence time in response to a sea level rise of 38.27 cm. We found that the flushing time for high flow under the present condition was lower compared to the sea level rise scenario and that the flushing time for low flow under the present condition was higher compared to the sea level rise scenario. The residence time for the present condition and the sea level rise scenario was between 10.51 and 34.23 h and between 17.11 and 38.92 h, respectively. The simulated results reveal that the residence time of the Wu River estuary will increase when the sea level rises. The distance of salinity intrusion in the Wu River estuary will increase and move further upstream when the sea level rises, resulting in the limited availability of water of suitable quality for municipal and industrial uses.
机译:全球气候变化导致海平面逐渐上升。海平面上升会导致盐水在河口和河流中向上游迁移,从而威胁淡水栖息地和饮用水供应。在本研究中,建立了三维水动力模型来模拟台湾中部吴河口盐度分布和运输时间尺度。利用2011年的潮汐幅值和相位,时间序列水面高度和盐分分布对模型进行了校准和验证。结果表明,该模型的仿真结果与实测数据吻合良好。然后将经过验证的模型应用于计算盐度分布,冲洗时间和响应于海平面上升38.27 cm的停留时间。我们发现,与海平面上升情景相比,当前条件下大流量的冲洗时间要短,而与海平面上升情景相比,当前条件下低流量的冲洗时间要高。当前情况和海平面上升情况的停留时间分别在10.51和34.23 h之间以及17.11和38.92 h之间。模拟结果表明,随着海平面上升,乌河口的滞留时间将增加。乌河口盐分入侵的距离将增加,并随着海平面上升而向上游移动,从而导致有限质量的适合市政和工业用途的水的供应。

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