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Development of a storm surge driven water quality model to simulate spills during hurricanes

机译:开发风暴潮驱动的水质模型以模拟飓风期间的泄漏

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Hurricanes can cause widespread environmental pollution that has yet to be fully articulated. This study develops a predictive water quality model to forecast potential contamination resulting from buckled or ruptured storage tanks in coastal industrialized areas when subjected to storm surge. The developed EFDC-Storm Surge model (EFDC-SS) couples EPA's EFDC code with the SWAN-ADCIRC hurricane simulation model. EFDC-SS is demonstrated using the Houston Ship Channel in Texas as a testbed and hurricane Ike as a model hurricane. Conservative and decaying dye runs evaluated various hurricane scenarios, combined with spills released at different locations and release times. Results showed that tank locations with shorter distances to the main waterbody and lower ground elevations have a higher risk of inundation and rapid spill mass transport. It was also determined that hurricane strength and landfall location, the location of the spill, and the spill release time relative to peak surge were interdependent.
机译:飓风会造成尚未完全阐明的广泛环境污染。这项研究开发了一种预测性水质模型,以预测在遭受风暴潮时沿海工业化地区的储罐弯曲或破裂所造成的潜在污染。开发的EFDC风暴潮模型(EFDC-SS)将EPA的EFDC代码与SWAN-ADCIRC飓风模拟模型结合在一起。 EFDC-SS使用德克萨斯州的休斯敦船舶航道作为试验台,艾克飓风作为模型飓风进行了演示。保守和腐烂染料运行评估了各种飓风情景,并结合了在不同位置释放的溢出物和释放时间。结果表明,距主要水体距离较短且地面高度较低的水箱位置被淹没和快速溢出物运输的风险较高。还确定了飓风强度和登陆位置,溢漏的位置以及相对于峰值浪涌的溢漏释放时间是相互依赖的。

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