洪水沿着围栏。

IF 0.4 Q4 GEOGRAPHY
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引用次数: 1

摘要

在2010年、2013年和2014年的夏天,德克萨斯州沿美墨边境的Eagle Pass经历了三次大洪水事件,淹没了沿里约热内卢Grande洪泛平原的边界围栏。由于边界围栏的位置,最初的建设被认为影响了社会经济地位较低的居民,并加剧了里约热内卢Grande沿岸的洪水。我使用Nays2DFlood对围栏和非围栏条件下的洪水程度进行建模,然后将结果相互减去,以确定边界围栏的影响。研究发现,围篱与非围篱条件下的水深没有显著差异,但围篱对降低围篱线处的流速、增加围篱间隙和洪水边缘处的流速有显著作用。根据当地居民在洪水期间的实地观察,流速的下降会带走碎片并将其困在围栏上,延长洪水淹没时间,从而推迟洪水退潮。此外,这些条件可能导致人口稠密地区附近危险的水流速度条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Flooding Along the Fence.
In the summers of 2010, 2013 and 2014, Eagle Pass, Texas along the U.S.-Mexico border experienced three large flood events that inundated the border fence along the Rio Grande floodplain. The initial construction of the border fence is thought to have impacted lower socio-economic residents given its location and exacerbated flooding along the Rio Grande. I examine inundation using Nays2DFlood to model flooding extents in fence and non-fence conditions Results are then subtracted from each other to determine the impact of the border fence. I found that water depths do not differ between fence and non-fence conditions, but the fence plays a significant role in decreasing water velocities at the fence line and increasing water velocities at fence gaps and flood margins. Given on-the-ground observations by residents during flood events, this decrease in velocity can pick up debris and trap it against the fence, prolonging flood inundation times and thus delaying flood recessional flows. In addition, these conditions may lead to dangerous water velocity conditions near populated areas.
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来源期刊
CiteScore
1.20
自引率
0.00%
发文量
22
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