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FLOW STATE OL' MAN RIVER MODEL

机译:流态OL'MAN RIVER模型

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The Mississippi Riven-it's abig deal, OK? The combined ports of South Louisiana and New Orleans move more cargo, ton for ton, than any other US port. So figuring out the Mississippi's hydrodynamics-the way its water, silt, and sand ebb and flow-matters. Matters so much, in fact, that Louisiana has dropped $18 million on a 10,800-square-foot model of Big Muddy's sinuous meanders. It's made of 216 panels of high-density foam, carved to match mapping data down to a quarter-millimeter tolerance. Sure, the Center for River Studies could have just simulated all this in a supercomputer, built from spreadsheets and algebra. And that's typically what happens nowadays: IRL models of natural phenomena are the exception. But when you can watch in an hour how the river bottom could transform in the course of, say, a year-and directly observe the potential effects on navigation-the impact is more immediate. "We can bring out students, politicians, and fishers who are tired of seeing PowerPoint or don't believe computer models," says civil engineer Clint Willson. That'll teach people what they can and can't build (and where) along a waterway critical to the US economy but more and more subject to the severe effects of climate change.
机译:密西西比河瑞文-没关系,好​​吗?南路易斯安那州和新奥尔良的合并港口运送的货物比其他任何美国港口都要多。因此,要弄清密西西比河的水动力特性,即水,泥沙和沙起潮落的方式。实际上,问题如此重要,以至于路易斯安那州以10,800平方英尺的“ Big Muddy”蜿蜒曲折模型建造了1800万美元的房屋。它由216块高密度泡沫板制成,经过精雕细刻,可将映射数据匹配到四分之一毫米的公差。当然,河流研究中心可以在由电子表格和代数构建的超级计算机中模拟所有这些。如今通常就是这种情况:自然现象的IRL模型是例外。但是,当您在一小时内可以观察到河谷在一年之内如何变化,并直接观察到对航行的潜在影响时,其影响就更直接了。土木工程师克林特·威尔森(Clint Willson)说:“我们可以带出厌倦了看PowerPoint或不相信计算机模型的学生,政客和渔民。”这将教会人们在对美国经济至关重要的水路沿线,哪些地方可以建设哪些建筑,以及哪些地方不能建设,但是越来越受气候变化的严重影响。

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  • 来源
    《Wired》 |2018年第2期|32-33|共2页
  • 作者

    Adam Rogers;

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