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Flood trends and river engineering on the Mississippi River system

机译:密西西比河水系的洪水趋势与河道工程

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Along +AD4- 4000 km of the Mississippi River system, we document that climate, land-use change, and river engineering have contributed to statistically significant increases in flooding over the past 100-150 years. Trends were tested using a database of +AD4- 8 million hydrological measurements. A geospatial database of historical engineering construction was used to quantify the response of flood levels to each unit of engineering infrastructure. Significant climate-and/or land use-driven increases in flow were detected, but the largest and most pervasive contributors to increased flooding on the Mississippi River system were wing dikes and related navigational structures, followed by progressive levee construction. In the area of the 2008 Upper Mississippi flood, for example, about 2 m of the flood crest is linked to navigational and flood-control engineering. Systemwide, large increases in flood levels were documented at locations and at times of wing-dike and levee construction. Citation: Pinter, N., A. A. Jemberie, J. W. F. Remo, R. A. Heine, and B. S. Ickes (2008), Flood trends and river engineering on the Mississippi River system, Geophys. Res. Lett., 35, L23404, doi:10.1029/2008GL035987.
机译:在密西西比河系统的+ AD4- 4000公里处,我们记录到,过去100-150年间,气候,土地利用变化和河流工程已导致洪水的统计显着增加。使用+ AD4- 800万水文测量的数据库测试了趋势。历史工程建设的地理空间数据库用于量化洪水对工程基础设施各单元的响应。检测到由气候和/或土地利用驱动的流量显着增加,但密西西比河系统洪水泛滥的最大,最普遍的原因是机翼堤坝和相关的航行结构,随后逐步修建堤坝。例如,在2008年密西西比河上游洪水地区,大约2 m的洪峰与导航和防洪工程有关。在全系统范围内,在机翼堤坝和堤防建设期间以及地点,洪水水位大大增加。引用:N. Pinter,A。A. Jemberie,J。W. F. Remo,R。A. Heine和B. S. Ickes(2008),密西西比河水系的洪水趋势和河流工程,Geophys。 Res。 Lett。,35,L23404,doi:10.1029 / 2008GL035987。

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