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Potential Use of BEST® Sediment Trap in Splash - Saltation Transport Process by Simultaneous Wind and Rain Tests

机译:通过同时进行风雨试验在飞溅物-盐分运输过程中潜在使用BEST®沉积物捕集阱

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摘要

The research on wind-driven rain (WDR) transport process of the splash-saltation has increased over the last twenty years as wind tunnel experimental studies provide new insights into the mechanisms of simultaneous wind and rain (WDR) transport. The present study was conducted to investigate the efficiency of the BEST® sediment traps in catching the sand particles transported through the splash-saltation process under WDR conditions. Experiments were conducted in a wind tunnel rainfall simulator facility with water sprayed through sprinkler nozzles and free-flowing wind at different velocities to simulate the WDR conditions. Not only for vertical sediment distribution, but a series of experimental tests for horizontal distribution of sediments was also performed using BEST® collectors to obtain the actual total sediment mass flow by the splash-saltation in the center of the wind tunnel test section. Total mass transport (kg m-2) were estimated by analytically integrating the exponential functional relationship using the measured sediment amounts at the set trap heights for every run. Results revealed the integrated efficiency of the BEST® traps at 6, 9, 12 and 15 m s-1 wind velocities under 55.8, 50.5, 55.0 and 50.5 mm h-1 rain intensities were, respectively, 83, 106, 105, and 102%. Results as well showed that the efficiencies of BEST® did not change much as compared with those under rainless wind condition.
机译:在过去的20年中,随着风洞实验研究为同时进行风雨(WDR)输送的机理提供了新的见识,对飞溅盐分的风雨(WDR)输送过程的研究已经增加。本研究旨在研究BEST ®沉积物捕集器在捕集WDR条件下捕获通过飞溅-盐化过程输送的沙粒时的效率。在风洞降雨模拟器中进行了实验,通过洒水喷头喷洒了水,以不同的速度自由流动的风模拟了WDR条件。利用BEST ®收集器,不仅进行了垂直沉积物的沉积,还进行了一系列沉积物水平分布的实验测试,以通过在沉积物中心的飞溅盐化获得实际的总沉积物质量流量。风洞测试部分。通过使用每次设定的捕集阱高度处的测得泥沙量,通过对指数函数关系进行解析积分,来估算总质量传输(kg m -2 )。结果表明,BEST ®陷阱在6、9、12和15 ms -1 风速在55.8、50.5、55.0和50.5 mm h 下的综合效率-1 降雨强度分别为83%,106%,105%和102%。结果还表明,与无雨风条件下相比,BEST ®的效率没有太大变化。

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