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Parametric study of unsaturated drainage layers in a capillary barrier

机译:毛细屏障中非饱和排水层的参数研究

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摘要

Unsaturated drainage layers (UDLs) have been demonstrated to greatly increase the lateral diversion capacity of capillary barriers. The inclusion of a UDL allows native soils suitable for vegetation growth to be used as the finer soil as lateral drainage properties of the layer no longer need to be considered. A comprehensive numerical study was conducted to investigate the influence of the interface slope and the UDL material on the system’s ability to laterally divert downward moving moisture. A capillary barrier system with and without a UDL was simulated for 10 years using daily varying climatic data for three locations in the United States. Three different sands were simulated as the UDL and were modeled at slopes of 5, 10, and 20%. The numerical results confirm that the inclusion of an unsaturated drainage layer at the fine/coarse interface of a capillary barrier can provide significant improvements in the performance of the cover system by laterally draining water. This improvement in performance may allow the system to be successfully implemented in climates wetter than previously were thought suitable. The diversion length (the distance water is diverted laterally with no downward flow through the fine/coarse interface) of a capillary barrier with a UDL was found to be proportional to the slope of the fine/coarse interface. In addition, a relationship between lateral diversion lengths in a capillary barrier and the UDL material was developed and found to be dependent on the unsaturated flow characteristics of the UDL. These relationships allow the performance of a variety capillary barrier UDL designs to be calculated knowing the behavior of one system for a given location.
机译:已证明不饱和排水层(UDL)可大大增加毛细管屏障的横向转移能力。由于不再需要考虑该层的侧向排水特性,因此包含UDL可使适合植被生长的原生土壤用作较细的土壤。进行了全面的数值研究,以调查界面斜率和UDL材料对系统横向转移向下移动的水分的能力的影响。使用美国三个地点每天变化的气候数据,对带有和不带有UDL的毛细屏障系统进行了10年的模拟。模拟了三种不同的沙子作为UDL,并以5%,10和20%的坡度进行了建模。数值结果证实,在毛细管屏障的精细/粗糙界面处包含不饱和排水层可以通过横向排水来显着改善覆盖系统的性能。性能上的这种改进可以使该系统能够在比以前认为合适的潮湿气候中成功实施。发现具有UDL的毛细管屏障的转移长度(水的横向转移距离,没有向下流动通过细/粗界面)与细/粗界面的斜率成正比。另外,开发了毛细管屏障中的侧向转移长度与UDL材料之间的关系,并发现其取决于UDL的不饱和流动特性。这些关系允许知道已知系统在给定位置的行为,从而计算各种毛细管屏障UDL设计的性能。

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