标题: | 现地导水度试验评估 Analysis of In-situ Hydraulic Conductivity Tests |
作者: | 赖威宇 Wei-Yu Lai 单信瑜 Hsin-Yu Shan 土木工程学系 |
关键字: | 现地;导水度;渗透系数;In-situ;permeability;conductivity;femwater;double-ring;guelph |
公开日期: | 2003 |
摘要: | 现地渗透试验已广泛的应用在工程上,但是试验方式与种类繁多,且各种地层之适用性均不相同。本研究除进行双环入渗仪、两阶段孔内渗透仪、Guelph渗透仪与简易试验外,并利用数值模拟分析来评估现地试验差异之原因。 数值模拟分析系利用FEMWATER软体,以实验室所得之渗透系数与土水特征曲线进行模拟。模拟的过程假设土层为均质,不考虑土层中孔隙与裂缝所造成之影响。 研究结果发现在现地试验中,Guelph渗透试验与室内试验较为接近,简易试验、双环入渗试验与室内试验相差较大。对照数值模拟的结果,双环入渗试验所得现地渗透系数较不受土层异向性的影响,对Guelph渗透试验与简易试验影响则较大。 In-situ hydraulic conductivity tests have been widely used in field investigations for construction project nowadays. In this study, in order to estimate the cause of various outcomes, in-situ hydraulic testes such as Double-Ring Infiltrometer, Two-Stage Borehole Permeameter, Guelph Permeameter, and Simplified Borehole Test were conducted to compare their applicability in silty and clayey soils. In addition, numerical analysis was performed with a finite-element program, FEMWATER, to further analyze the results of the in-situ tests. The tests were simulated with FEMWATER by using the hydraulic conductivity and soil water characteristic curves obtained from laboratory experiment. The effect of anisotropy of hydraulic conductivity was also studied. Due to the difficulty of quantifying the influence of macropores and fissures in the soils on the hydraulic conductivity, the soils were assumed to be homogeneous. The study showed that the in-situ hydraulic conductivity obtained by the Guelph Permeameter was the lowest and the closest to that from the laboratory tests. On the other hand, the hydraulic conductivity measured by the Double-Ring Infiltrometer tests and Simplified Borehole tests difference were much greater. However, considering the effect of anisotropy and macropores of soil, Double-Ring Infiltrometer test could give more reliable results than Guelph Permeameter and Simplified Borehole Test. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT008916571 http://hdl.handle.net/11536/77480 |
显示于类别: | Thesis |
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