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A TDR-pressure cell design for measuring the soil-water retention curve

机译:TDR压力传感器设计,用于测量土壤保水曲线

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摘要

This paper presents a new type of pressure cell associated with a zigzag-shaped time domain reflectometry (TDR) probe for determining the soil-water retention (i(s)) curve of disturbed thin soil samples. The pressure cell, designed for pressures ranging between 0 and -500kPa, consisted of a zigzag copper rod (150-mm long, 2mm in diameter) vertically installed in a clear plastic cylinder (60-mm high, 50mm in internal diameter) with six vertical copper rods (60-mm long, 2mm in diameter) arranged around the inner wall of the plastic cylinder. The cylinder was closed at the base with a nylon cloth and placed on a porous ceramic disc. The inner rod and the six-rod grille of the cell were connected respectively to the inner and outer conductors of a coaxial cable. The results showed that the correlation between the apparent dielectric constant measured with a standard three-rod TDR probe and the zigzag-shaped TDR probe, both immersed in five different non-conductive fluids, was excellent (R po =0.99). On the other hand, the volumetric water content measured with the TDR probe of the pressure cell filled up with sand, 2-mm sieved loam and clay-loam soils was highly correlated to the corresponding values calculated from the gravimetric water content and the soil bulk density (R po =0.97; RMSE=2.32x10po). The parameters of the i(s) curves measured for these three different soils with the TDR-pressure cell were within the range of values found in the literature. The cell was also used to study the i(s) changes of a 2-4-mm sample of loam soil aggregates after a slow and a fast-wetting process. While negligible changes in both the soil structure and i(s) were observed following slow wetting, fast wetting resulted in disintegration of aggregates and drastic changes in the shape of the i(s) curve.
机译:本文提出了一种与之字形时域反射法(TDR)探针相关联的新型压力传感器,用于确定受干扰的薄土样品的土壤保水率(i(s))曲线。压力传感器的设计压力范围为0到-500kPa,由曲折铜棒(长150mm,直径2mm)垂直安装在透明的塑料圆筒(高60mm,内径50mm)中,六个垂直铜棒(长60毫米,直径2毫米)绕着塑料圆筒的​​内壁排列。用尼龙布将圆筒的底部封闭,并放在多孔陶瓷盘上。单元的内杆和六杆格栅分别连接到同轴电缆的内导体和外导体。结果表明,用标准的三杆TDR探针和之字形TDR探针测量的表观介电常数之间的相关性都极好(R po = 0.99),它们都浸没在五种不同的非导电流体中。另一方面,用充满沙子,2毫米筛分壤土和粘土壤土的压力传感器的TDR探针测得的体积含水量与根据重量含水量和土壤体积计算出的相应值高度相关。密度(R po = 0.97; RMSE = 2.32x10po)。使用TDR压力传感器测量的这三种不同土壤的i(s)曲线的参数在文献中找到的值范围内。该电池还用于研究经过缓慢和快速润湿的2-4-mm壤土样品的i(s)变化。缓慢润湿后,土壤结构和i(s)的变化都可以忽略不计,而快速润湿会导致聚集体崩解和i(s)曲线形状的急剧变化。

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