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ATransient Water Release and Imbibitions Method for Rapidly Measuring Wetting and Drying Soil Water Retention and Hydraulic Conductivity Functions

机译:快速测量湿润和干燥的土壤持水量和水力传导率功能的瞬态水释放和吸收方法

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摘要

A transient water release and imbibitions (TWRI) method for measuring the soil water retention curve (SWRC) and hydraulic conductivity function (HCF) under drying and wetting states is presented. The intellectual merit of the TWRI method is its integration of physical and numerical experiments: it employs the simple and reliable measurement of transient water content by electronic balance to record the signature of transient unsaturated flow in soil sample, and it takes advantage of the robust inverse modeling capability to simulate the physical process. The TWRI method; therefore, has two integrated components: testing and modeling. The testing consists of water release upon two-steps increase in matric suction and water imbibitions upon one-step decrease in matric suction. Each process lasts sufficient time in order to obtain transient water content. The data is then used as an objective function in an inverse numerical modeling process to obtain the unsaturated hydrologic parameters that fully define the SWRC and HCF of the soil. A novel feature of the TWRI method is its capability to measure SWRC and HCF under wetting state. The apparatus can accommodate both undisturbed and remolded samples. The testing time required for completing a full drying and wetting loop is approximately one week for most soils. Validation of the technique has been performed both experimentally and numerically. Comparisons between data obtained with the TWRI method and the independent Tempe cell method verify the reliability, applicability, and accuracy of the TWRI method. Results from three different soils are presented to illustrate the procedure and performance of the TWRI method for different soils from fine sand to clayey silt. The TWRI method provides a fast, accurate, and simple testing tool for obtaining SWRC and HCF of various types of soils under both wetting and drying states with high range of matric suction several orders of magnitude above the air-entry pressure of the ceramic stone used in the experimental setup.
机译:提出了一种在干燥和湿润状态下测量土壤保水曲线(SWRC)和水力传导率函数(HCF)的瞬时释水和吸水法。 TWRI方法的知识优势在于其物理和数值实验的结合:它利用电子天平简单可靠地测量瞬态水含量,以记录土壤样品中瞬态非饱和流的特征,并利用鲁棒的反演优势。具有模拟物理过程的建模能力。 TWRI方法;因此,它具有两个集成的组件:测试和建模。该测试包括在基质吸力增加两步时释放水分,以及在基质吸力降低一步时释放水分。每个过程持续足够的时间以获得瞬时水分。然后,将数据用作反数值建模过程中的目标函数,以获得能够完全定义土壤的SWRC和HCF的非饱和水文参数。 TWRI方法的一个新功能是在润湿状态下能够测量SWRC和HCF。该设备可容纳未扰动和重塑的样品。对于大多数土壤,完成一个完整的干燥和润湿循环所需的测试时间约为一周。该技术的验证已通过实验和数值进行。通过TWRI方法和独立的Tempe单元方法获得的数据之间的比较证明了TWRI方法的可靠性,适用性和准确性。给出了三种不同土壤的结果,以说明TWRI方法在从细砂到黏土粉土的不同土壤上的过程和性能。 TWRI方法提供了一种快速,准确和简单的测试工具,可在湿润和干燥状态下获得各种类型土壤的SWRC和HCF,并具有较高的基质吸力范围,比所用陶瓷石材的进气压力高几个数量级。在实验设置中。

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