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AN ACTIVE CONTROL SYSTEM FOR MATRIC SUCTION MEASUREMENT

机译:主动吸力测量的主动控制系统

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References(14) Matric suction is an important stress state parameter in unsaturated soil mechanics. Many studies have been carried out in the past to determine the matric suction through direct and indirect methods. Direct measurement of matric suction has been proven possible with high-suction tensiometer; however high-suction tensiometers are still susceptible to cavitation. The axis translation technique developed by Hilf (1956) has been employed in many laboratory tests for unsaturated soils to avoid problem of cavitation in the water pressure measurement system. However in laboratory testing of unsaturated soils, air and water pressures are usually independently controlled and there is no need for a feedback control. The matric suction of soil can be measured using a modified pressure plate apparatus by actively changing the air pressure to maintain the water pressure to be close to zero thus imposing negligible water content change in the soil. A major setback of the existing practice is the need to manually adjust the air pressure of the modified pressure plate in response to the changes in the water pressure. This paper presents an active control system for the modified pressure plate apparatus for matric suction measurement. The experimental results obtained from modified pressure plate apparatus with active control system show good performance as compared to the high suction tensiometer.
机译:参考文献(14)吸力是非饱和土力学中重要的应力状态参数。过去已经进行了许多研究来通过直接和间接方法确定基质吸力。高吸力张力计已证明可以直接测量基质吸力;但是,高吸力张力计仍然容易发生气蚀。 Hilf(1956)开发的轴平移技术已用于许多非饱和土壤的实验室测试中,以避免水压测量系统中出现气穴现象。然而,在非饱和土壤的实验室测试中,气压和水压通常是独立控制的,不需要反馈控制。可以使用改良的压板设备通过主动改变气压以保持水压接近零,从而在土壤中施加可忽略的水含量变化来测量土壤的基质吸力。现有实践的主要挫折是需要响应于水压的变化来手动调节修改后的压板的气压。本文提出了一种改进的压板装置的主动控制系统,用于矩阵吸力测量。与高吸力张力计相比,从带有主动控制系统的改进型压板装置获得的实验结果显示出良好的性能。

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