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Universal Calibration Device for Fluid and In-Soil Calibration of Pressure Transducers

机译:用于压力传感器的流体和土壤内标定的通用标定设备

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Evaluation of stresses generated at soil-struc- ture interface or within the soil mass influences the design decisions of substructures. Though many analytical tech- niques are available, actual measurement of these stresses is of prime importance from analytical and construction view point. The measurement of stresses also provides valuable information for validating constitutive theories of geo-material behaviour and computational techniques for examining soil-structure interaction problems. Calibration of pressure transducer involves application of known pressure to the transducer and obtaining the relationship between applied pressure and pressure cell output. In absence of such relationship, interpretation of data obtained using transducers is highly questionable. Present study describes details of indigenously developed universal pressure transducer calibration device, developed by modifying the conventional triaxial apparatus. It allows demanding task of fluid and in-soil calibration of pressure transducers, which was not possible with existing calibra- tion devices. Performance of the developed device checked using three different types of transducers revealed accurate and repeatable results.
机译:评估在土壤-结构界面或土壤内部产生的应力会影响子结构的设计决策。尽管可以使用许多分析技术,但从分析和构造的角度来看,实际测量这些应力至关重要。应力的测量还提供了宝贵的信息,可用于验证岩土行为的本构理论和用于检查土-结构相互作用问题的计算技术。压力传感器的校准包括向传感器施加已知压力,并获得施加压力与压力传感器输出之间的关系。在没有这种关系的情况下,对使用换能器获得的数据的解释存在很大疑问。本研究描述了本地开发的通用压力传感器校准设备的详细信息,该设备是通过修改常规三轴设备而开发的。它可以完成压力传感器的流体和土壤中标定的艰巨任务,而这是现有标定设备无法实现的。使用三种不同类型的换能器检查的已开发设备的性能显示出准确且可重复的结果。

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