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Borehole gauge for in-situ measurement of stress and other physical properties

机译:钻孔仪,用于现场测量应力和其他物理性能

摘要

This invention relates to a method of gathering information from sensors from which the Young's modulus, Poisson's ratio, and the two principal stresses can be obtained. The absolute secondary principal stresses can also be obtained. The method involves the placement of two inclusions of different, but known, physical properties in a single bore hole with a strain or displacement rosette sensor placed in each inclusion and oriented so as to measure physical properties on a plane normal to the bore hole axis. It is extremely important that intimate contact exists between the inclusions and the bore hole surface, because the physical properties of the two inclusions are different and the interactions between each inclusion and the rock mass will be different. The measurements from each rosette sensor and the known physical properties of each inclusion, the Young's modulus, the Poissons ratio, and the two principal stresses for the rock mass can be derived by known mathematical formula. Also, by overcoring at the end of the test period, the absolute secondary principal stresses can also be obtained.
机译:本发明涉及一种从传感器收集信息的方法,从中可以获得杨氏模量,泊松比和两个主应力。绝对次要主应力也可以得到。该方法涉及在单个钻孔中放置两个不同但已知物理性质的夹杂物,在每个夹杂物中放置并定向应变或位移玫瑰花形传感器,以测量垂直于钻孔轴线的平面上的物理性质。夹杂物与钻孔表面之间存在紧密接触非常重要,因为两种夹杂物的物理性质不同,并且每个夹杂物与岩体之间的相互作用也不同。每个玫瑰花形传感器的测量值和每个夹杂物的已知物理特性,杨氏模量,泊松比以及岩体的两个主应力可以通过已知的数学公式得出。同样,通过在测试周期结束时进行过度调心,也可以获得绝对的二次主应力。

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