首页> 外文会议>US Rock Mechanics/Geomechanics Symposium >Experimental characterization of movement of water and air in granular material by using optic fiber sensor with an emphasis on refrative index of light
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Experimental characterization of movement of water and air in granular material by using optic fiber sensor with an emphasis on refrative index of light

机译:光纤传感器强调光光纤传感器对颗粒材料水和空气运动的实验表征

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A new method for identifying type of material ahead of an optic fiber sensor is proposed. The sensor is made of two plastic optic fibers that are aligned side by side and glued together. The tips of these fibers are cut so that outward normal vectors of the cut surfaces are 90 degrees apart and at the same time each of them is at 45 degrees from fiber axes. As light is sent into the first fiber and reaches its tip, part of the light gets refracted and goes out of the fiber into the material ahead. The other part gets reflected, goes out of the first fiber through its side face and gets into the second fiber. This light reaches the cut surface of the second fiber from within and then part of it goes out into the material outside. The remaining light gets reflected and travels through the second fiber back to a photo sensor to be digitally recorded. The intensity of the recorded light is a function of differences between refractive indices of the plastic optic fiber and the material ahead of the fiber tip. Analysis of this intensity leads to understanding of if the fiber tip is in air or in water in geo-material, which is of great interest in geotechnical engineering projects.
机译:提出了一种用于识别光纤传感器前方的材料类型的新方法。传感器由两个塑料光纤制成,其并排对准并粘合在一起。切割这些纤维的尖端,使得切割表面的向外正常载体分开,同时它们中的每一个在距纤维轴上处于45度。当光被送入第一纤维并达到其尖端时,一部分光被折射并脱离纤维进入前方的材料。另一部分被反射,通过其侧面脱离第一纤维并进入第二纤维。该光从内部到达第二纤维的切割表面,然后将其一部分延伸到外部的材料中。剩余光被反射并通过第二光纤反射回到要数字记的光传感器。记录光的强度是塑料光纤的折射率与纤维尖端前方的材料之间的差异的函数。对这种强度的分析导致对纤维尖端在空气中或地质材料中的水中的理解,这对岩土工程项目具有很大的兴趣。

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