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Liquid-gel type suspended matters boundary detection of fluid fertilizer inside PE tank using GPR and seismic crosshole method

机译:利用GPR和地震横孔法检测PE罐内肥料的液凝胶型悬浮物边界

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摘要

We applied GPR and seismic crosshole method to finding the liquid-gel type suspended matters boundary of the fluid fertilizer inside PE tank. The fluid fertilizer are produced with died livestock and fishes that have been grinded and put into a PE tank to ferment with some special yeast. Then, high concentration liquid fertilizer settles down to bottom of the PE tank and gel-type organic matters float on top of the PE tank, but it is difficult to measure the exact size of liquid fertilizer from the outside due to opacity of a PE tank. GPR survey with 1GHz antenna was applied to finding boundary of liquid fertilizer and gel-type organic matters along the vertical axis of the outside PE tank. The strength of the direct wave of GPR was changed passing the boundary of two materials due to the change of electric conductivities of two materials, of which result corresponds with the result of Seismic Crosshole method very well. GPR is more productive than Seismic Crosshole method in terms of time cost and easy interpretation.
机译:我们应用GPR和地震横孔法找到了PE罐内肥料的液凝胶型悬浮物边界。液态肥料是由已死亡的牲畜和鱼类制成的,这些牲畜和鱼类经过研磨并放入PE罐中以发酵一些特殊的酵母。然后,高浓度的液体肥料沉降到PE容器的底部,而凝胶型有机物漂浮在PE容器的顶部,但是由于PE容器的不透明性,很难从外部测量液体肥料的确切尺寸。利用1GHz天线进行GPR测量,沿着室外PE储罐的垂直轴查找液体肥料和凝胶型有机物的边界。由于两种材料的电导率的变化,通过两种材料的边界改变了GPR直达波的强度,其结果与地震横孔法的结果非常吻合。就时间成本和易于解释而言,GPR比Seismic Crosshole方法更具生产力。

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