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Environmental geological applications of ground penetrating radar

机译:探地雷达的环境地质应用

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This paper introduces the combining application of GPR and high density resistivity method, that achieved good detecting effect of engineering geophysical exploration on island frozen soil, karst cave, subgrade collapsing, landslide hazard and so on. The two differences of the dielectric constant and the resistivity are prevalent in environmental geology and engineering geology, but also has high correlation. The ambiguity can be effectively eliminated from two ways describing the underground target. GPR can describe the shallow characterization whit details and features, the high density resistivity method can describe the deep macroscopic characteristics for the underground target, so easy to form conceptual geological model and to convenient for data analysis and data interpretation. The combining is effective that have complementarity, validation and validity for each other. The detecting parameters of GPR is more important than the data processing, which determines the quality of original data, It is necessary to do a certain amount of field test for determine the detection parameters before you start work especially in a strange area.
机译:介绍了GPR与高密度电阻率法的结合应用,对海岛冻土,岩溶洞穴,路基塌陷,滑坡灾害等工程地球物理勘探取得了较好的检测效果。介电常数和电阻率的两种差异在环境地质和工程地质中普遍存在,但也具有很高的相关性。可以从两种描述地下目标的方式中有效消除歧义。 GPR可以描述浅层特征和特征,高密度电阻率法可以描述地下目标的深层宏观特征,因此易于形成概念性地质模型,便于数据分析和数据解释。合并是有效的,彼此具有互补性,有效性和有效性。 GPR的检测参数比决定原始数据质量的数据处理更为重要。在开始工作之前,特别是在陌生地区,必须进行一定数量的现场测试以确定检测参数。

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