首页> 外文期刊>Journal of Earth Sciences and Geotechnical Engineering >Application of half Schlumberger configuration for detecting karstic cavities and voids for a wind farm site in Greece
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Application of half Schlumberger configuration for detecting karstic cavities and voids for a wind farm site in Greece

机译:斯伦贝谢半配置在希腊风电场现场检测岩溶洞和空洞中的应用

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At the preliminary site investigation stage for a wind farm in Central Continental Greece, the half Schlumberger configuration was selected before using direct investigation methods. The purpose of this geophysical investigation was to measure earth resistivity for detecting karstic cavities and voids beneath the foundations of wind turbines. The half Schlumberger method is more rapid than the typical Wenner method but also proved to work efficiently for the difficult task of cavity detection. The wind turbines are very sensitive structures that need careful design for their site investigation and it was proved that when geophysical surveys precede drilling, unforeseen foundation costs can be predicted and in parallel the site investigation is optimized in quality, cost and time. The results of 42 depth probe profiles that were performed on the site are analyzed and shortly presented in this paper.
机译:在希腊中部大陆的一家风电场的初步现场调查阶段,在使用直接调查方法之前,选择了一半的斯伦贝谢配置。这项地球物理调查的目的是测量地球电阻率,以检测风力发电机基础下的岩溶腔和空隙。半斯伦贝谢方法比典型的温纳方法更快,但也被证明可以有效地解决腔体检测的难题。风力涡轮机是非常敏感的结构,需要仔细设计以进行现场调查,事实证明,在钻探之前进行地球物理勘测时,可以预测无法预料的地基成本,同时可以在质量,成本和时间上优化现场勘测。本文对42个深度探针剖面的结果进行了分析,并在此简短介绍。

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