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Use of Seismic Reflection Surveying to Enhance Traditional Subsurface Exploration for Karst Evaluation

机译:利用地震反射测量法增强对岩溶评价的传统地下勘探

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Geophysical surveying using the seismic reflection method was used to help determine zones of karstic bedrock and develop geotechnical parameters for design and construction of an elevated 400,000-gallon water storage tower at a site northwest of the City of Jackson, Missouri. The area was known to have karst topography. This history was used to develop a site evaluation program. Results of geophysical surveying were used to plan and prioritize subsurface exploration, including drilling and sampling. By combining geophysical and traditional drilling, the exploration was more cost efficient and effective than either individual element.rnData from the seismic reflection survey, subsurface exploration and previous well drilling correlated well, indicating the southern portion of the survey area was generally more impacted by karst including the presence of irregular and pinnacled weathered rock and therefore avoided during site development planning. Highly variable bedrock depth and quality could adversely affect foundation design and construction. Therefore, QA/QC observation and testing were required to further assess rock quality at foundation locations. Overall, the exploration program helped identify comparatively higher quality bedrock, simplify design, and reduce overall construction cost and risk.
机译:使用地震反射法进行地球物理勘测可帮助确定岩溶基岩区域,并开发岩土工程参数,以设计和建造密苏里州杰克逊市西北部高架的40万加仑蓄水塔。已知该地区具有喀斯特地貌。此历史记录用于制定站点评估程序。地球物理调查的结果用于计划和优先进行地下勘探,包括钻孔和采样。通过将地球物理钻探和传统钻探相结合,勘探比单个元素都更具成本效益和效益。rn来自地震反射调查,地下勘探和先前的钻井的数据都与井相关,表明勘测区的南部通常受岩溶影响更大。包括不规则和针状风化岩石的存在,因此在场地开发规划中应避免使用。基岩深度和质量变化很大,可能会对基础设计和施工产生不利影响。因此,需要QA / QC观察和测试来进一步评估基础位置的岩石质量。总体而言,勘探计划有助于确定质量较高的基岩,简化设计并降低总体建设成本和风险。

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