PENGGUNAAN METODE GEOLISTRIK RESISTIVITAS KONFIGURASI SCHLUMBERGER UNTUK MENGETAHUI LAPISAN STRUKTUR LITOLOGI BAWAH TANAH DI TAMAN ILMU UNIVERSITAS RIAU

Aprianturi Rega, Usman Malik
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Abstract

Research has been carried out at the Science Park, Riau University to determine the layers of underground lithological structures using the one-dimensional Schlumberger configuration Geoelectric resistivity method. Research data processing is done using Software Progress. The results of data processing show that lanes 1 and 2 consists of layers of alluvium, sand, gravel, and clay. On track 1, the highest soil layer resistivity value of 863.14 m is interpreted as a layer of sand and gravel at a depth of 2.28 - 31.12 m, while the smallest is 226.90 m which can be interpreted as a layer of clay at a depth of 0.68 - 1.28 m. On track 2, the highest soil layer resistivity value of 1027.83 m is interpreted as a layer of sand and gravel at a depth of 0.28 - 1.15 m, while the smallest is 188.08 m interpreted as a clay layer at a depth of 0 - 0.28 m. The highest and lowest resistivity values tend to be identified as sand, gravel, and clay, respectively.
施伦贝谢对排版结构的使用,以了解廖内大学科学系的地下岩层结构
在廖内大学科学园进行了研究,使用一维斯伦贝谢配置地电阻率法确定地下岩性结构的层数。研究数据处理使用Software Progress完成。数据处理结果表明,巷1和巷2由冲积层、砂层、砾石层和粘土层组成。在轨道1上,最高的土层电阻率值为863.14 m,可解释为深度为2.28 ~ 31.12 m的砂砾层;最小的土层电阻率值为226.90 m,可解释为深度为0.68 ~ 1.28 m的粘土层。在轨道2上,最高的土层电阻率值为1027.83 m,解释为深度为0.28 ~ 1.15 m的砂砾层,最小的土层电阻率值为188.08 m,解释为深度为0 ~ 0.28 m的粘土层。最高和最低的电阻率值往往分别被识别为砂、砾石和粘土。
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