利用磁法识别半玉碧玉热水源地热分布

Ahmad Luthfin, Nur Amilatu Jubaidah
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引用次数: 0

摘要

<p class="摘要">位于Nganjuk县Jatikalen区Gondangwetan村的Banyu Biru温泉的地热现象具有开发成为旅游景点和环境友好型替代可再生能源的潜力;例如,地热发电厂。因此,有必要了解地热储层的分布和所含势能的大小。本研究旨在确定研究区地热能分布及其地质构造。本研究使用磁法对NOAA卫星数据获得的二次数据进行分析。数据采集面积为2000米× 2000米,获得100条数据,间距为200米。根据研究结果,地温爆发具有-50 nT ~ 25 nT的低异常值,根据低异常分布可以判断该区域的地热分布,假设具有相同异常值的区域表明地热能存在。研究区地质有5层,即表土(土)的敏感性值为0.0000377 SI,冲积层的敏感性值为0.00144513 SI,吐凡粘土的敏感性值为0.00692407 SI,灰岩凝灰岩的敏感性值为0.125713399 SI,角砾岩(安山岩和玄武岩)的敏感性值为0.0126292 SI。研究区地热源深度为地表以下±250 m。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Identification of Geothermal Distribution in The Banyu Biru Hot Water Source using The Magnetic Method

The geothermal phenomenon in Banyu Biru hot springs in Gondangwetan Village, Jatikalen District, Nganjuk Regency, has the potential to be developed into a tourist spot and an alternative renewable energy source that is environmentally friendly; for example, a geothermal power plant. So it is necessary to know the distribution of geothermal reservoirs and how much potential energy is contained. This research aims to determine the distribution of geothermal energy in the research area and its geological structure. This study used the Magnetic Method for secondary data obtained from NOAA satellite data. Data acquisition with an area of 2000 meters x 2000 meters obtained 100 data with a spacing of 200 meters. Based on research results, geothermal bursts have a low anomaly value of -50 nT to 25 nT. The low anomaly distribution can be used to determine the geothermal distribution in the area, assuming that areas with the same anomaly value indicate the presence of geothermal energy. The geology of the study area has five layers, namely: Topsoil (soil) has a susceptibility value of 0.0000377 SI, Alluvium has a susceptibility value of 0.00144513 SI, Tufan Clay has a susceptibility value of 0.00692407 SI, Limestone Tuff has a susceptibility value of 0.125713399 SI and Breccia (Andesite and Basalt) has a susceptibility value 0.0126292 SI. The depth of the geothermal source in the study area is ± 250 meters below the surface.

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