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Application of Radon Isotopes to Determine Permeable Zones in Rajabasa Geothermal Field, Indonesia

机译:氡同位素在印度尼西亚,印度尼西亚拉贾巴萨地热场中渗透区的应用

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This study aims to determine permeable zones (i.e. fault or fracture zones) in the Rajabasa geothermal field using radon isotopes. Radon concentration of soil gas was measured by Scintrex Radon detector RDA 200 consisting of 123 measurement station. The measurement site spacing was between 200 m and 350 m. The radon concentration was classified based on a statistical approach, i.e. low, high and very high. Very high value of radon concentration, called radon anomaly, associated with permeable zones. From the radon anomaly contour map, a 2D Radon migration from the source to the surface was modelled by means of numerical simulation. Finally, the radon contour map was overlaid with the surface geological map and the resistivity contour map in the area of study. It suggests that the radon anomaly correlates with the location of permeable zone in the centre part of the study area i.e. mud pool manifestation at the Kunjir and the Cugung (Bulakan) fumarole. Based on numerical simulation, the width of the fault is 2,800 m; velocity of fluid is 0.08 m/s and the Radon concentration is 860,000 Beq/m~3. The resistivity contour map results in low resistivity of 0 to 100Ωm indicating the conductive zone coincide with permeable zones based on radon measurements. Furthermore, the peak of the profile curve of Radon concentration could be an indication of fault systems in this area.
机译:本研究旨在使用Radon InoTopes确定Rajabasa地热场中的可渗透区域(即故障或骨折区域)。通过由123个测量站组成的Scintrex氡探测器RDA 200测量土壤气体的氡浓度。测量部位间距为200米至350米。基于统计方法,即低,高,非常高,分类氡浓度。非常高的氡浓度值,称为氡异常,与渗透区相关。从氡异常轮廓图,通过数值模拟建模了从源到表面的2D氡迁移。最后,氡轮廓图覆盖有表面地质图和学习领域的电阻率等高图。它表明氡异常与研究区域的中心部分中的渗透区的位置相关,即Kunjir和Cugung(Bulakan)Fumarole的泥浆池表现。基于数值模拟,故障的宽度为2,800米;流体的速度为0.08米/秒,氡浓度为860,000 beq / m〜3。电阻率轮廓图导致0到100Ωm的低电阻率,指示导电区基于氡测量与可渗透区域一致。此外,氡浓度的轮廓曲线的峰值可能是该区域中的故障系统的指示。

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