PT. Perta Samtan气田采油厂的接地电阻和土壤电阻率

D. E. Putra, Falupi Kurniawan, Rahmawan Sinaga Rahmawan Sinaga, M. K. R. M. Khoirur Rozikin, Fajar Imam Alhidayah Fajar Imam Alhidayah, Yudha Pradhana Adhi Negara, Muhammad Almuchlis
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引用次数: 1

摘要

在PT. Perta Samtan气田开采厂Prabumulih进行Podzolik土壤类型(黄色砾石粘土)的研究和分析是很重要的,以防止工作事故和天然气处理开采装置泄漏电流引起的火灾风险。方法以土壤阻力值的直接测量为基础,其次是文献研究作为背景资料和实验研究的技术理解。然后,将研究结果与计算有限元分析所得阻力的计算方法进行比较。根据数据,灰化土的电阻率为214.4 Ωm,而Comsol模拟得到的每米电阻率分别为209.1 Ω和196.7Ω。Comsol模拟结果表明,为了在含铁材料的单棒系统上获得1欧姆的接地电阻值,需要优化接地电极的深度,其范围为3米至1053米d。在模拟中,获得了土壤电阻测量结果和Comsol Multiphysics应用程序,并计算了差异,百分比误差为1.62%。
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Earthing Resistance and Poldzolic Soil Resistivity at PT. Perta Samtan Gas Field Extraction Plant Prabumulih
It is important to undertake research at the location of PT. Perta Samtan Gas Field Extraction Plant Prabumulih with Podzolik soil type (yellow gravel clay) and analysis in order to prevent work accidents and the risk of fire caused by leakage current at the gas processing extraction installation. Direct measurement of soil resistance value is used as the basis for the methodology, which is followed by literature study as background information and technical comprehension of experimental research. The outcomes of the research study are then compared using Comsol simulation with the computational method of computational finite element analysis of the resulting resistance. According to the data, the resistivity of the podzolic soil was 214.4 Ωm, while the Comsol simulation yielded a resistance value per meter of 209.1 Ω and 196.7Ω, respectively. The Comsol simulation demonstrates that, in order to obtain a ground resistance value of 1 ohm on a Single rod system with Fe material, it is necessary to optimize the depth of the grounding electrode, which can range from 3 meters to 1053 meters d. In the simulation, the results of soil resistance measurements and the Comsol Multiphysics application are obtained, and the difference is calculated with a percentage error of 1.62%.
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