Finite Element Analysis and Experimental Characterization of Soil Electrical Resistivity at El Roque de los Muchachos Observatory

Ronda Silvia, Martinez Oibar, Oliver Clara, Marquez Patricia, M. Miguel
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引用次数: 2

Abstract

This paper presents a study of the soil electrical resistivity of El Roque de los Muchachos Observatory, located in La Palma Island (Spain). This work is mainly motivated by the current plans of building an array of Cherenkov Telescopes (CTA) as well as other scientific installations, which demand low earth resistances for the operation of sensitive instruments, prevention of damage due to electrostatic discharges and protection against lightning strikes. Despite the top quality of the sky, the terrain is mostly filled of hard rocks and materials with high resistivity and hardness. No reliable data of resistivities could be found in available literature, therefore a dedicated resistivity survey onsite like the one presented here is essential to optimize the earth resistance of future installations. In this work, we present measurements done in six different locations of an area covering around 250 m × 275 m and centered on coordinates 28˚45'42.9"N, 17˚53'28.5"W. Low resistivity (Ωm) layers have been found at specific places and depths. The resistivity at the sites has been simulated with COMSOL Multiphysics software using two different models: a simple single layer model and a three-layer model. Agreement with measurements within 10% discrepancies was obtained in all cases. The main contributions of this work are the presentation of reliable values of soil resistivity at ORM, together with the accurate simulation of the soil profiles.
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El Roque de los Muchachos天文台土壤电阻率的有限元分析与实验表征
本文介绍了位于西班牙拉帕尔马岛的El Roque de los Muchachos天文台的土壤电阻率研究。这项工作的主要动机是目前计划建造一系列切伦科夫望远镜(CTA)以及其他科学装置,这些装置需要低接地电阻来操作敏感仪器,防止静电放电造成的损坏和防止雷击。尽管天空质量最好,但地形大多是坚硬的岩石和高电阻率和硬度的材料。在现有文献中找不到可靠的电阻率数据,因此在现场进行专门的电阻率调查对于优化未来安装的接地电阻至关重要。在这项工作中,我们介绍了在一个面积约250米× 275米的区域的六个不同位置进行的测量,以坐标28˚45'42.9"N, 17˚53'28.5"W为中心。在特定的地方和深度发现了低电阻率层(Ωm)。利用COMSOL Multiphysics软件,采用简单的单层模型和三层模型,对各测点的电阻率进行了模拟。在所有情况下,测量结果在10%的误差范围内一致。这项工作的主要贡献是提供了可靠的ORM土壤电阻率值,以及对土壤剖面的精确模拟。
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