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首页> 外文期刊>Applied Computational Electromagnetics Society journal >Earth Conductivity Estimation from Through-the-Earth Measurements of 94 Coal Mines Using Different Electromagnetic Models
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Earth Conductivity Estimation from Through-the-Earth Measurements of 94 Coal Mines Using Different Electromagnetic Models

机译:使用不同的电磁模型从94个煤矿的实地测量中估算地球电导率

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摘要

Through-the-Earth (TTE) communication systems require minimal infrastructure to operate. Hence, they are assumed to be more survivable and more conventional than other underground mine communications systems. This survivability is a major advantage for TTE systems. In 2006, Congress passed the Mine Improvement and New Emergency Response Act (MINER Act), which requires all underground coal mines to install wireless communications systems. The intent behind this mandate is for trapped miners to be able to communicate with surface personnel after a major accident-hence, the interest in TTE communications. To determine the likelihood of establishing a TTE communication link, it would be ideal to be able to predict the apparent conductivity of the overburden above underground mines. In this paper, all 94 mine TTE measurement data collected by Bureau of Mines in the 1970s and early 1980s, are analyzed for the first time to determine the apparent conductivity of the overburden based on three different models: a homogenous half-space model, a thin sheet model, and an attenuation factor or Q-factor model. A statistical formula is proposed to estimate the apparent earth conductivity for a specific mine based on the TTE modeling results given the mine depth and signal frequency.
机译:地面(TTE)通信系统需要最少的基础架构来运行。因此,它们被认为比其他地下矿井通信系统更具生存性和常规性。这种生存能力是TTE系统的主要优势。 2006年,国会通过了《矿山改良和新的应急响应法》(MINER Act),该法要求所有地下煤矿都必须安装无线通信系统。此任务的目的是让被困的矿工在重大事故发生后能够与地面人员进行通信,这是对TTE通信的兴趣。为了确定建立TTE通信链路的可能性,理想的是能够预测地下矿井上方表土的表观电导率。本文首次分析了由矿业局在1970年代和1980年代初期收集的所有94座TTE测量数据,基于三种不同的模型来确定表土的表观电导率:同质半空间模型,薄片模型,以及衰减因子或Q因子模型。根据给定的矿井深度和信号频率,根据TTE建模结果,提出了一个统计公式来估算特定矿井的视在地球电导率。

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