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首页> 外文期刊>International Scholarly Research Notices >In Situ Determination of Thermal Resistivity of Soil: Case Study of Olorunsogo Power Plant, Southwestern Nigeria
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In Situ Determination of Thermal Resistivity of Soil: Case Study of Olorunsogo Power Plant, Southwestern Nigeria

机译:土壤热阻原位测定:以尼日利亚西南部Olorunsogo电厂为例

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This study measured in situ the thermal resistivity of soils at Olorunsogo Gas Turbine Power Station (335 MW Phase 1) which is located in Ogun State, Southwestern Nigeria. Ten pits, each of about 1.5 m below the ground surface, were established in and around the power plant in order to measure the thermal resistivity of soils in situ. A KD 2-Pro was used for the in situ measurement of thermal properties. Samples were also collected from the ten pits for laboratory determination of the physical parameters that influence thermal resistivity. The samples were subjected to grain size distribution analysis, compaction, specific gravity and porosity tests, moisture content determination, and XRD analysis. Also, thermal resistivity values were calculated by an algorithm using grain size distribution, dry density, and moisture content for comparison with the in situ values. The results show that thermal resistivity values range from 34.07 to 71.88°C-cm/W with an average of 56.43°C-cm/W which falls below the permissible value of 90°C-cm/W for geomaterials. Also, the physical parameters such as moisture content, porosity, degree of saturation, and dry density vary from 13.00 to 16.20%, 39.74 to 45.64%, 40.72 to 63.52%, and 1725.05 to 1930.00 Kg/m3, respectively. The temperature ranges from 28.92 to 35.39°C with an average of 32.11°C in the study area. The calculated thermal resistivity from an algorithm was found to vary from 48.43 to 81.22°C-cm/W with an average of 65.56°C-cm/W which is close to the thermal resistivity values measured in situ. Good correlation exists between the in situ thermal resistivity and calculated thermal resistivity withR=+0.85suggesting that both methods are reliable.
机译:这项研究原位测量了位于尼日利亚西南部奥贡州的奥洛伦索戈燃气轮机发电站(335 MW一期)的土壤热阻。在电厂内和周围建立了十个坑,每个坑距地面约1.5微米,以便现场测量土壤的热阻。 KD 2-Pro用于热性能的现场测量。还从十个矿坑中收集了样品,以实验室确定影响热阻的物理参数。对样品进行粒度分布分析,压实,比重和孔隙率测试,水分含量测定和XRD分析。另外,通过使用粒度分布,干密度和水分含量的算法来计算热阻值,以与原位值进行比较。结果表明,热阻值的范围为34.07至71.88°C-cm / W,平均为56.43°C-cm / W,低于土工材料的90°C-cm / W的允许值。另外,水分,孔隙率,饱和度和干密度等物理参数分别从13.00至16.20%,39.74至45.64%,40.72至63.52%和1725.05至1930.00 Kg / m3不等。温度范围为28.92至35.39°C,研究区域的平均温度为32.11°C。通过算法计算得出的热阻率在48.43到81.22°C-cm / W之间变化,平均值为65.56°C-cm / W,接近于现场测量的热阻率值。在原位热阻与计算出的热阻之间存在良好的相关性,R = + 0.85表示这两种方法都是可靠的。

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