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首页> 外文期刊>Journal of geophysical research. Planets >Determination of the effective thermal conductivity of granular materials under varying pressure conditions
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Determination of the effective thermal conductivity of granular materials under varying pressure conditions

机译:确定有效的热粒状材料的导电率不同压力条件

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摘要

We report on thermal conductivity measurements performed on glass spheres of different grain sizes under varying pressure conditions ranging from 10?5 up to 1000 hPa. Glass spheres of 0.1 up to 4.3 mm were used as an analogue for the coarse-grained fractions of planetary regolith. From the obtained conductivity versus pressure data, sample pore sizes were derived and compared to estimated pore sizes. An increasing difference between derived and estimated pore size with increasing grain size was found. The behavior of the granular matter with decreasing pressure was analyzed by estimating the Knudsen number for the given system. The results indicate a high variability of the effective thermal conductivity for Martian conditions. Furthermore, the results imply that the thermal conductivity reaches a grain size-dependent, but pressure-independent, value for pressures below 0.01 hPa. For vacuum conditions a linear relation between grain size and effective thermal conductivity was found. Additionally, a mixture was analyzed, which showed a stronger decrease with gas pressure compared to the single-sized samples. From the pore size derived for the mixture an “effective” grain size composed of weighted mean of the mixture components was determined.
机译:我们在热导率测量报告玻璃球体上执行不同的谷物大小在不同压力条件下测距从10吗?4.3毫米被用作一个模拟的行星风化层的粗粒度的分数。从获得导电性和压力推导和比较数据,样本孔隙大小估计孔隙大小。派生和估算的孔隙大小之间增加晶粒尺寸。颗粒物质与减少压力分析了估计的克努森数给定的系统。有效导热系数的变化对火星环境。暗示热导率达到颗粒尺度依赖的,但是pressure-independent,值低于0.01 hPa压力。条件粒度之间的线性关系有效导热系数。此外,分析了混合,表现出更强的降低气体压力相比单一粒度样品。孔隙大小派生的混合一个“有效的”粒度组成的加权平均数确定混合组件。

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