Laboratory thermal conductivity measurement of pyroxene powder under low temperature and atmospheric pressure conditions: Implication for the studies on lunar and Martian surface thermal environment
Li XY(李雄耀); Wang SJ(王世杰); Yu W(于雯)
刊名岩石学报
2016
卷号32期号:1页码:99-106
其他题名低温低压条件下辉石粉末的热导率实验分析对月球及火星表面热环境研究的指示
英文摘要Laboratory studies on thermal conductivities of particulate minerals under vacuum condition can provide essential parameters when determining thermal properties and thermal evolution on lunar and planet surface, interpreting microwave and thermal infrared data and designing lunar explorer. Using modified thermal conductivity measuring instrument (HOT DISK TPS 2500S), pyroxenes powder samples are measured for their thermal conductivities under various vacuum degree and temperature conditions. By doing this, we evaluate the effects of vacuum degree and temperature on thermal conductivity of pyroxene powder. The experimental results show, 1) thermal conductivity of pyroxene powder decrease with lower vacuum degree. There is an apparent change of heat conduction mechanism when vacuum degree is around 1000Pa. Under low vacuum degree condition, thermal conductivity changes slowly with atmospheric pressure; 2) Thermal conductivity of pyroxene powder increase with temperature, but in different ways between low and normal atmospheric pressure conditions. With the experimental data, quantitative relationships of thermal conductivity of pyroxene powder and vacuum degree/temperature are given under low atmospheric pressure conditions. Our results imply that vacuum degree and temperature play different roles in thermal conductivity studies on lunar and Martian surface. Thus this study provide a reference for thermal conductivity determination of thermal conductivity in future work.
学科主题月球与行星科学
语种中文
公开日期2017-05-25
内容类型期刊论文
源URL[http://ir.gyig.ac.cn:8080/handle/352002/6140]  
专题地球化学研究所_月球与行星科学研究中心_月球与行星科学研究中心_期刊论文
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GB/T 7714
Li XY,Wang SJ,Yu W. Laboratory thermal conductivity measurement of pyroxene powder under low temperature and atmospheric pressure conditions: Implication for the studies on lunar and Martian surface thermal environment[J]. 岩石学报,2016,32(1):99-106.
APA 李雄耀,王世杰,&于雯.(2016).Laboratory thermal conductivity measurement of pyroxene powder under low temperature and atmospheric pressure conditions: Implication for the studies on lunar and Martian surface thermal environment.岩石学报,32(1),99-106.
MLA 李雄耀,et al."Laboratory thermal conductivity measurement of pyroxene powder under low temperature and atmospheric pressure conditions: Implication for the studies on lunar and Martian surface thermal environment".岩石学报 32.1(2016):99-106.
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