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首页> 外文期刊>Journal of geophysical research. Planets >Apollo lunar heat flow experiment revisited: A critical reassessment of the in situ thermal conductivity determination
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Apollo lunar heat flow experiment revisited: A critical reassessment of the in situ thermal conductivity determination

机译:阿波罗月球热流实验的再现:一项原位热的关键评估电导率测定

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摘要

Lunar heat flow was determined in situ during the Apollo 15 and 17 missions, but some uncertainty is connected to the value of the regolith's thermal conductivity, which enters as a linear factor into the heat flow calculation. Different approaches to determine the conductivity yielded discordant results, which led to a downward correction of the obtained heat flow values by 30%-50% subsequent to the publication of the first results. We have reinvestigated likely causes for the observed discrepancies and find that neither poor coupling between the probe and regolith nor axial heat loss can explain the obtained results. Rather, regolith compaction and compression likely caused a local increase of the regolith's thermal conductivity by a factor of 2-3 in a region which extends at least 2-5 cm from the borehole wall. We conclude that the corrected lunar heat flow values, which are based on thermal diffusivity estimates sampling a large portion of undisturbed regolith, represent robust results. Future in situ measurements of regolith thermal conductivity using active heating methods should take care to both minimize regolith disturbance during probe emplacement and maximize heating time to obtain reliable results. We find that for the Apollo measurements, heating times should have exceeded at least 100 h, and ideally 200 h.
机译:月球热流决心在原地阿波罗15和17个任务,但也有一些不确定性连接到风化层的价值导热系数,输入的线性因素的热流计算。方法来确定导了不和谐的结果,导致下降修正得到的热流值随后出版的30% - -50%第一个结果。观察到的差异,找到原因不管是贫穷的探针和之间的耦合风化层和轴向热损失都不能解释获得的结果。压缩可能引起了当地的增加风化层的热导率的一个因素2 - 3在亚洲地区的延伸至少2 - 5厘米从井壁。纠正月球热流值,这是基础热扩散率估计抽样很大安静的风化层的一部分,代表健壮结果。热导率使用活跃的加热方法应该注意减少风化层干扰在探针侵位和最大化加热时间获得可靠的结果。阿波罗测量,加热时间应该至少超过100 h,和理想吗200 h。

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