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首页> 外文期刊>Space Science Reviews >Potential Effects of Surface Temperature Variations and Disturbances and Thermal Convection on the Mars InSight HP3 Heat-Flow Determination
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Potential Effects of Surface Temperature Variations and Disturbances and Thermal Convection on the Mars InSight HP3 Heat-Flow Determination

机译:表面温度变化和扰动和扰动和火星洞察HP3热流测定的潜在影响和热对流

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摘要

The HP3 instrument on the InSight lander mission will measure subsurface temperatures and thermal conductivities from which heat flow in the upper few meters of the regolith at the landing site will be calculated. The parameter to be determined is steady-state conductive heat flow, but temperatures may have transient perturbations resulting from surface temperature changes and there could be a component of thermal convection associated with heat transport by vertical flow of atmospheric gases over the depth interval of measurement. The experiment is designed so that it should penetrate to a depth below which surface temperature perturbations are smaller than the required measurement precision by the time the measurements are made. However, if the measurements are delayed after landing, and/or the probe does not penetrate to the desired depth, corrections may be necessary for the transient perturbations. Thermal convection is calculated to be negligible, but these calculations are based on unknown physical properties of the Mars regolith. The effects of thermal convection should be apparent at shallow depths where transient thermal perturbations would be observed to deviate from conductive theory. These calculations were required during proposal review and their probability of predicting a successful measurement a prerequisite for mission approval. However, their uncertainties lies in unmeasured physical parameters of the Mars regolith.
机译:Insight Lander Mission的HP3仪器将测量地下温度和热导体,从中计算起落位点的较高米的热流中的热流。要确定的参数是稳态导电热流,但温度可能具有由表面温度变化产生的瞬态扰动,并且通过在深度测量的深度间隔内通过垂直流动流动,可以存在与热传输相关的热对流的分量。实验设计成使得它应该渗透到下方的深度,表面温度扰动小于所需测量时的所需测量精度。然而,如果在着陆后测量延迟,并且/或探针不会渗透到所需深度,可能需要校正瞬时扰动。热对流计算出可忽略不计,但这些计算基于MARS RemoLith的未知物理性质。热对流的影响应该在浅深度下显而易见,其中观察到瞬态热扰动以偏离导电理论。在提案审查期间需要这些计算及其预测成功测量特派团批准的先决条件的可能性。然而,它们的不确定性位于MARS RemoLith的未测量的物理参数中。

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