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首页> 外文期刊>International Journal of Heat and Mass Transfer >Experimental technique for the measurement of temperature generated in deep lunar regolith drilling
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Experimental technique for the measurement of temperature generated in deep lunar regolith drilling

机译:深部月牙石钻探中产生的温度测量实验技术

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摘要

A novel temperature measuring system for deep lunar regolith drilling exploration is proposed herein. This system can be used to measure not only the temperature of a rotating and penetrating drill tool, but also the temperature of a lunar regolith simulant, to a maximum depth of 2 m inside a simulated lunar vacuum environment. This technique uses thermocouples and platinum resistors that are integrated into the drill tool and the lunar regolith simulant, respectively, and positioned as closely as possible to different measuring positions. To transmit and collect the temperature signals, a data condition system and a slip ring are specially incorporated to avoid wire wrapping and to transmit signals outside a vacuum environment. This system is shown to be successful in measuring the temperature generated in deep lunar regolith simulant drilling. The experimental results indicate the efficiency of this technique. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文提出了一种用于深部月长石钻探勘探的新型温度测量系统。该系统不仅可以用来测量旋转和穿透式钻具的温度,而且可以用来测量月球重石模拟物的温度,在模拟的月球真空环境中最大深度为2 m。该技术使用热电偶和铂电阻,它们分别集成在钻具和月球重结晶模拟物中,并尽可能靠近不同的测量位置放置。为了传输和收集温度信号,特别集成了数据条件系统和滑环,以避免绕线并将信号传输到真空环境之外。事实证明,该系统可以成功测量深部月球巨石模拟钻井中产生的温度。实验结果表明了该技术的有效性。 (C)2018 Elsevier Ltd.保留所有权利。

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