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A flash heating method for measuring thermal conductivity at high pressure and temperature: Application to Pt

机译:一种在高温高压下测量热导率的快速加热方法:在Pt中的应用

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摘要

The transport properties of matter at high pressure and temperature are critical components in planetary interior models, yet are challenging to measure or predict at relevant conditions. Using a novel flash-heating method for in-situ high-temperature and high-pressure thermal conductivity measurement, we study the transport properties of platinum to 55 GPa and 2300 K. Experimental data reveal a simple high-pressure and high-temperature behavior of the thermal conductivity that is linearly dependent on both pressure and temperature. The corresponding electrical resistivity evaluated through the Wiedemann-Franz-Lorenz law is nearly constant along the melting curve, experimentally confirming the prediction of Stacey for an ideal metal. This study together with prior first-principles predictions of transport properties in Al and Fe at extreme conditions suggests a broad applicability of Stacey's law to diverse metals, supporting a limit on the thermal conductivity of iron at the conditions of Earth's outer core of 90 W/mK or less. (C) 2015 Elsevier B.V. All rights reserved.
机译:物质在高压和高温下的传输特性是行星内部模型的关键组成部分,但是在相关条件下进行测量或预测具有挑战性。使用一种新颖的快速加热方法进行原位高温和高压热导率测量,我们研究了铂在55 GPa和2300 K时的传输特性。实验数据表明,铂的简单高压和高温行为导热系数线性地取决于压力和温度。通过Wiedemann-Franz-Lorenz定律评估的相应电阻率沿熔解曲线几乎恒定,实验上证实了Stacey对理想金属的预测。这项研究与先前在极端条件下对Al和Fe的输运性质的第一性原理的预测一起表明,斯泰西定律对多种金属具有广泛的适用性,从而支持了铁质在地球外核条件为90 W / mK以下。 (C)2015 Elsevier B.V.保留所有权利。

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