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Simultaneous measurement of the thermal conductivity and thermal diffusivity of unconsolidated materials by the transient hot wire method

机译:瞬态热丝法同时测量未固结材料的热导率和热扩散率

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This paper describes a new design for the transient hot wire method that can obtain the thermal conductivity and thermal diffusivity of unconsolidated materials. In this method, the thermal conductivity is determined from the slope of the temperature rise versus time of an electrically heated wire. The temperature rise is detected as the unbalanced voltage of a precision Wheatstone bridge. This voltage is read by a microcomputer via a high‐speed analog‐to‐digital converter. The instrument was designed so that measurements can be taken over a temperature range of 20–200 °C and a pressure range of atmospheric down to 10 mTorr. Tests using glycerin indicate an accuracy of 1% for the conductivity and 6% for the diffusivity and a precision of 0.4% for the conductivity and 4.5% for the diffusivity. Measurements have also been made on materials such as 50‐μ glass beads and unconsolidated spent oil shale.
机译:本文介绍了一种瞬态热线法的新设计,该方法可以获取未固结材料的热导率和热扩散率。在这种方法中,导热率是由温度升高相对于电热丝的时间的斜率确定的。温升被检测为精密惠斯通电桥的不平衡电压。微型计算机通过高速模数转换器读取该电压。该仪器的设计使其可以在20–200 C的温度范围和低至10 mTorr的大气压范围内进行测量。使用甘油的测试表明,电导率的精度为1%,扩散率的精度为6%,电导率的精度为0.4%,扩散率的精度为4.5%。还对50-μ玻璃珠和未固结的废油页岩等材料进行了测量。

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