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Thermal Conductivity and Density of Plant Oils under High Pressure

机译:高压下植物油的导热系数和密度

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The effect of pressure on the thermal conductivity and density of olive,safflower,linseed,and castor oils in the temperature range of(283 to 333)K and pressures up to 400 MPa was studied.The thermal conductivity measurements were carried out using a transient hot-wire method with an estimated uncertainty of 2.7 mW·m~(-1)·K~(-1).The density of olive oil was determined within an uncertainty of 0.3% by a Jamin interferometer.Results reveal an increase in the thermal conductivity and density with pressure.The pressure dependency of the thermal conductivity of these plant oils correlates with the coefficient of isothermal compressibility.The temperature dependency of the thermal conductivity is linked to the isobaric thermal expansion coefficient.This agrees well with the vibrational theory of thermal conductivity due to Horrocks and McLaughlin.From this model,the relation between thermal conductivity and density lambda/lambda_0=(rho/rho_0)~g can be obtained.The application of our data to this relation leads to g approx=3,which is typical for organic liquids.
机译:研究了温度在(283至333)K和压力高达400 MPa时压力对橄榄油,红花油,亚麻籽和蓖麻油的导热系数和密度的影响。使用瞬态进行了导热系数的测量估计不确定度为2.7 mW·m〜(-1)·K〜(-1)的热线法。用Jamin干涉仪在0.3%的不确定度内确定橄榄油的密度。结果表明,这些植物油的导热系数与压力的相关性与等温压缩系数有关。导热系数与温度的相关性与等压热膨胀系数有关,这与油的振动理论非常吻合。由Horrocks和McLaughlin提出的热导率。从该模型可以得出热导率与密度lambda / lambda_0 =(rho / rho_0)〜g的关系。我们的数据在t上的应用他的关系式得出g大约为3,这对于有机液体是典型的。

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