首页> 外文期刊>International Journal of Thermophysics >Simultaneous Measurement of Thermal Diffusivity and Thermal Conductivity by Means of Inverse Solution for One-Dimensional Heat Conduction (Anisotropic Thermal Properties of CFRP for FCEV)
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Simultaneous Measurement of Thermal Diffusivity and Thermal Conductivity by Means of Inverse Solution for One-Dimensional Heat Conduction (Anisotropic Thermal Properties of CFRP for FCEV)

机译:通过一维导热的逆解同时测量热扩散系数和导热系数(FCEV的CFRP各向异性热特性)

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摘要

For safe and fast fueling of hydrogen in a fuel cell electric vehicle at hydrogen fueling stations, an understanding of the heat transferred from the gas into the tank wall (carbon fiber reinforced plastic (CFRP) material) during hydrogen fueling is necessary. Its thermal properties are needed in estimating heat loss accurately during hydrogen fueling. The CFRP has anisotropic thermal properties, because it consists of an adhesive agent and layers of the CFRP which is wound with a carbon fiber. In this paper, the thermal diffusivity and thermal conductivity of the tank wall material were measured by an inverse solution for one-dimensional unsteady heat conduction. As a result, the thermal diffusivity and thermal conductivity were and for the axial direction, while they were and for the radial direction. The thermal conductivity for the axial direction was about three times higher than that for the radial direction. The thermal diffusivity shows the same trend in both directions because the thermal capacity, , is independent of direction, where is the density and c is the heat capacity.
机译:为了在加氢站为燃料电池电动汽车中的氢提供安全,快速的加氢,需要了解在加氢期间从气体传递到罐壁(碳纤维增强塑料(CFRP)材料)的热量。在准确估计加氢燃料期间的热损失时需要其热性能。 CFRP具有各向异性的热性能,因为它由粘合剂和缠绕有碳纤维的CFRP层组成。在本文中,通过一维非稳态热传导的逆解来测量罐壁材料的热扩散系数和导热系数。结果,热扩散率和热导率分别为轴向和径向,而分别为轴向和径向。轴向的导热率大约是径向的导热率的三倍。热扩散率在两个方向上都显示出相同的趋势,因为热容ε与方向无关,其中密度是C,热容是c。

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