首页> 外文会议>IMECE2009;ASME international mechanical engineering congress and exposition >INVERSE HEAT CONDUCTION IN A COMPOSITE SLAB WITH PYROLYSIS EFFECT AND TEMPERATURE-DEPENDENT THERMOPHYSICAL PROPERTIES
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INVERSE HEAT CONDUCTION IN A COMPOSITE SLAB WITH PYROLYSIS EFFECT AND TEMPERATURE-DEPENDENT THERMOPHYSICAL PROPERTIES

机译:具有热解作用和与温度有关的热物理性质的复合板中的逆热传导

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The inverse heat conduction problem (IHCP) in a one-dimensional composite slab with rate-dependent pyrolysis chemical reaction and outgassing flow effects is investigated using the conjugate gradient method (CGM). The thermal properties of the composites are considered to be temperature-dependent, which makes the IHCP a nonlinear problem. The inverse problem is formulated in such a way that the front-surface heat flux is chosen as the unknown function to be recovered, and the front-surface temperature is computed as a by-product of the IHCP algorithm, which uses back-surface temperature and heat flux measurements. The proposed IHCP formulation is then applied to solve the IHCP in an organic composite slab whose front surface is subjected to high intensity periodic laser heating. It is shown that an extra temperature sensor located at an interior position is necessary since the organic composites usually possess a very low thermal conductivity. It is also found that the frequency of the periodic laser heating flux plays a dominant role in the inverse solution accuracy. In addition, the robustness of the proposed algorithm is demonstrated by its capability in handling the case of thermophysical properties with random errors.
机译:利用共轭梯度法(CGM)研究了具有速率依赖型热解化学反应和除气流效应的一维复合板的反导热问题(IHCP)。复合材料的热性能被认为与温度有关,这使IHCP成为非线性问题。反问题的制定方式是,选择前表面热通量作为要恢复的未知函数,并将前表面温度作为IHCP算法的副产品进行计算,该算法使用后表面温度和热通量测量。然后,将提出的IHCP配方用于解决有机复合板中的IHCP问题,该复合板的前表面经过高强度周期性激光加热。结果表明,由于有机复合材料通常具有非常低的热导率,因此需要一个位于内部位置的额外的温度传感器。还发现,周期性激光加热通量的频率在逆解精度中起主要作用。另外,所提出算法的鲁棒性通过其处理具有随机误差的热物理性质的情况来证明。

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