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Numerical Investigation of Pyrolysis Gas Blowing Pattern and Thermal Response using Orthotropic Charring Ablative Material

机译:正交各向异性炭化烧蚀材料热解气吹型及热响应的数值研究

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An orthotropic material model is implemented in a three-dimensional (3D) Material Response (MR) code, and numerically studied for charring ablative material. Model comparison is performed using an iso-Q sample geometry. The comparison is presented using pyrolysis gas streamlines and time series of temperature at selected virtual thermocouples. Results show that orthotropic permeability affects both pyrolysis gas flow and thermal response, but orthotropic thermal conductivity essentially changes the thermal performance of the material. The effect of orthotropic properties may have practical use such that the material performance can be manipulated by altering the angle of orthotropic orientation.
机译:正交异性材料模型以三维(3D)材料响应(MR)代码实现,并进行了数值研究以炭化烧蚀材料。使用iso-Q样品几何进行模型比较。使用选定的虚拟热电偶的热解气体流线和温度时间序列进行比较。结果表明,正交各向异性的渗透性会影响热解气流和热响应,但是正交各向异性的导热性实质上会改变材料的热性能。正交各向异性特性的影响可能具有实际用途,因此可以通过更改正交各向异性取向的角度来控制材料性能。

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