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Modeling of special features of flow in a planar vortex chamber

机译:平面涡流室内流动的特殊特征建模

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The numerical calculations of the flowfield in a planar vortex chamber have been performed. The model is based on conservation laws of mass, momentum and energy for nonsteady two-dimensional compressible gas flow in case of swirl axial symmetry. The processes of viscosity, heat conductivity and turbulence have been taken into account. It was found that transition of kinetic energy of gas into heat due to processes of dissipation generates "hot spots" in boundary layers at the chamber walls. The gas temperature at the spots may exceed the temperature of gas ignition, while the surrounding regions remain still cold. It may be the reason of cold gas self-ignition observed in experiments.
机译:进行了平面涡流室内流场的数值计算。该模型基于涡旋轴对称情况下非定常二维可压缩气流的质量,动量和能量守恒定律。已经考虑了粘度,导热率和湍流的过程。已经发现,由于耗散过程,气体的动能转化为热在腔室壁的边界层中产生“热点”。这些点处的气体温度可能会超过气体着火的温度,而周围区域仍保持寒冷。这可能是实验中观察到冷气自燃的原因。

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