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IGNITION OF COMBUSTIBLE ATMOSPHERES CAUSED BY UNIFORM AND NON-UNIFORM RADIATION HEATING OF AN INERT PARTICLE

机译:惰性粒子均匀和不均匀辐射加热引起的可燃气体点火

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A modelling study of the ignition and explosion behaviour of quiescent methane/air mixtures caused by a radiatively heated inert particle has been carried out. Selecting the particle size much larger (about 2000 times) than the radiation wavelength reduces interference from Mie scattering. However, this results in axial non-symmetry of the processes of heat and mass transfer between, and within the particle and the surrounding gas phase. In order to simplify the model, the full number of space variables was reduced to one and a correlation factor between the cases of uniform and non-uniform radiative heating of the particle was established. The numerical simulations are compared with experimental results from previous studies. The theoretical predictions correlate well with the experimental values if the correlation factor is taken into account, however the absence of such a factor leads to significantly higher values (about 10 times) of the critical radiation power flux.
机译:对由辐射加热的惰性粒子引起的静态甲烷/空气混合物的着火和爆炸行为进行了建模研究。选择比辐射波长大得多(约2000倍)的粒径可减少Mie散射的干扰。但是,这导致颗粒与周围气相之间以及颗粒与周围气相之间的传热和传质过程在轴向上不对称。为了简化模型,将空间变量的总数减为1,并建立了粒子辐射加热均匀和不均匀情况之间的相关系数。将数值模拟与先前研究的实验结果进行了比较。如果考虑到相关因子,则理论预测值与实验值具有很好的相关性,但是,如果没有这样的因子,则会导致临界辐射功率通量的值明显更高(约10倍)。

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