热自燃的临界初始条件

R. Weber, E. Balakrishnan, G. Wake
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引用次数: 10

摘要

对平面几何、圆柱几何和球面几何的热点火临界初始条件进行了数值计算。在每种情况下,将分岔图与中间稳态进行比较。可以清楚地看到,取决于初始温度分布的实际临界初始条件部分低于中间稳态。并清楚地显示了其随环境温度、放热特性和Biot数的变化规律。这些结果对于与热产品组装问题相关的计算是重要的,其中热制造的有机产品被包装到容器中或储存在亚临界环境储存温度下。以一个有趣的案例研究(奶粉)为例,给出了一个计算实例来说明我们的结果的实用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Critical initial conditions for spontaneous thermal ignition
Critical initial conditions for thermal ignition are calculated numerically for planar, cylindrical and spherical geometries. In each case a comparison is made on the bifurcation diagram with the intermediate steady state(s). It is clearly seen that the actual critical initial condition which depends upon the initial temperature profile, is partly below the intermediate steady state(s). The variation with ambient temperature, exothermicity and Biot number are all explicitly shown. The results are important for calculations relevant to the critical hot product assembly problem where a hot manufactured organic product is packed into containers or stockpiled at a subcritical ambient storage temperature. An example calculation for an interesting case study (milk powder) is given to illustrate the utility of our results.
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