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NONLINEAR POWER LAWS IN STRETCHED FLAME VELOCITIES IN FINITE THICKNESS FLAMES: A NUMERICAL STUDY USING REALISTIC CHEMISTRY

机译:有限厚度火焰中拉伸火焰速度的非线性幂定律:基于实化学的数值研究

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Stretched laminar flame velocities in stoichiometric finite thickness HJair and CH_4lair flames at atmospheric pressures-investigated through an implicit direct simulation method are that features the coupling of the fully compressible flow to the realistic chemistry and multicomponent transport properties. The method resolves all the chemical and flow length and time scales, which is essential for investigating highly stiff reacting flow systems with realistic chemistry. Eight flame configurations are investigated: outwardly and inwardly propagating H_2lair and CHJair in cylindrical and spherical geometries. Nonlinear power law relationships are observed between the velocity deficit S_L - S_n and the flame curvature 1/rw viz S_L - Sn ~ (l/r_u)~p with 0<1, where p depends upon the flame type and the propagation mode. (S_L is the unstretched laminar flame velocity, and S_n is the stretch flame velocity, r_u, is the flame radius of curvature.) The Markstein linear hypothesis for asymptotically thin flames corresponds to p = 1; our results show that such a linear hypothesis cannot be extended to realistic finite thickness flames under the conditions of the study. The outwardly propagating H_2/air flames are an exception, displaying an entirely different anomalous non-power law relationship, which is indicative of the complex coupling between the thermochemistry and flame geometry.
机译:通过隐式直接模拟方法研究的,在大气压下化学计量的有限厚度HJair和CH_4lair火焰中的拉伸层流火焰速度,其特征在于完全可压缩的流与实际化学性质和多组分传输性质的耦合。该方法可解析所有化学物质,流动长度和时间尺度,这对于研究具有实际化学性质的高刚性反应流动系统至关重要。研究了八种火焰形态:以圆柱形和球形几何形状向外和向内传播H_2lair和CHJair。速度差S_L-S_n与火焰曲率1 / rw之间存在非线性幂律关系,即S_L-Sn〜(l / r_u)〜p,0 <1,其中p取决于火焰类型和传播模式。 (S_L是未拉伸的层流火焰速度,S_n是拉伸火焰速度,r_u是火焰曲率半径。)渐近稀薄火焰的Markstein线性假设对应于p = 1;我们的结果表明,在研究条件下,这种线性假设不能扩展到现实的有限厚度火焰。向外传播的H_2 /空气火焰是一个例外,表现出完全不同的异常非幂定律关系,这表明热化学和火焰几何形状之间存在复杂的耦合。

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