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Estimation of Flow Properties of Gelled Fuels with Regard to Propulsion Systems

机译:根据推进系统估算胶凝燃料的流动特性

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Gelled fuels and propellants are shear-thinning non-Newtonian fluids. Their dependency of the shear viscosity from the shear rate can be described with sufficient accuracy by an extended version of the Herschel-Bulkley equation in the whole rocket and ramjet propulsion-relevant shear-rate range. Additionally to the analytically determined generalized Reynolds number for fluids, which follow the extended Herschel-Bulkley equation, a method for the estimation of critical Reynolds numbers (as a phenomenological approach) is presented. Both dimensionless numbers are useful for the characterization of the flow and partially also of the spray processes of gel fluids. The results show furthermore that both the shear-thinning property and the yield stress tend to stabilize the laminar flow and thus shift the critical Reynolds number to higher values when compared to Newtonian liquids.
机译:胶凝燃料和推进剂是剪切稀化的非牛顿流体。它们的剪切粘度对剪切速率的依赖性可以通过整个火箭和冲压发动机推进相关的剪切速率范围内的Herschel-Bulkley方程的扩展形式来足够准确地描述。除了遵循扩展的Herschel-Bulkley方程由分析确定的广义雷诺数外,还提出了一种估计临界雷诺数的方法(作为一种现象学方法)。这两个无量纲数对于表征凝胶流体的流动以及部分地表征喷雾过程都是有用的。结果还表明,与牛顿液体相比,剪切稀化特性和屈服应力都倾向于稳定层流,从而将临界雷诺数移至更高的值。

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