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Improved Spray Model for Viscous Annular Sheets in a Swirl Injector

机译:旋流喷油器中粘性环形片材的改进喷涂模型

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A modified sheet breakup model was applied to a thin, viscous liquid film generated by a swirl injector similar to that installed in a liquid propellant rocket engine combustor. The sheet breakup model consists of three steps: determination of the swirl injector characteristics for the prediction of initial sheet conditions at the injector exit as input, linear stability analysis for primary sheet breakup, and the Taylor analogy breakup model for final drop formation. Under atmospheric pressure, the liquid sheet breakup occurs under a long-wave regime, sometimes according to simple theoretical analysis. But in high ambient pressure conditions, like a liquid propellant rocket engine combustor, the sheet breakup regime changes from a long wave to a short-wave regime due to a high gas Weber number (We_2 > 27/16), although the same injector was used. The sheet breakup model was, therefore, modified to be applicable to both long- and short-wave regimes and validated by the comparison of breakup length and Sauter mean diameter to experimental results. In both experimental and computational results, the spray cone angle and breakup length decreased as the ambient pressure increased, even though the pressure difference of the injector was constant Local Sauter mean diameters, predicted by computation, were smaller at high ambient pressures. The comparative results show that the computational model is able to accurately predict sheet breakup length, spray cone angle, local Sauter mean diameter, and overall spray shape. Therefore, the model can be used as a design tool, ahead of analyzing spray characteristics of an injector in both atmospheric and high ambient pressure conditions.
机译:将改进的薄片破裂模型应用于由旋流喷射器产生的薄而粘稠的液膜,该旋流喷射器类似于安装在液体推进剂火箭发动机燃烧器中的旋流喷射器。纸页破裂模型包括三个步骤:确定旋流喷油器特性,以预测作为输入的喷射器出口处的初始纸页状况;进行初始纸页破裂的线性稳定性分析;以及用于最终液滴形成的泰勒类比破裂模型。在大气压下,有时根据简单的理论分析,液体薄片会在长波状态下破裂。但是,在高环境压力条件下,例如液体推进剂火箭发动机燃烧室,由于气体韦伯值较高(We_2> 27/16),尽管相同的喷油器用过的。因此,修改了纸页破裂模型以适用于长波和短波两种情况,并通过将破裂长度和索特平均直径与实验结果进行比较来验证了该模型。在实验和计算结果中,即使喷射器的压差恒定,通过计算预测的喷雾锥角和破裂长度也会随着环境压力的增加而减小,通过计算预测,局部Sauter平均直径在较高的环境压力下会较小。对比结果表明,该计算模型能够准确预测薄板破裂长度,喷雾锥角,局部Sauter平均直径和总体喷雾形状。因此,在分析大气压和高环境压力条件下喷射器的喷雾特性之前,该模型可用作设计工具。

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