首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Experimental Validation of an Improved Squish Velocity Model for Bowl-in-Piston Combustion Chambers
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Experimental Validation of an Improved Squish Velocity Model for Bowl-in-Piston Combustion Chambers

机译:碗内活塞式燃烧室改进的挤压速度模型的实验验证

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A simple two-zone mass transfer model was used to predict the mean squish velocity history at the rim of a conventional bowl-in-piston combustion chamber. The chamber's geometry produces gas flow that converges radially inwards ("squish") as TDC (top dead center) is approached. The squish flow generates turbulence, which can be used to enhance the combustion rate. When compared with PIV (particle image velocimetry) measurements, the peak squish velocity at the bowl rim was 12% less than the value predicted by the simple mass transfer model. After a thorough examination, the assumption of uniform density in the simple model was strongly suspected to be the cause of this discrepancy. Improvements were made to the simple model to account for density variations that are caused by nonuniform heat transfer in the combustion chamber. The revised model yielded velocities that were in close agreement with PIV measurements.
机译:一个简单的两区传质模型被用来预测常规活塞内胆燃烧室边缘的平均挤压速度历史。当接近TDC(上止点)时,腔室的几何形状会产生径向向内会聚(“挤压”)的气流。急流产生湍流,可用于提高燃烧速率。与PIV(颗粒图像测速)测量结果相比,碗边缘的峰值挤压速度比简单传质模型预测的数值小12%。经过彻底检查后,强烈怀疑简单模型中均匀密度的假设是造成这种差异的原因。对简单模型进行了改进,以解决由燃烧室内传热不均匀引起的密度变化。修改后的模型产生的速度与PIV测量值非常吻合。

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