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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >A Nonequilibrium Turbulence Dissipation Correction and Its Influence on Pollution Predictions for DI Diesel Engines
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A Nonequilibrium Turbulence Dissipation Correction and Its Influence on Pollution Predictions for DI Diesel Engines

机译:直喷式柴油机非平衡湍流耗散修正及其对污染预测的影响

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A correction for the turbulence dissipation rate, based on nonequilibrium turbulence considerations from rapid distortion theory, has been derived and implemented in combination with the RNG k-ε model in a KIVA-based code. This correction reflects the time delay between changes in the turbulent kinetic energy due to changes in the mean flow and its turbulence dissipation rate, and it is shown that this time delay is controlled by the turbulence Reynolds number. The model correction has been validated with experimental data in the compression and expansion phase of a small diesel engine operated in motored mode. Combustion simulations of two heavy-duty DI diesel engines have been performed with the RNG k-ε model and the dissipation rate correction. The focus of these computations has been on the nitric oxide formation and the net soot production. These simulations have been compared with experimental data and their preditions are explained in terms of the turbulence dissipation effect on the transport coefficients for mass and heat diffusion. It has been found, that the dissipation correction yields consistent results with observations reported in previous studies.
机译:已经基于快速失真理论基于非平衡湍流考虑因素,对湍流耗散率进行了校正,并在基于KIVA的代码中结合RNGk-ε模型进行了实施。该校正反映了由于平均流量的变化而引起的湍动能变化与湍流耗散率之间的时间延迟,并且表明该时间延迟受湍流雷诺数控制。该模型校正已通过在机动模式下运行的小型柴油机的压缩和膨胀阶段的实验数据进行了验证。使用RNGk-ε模型和耗散率校正对两台重型DI柴油机进行了燃烧模拟。这些计算的重点在于一氧化氮的形成和烟灰的净产生。这些模拟已与实验数据进行了比较,并根据湍流耗散对传质和热扩散系数的影响解释了它们的前提。已经发现,耗散校正产生的结果与先前研究中报道的观察结果一致。

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