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Validation and sensitivity analysis of an in-flow water condensation model for 3D-CFD simulations of humid air streams mixing

机译:潮湿空气流混合3D-CFD模拟流量水冷凝模型的验证与敏感性分析

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The mixing of gaseous streams at different humidity and temperature conditions may generate bulk condensation, which is a particular thermodynamic process that usually implies a great computational effort. A model that provides in-flow condensation predictions without heavily impacting on the simulation time becomes a potential tool for studying situations where the presence of water droplets is a problem. For instance, in a Long-Route Exhaust Gas Recirculation (LR-EGR) system, intake fresh air is mixed with humid and hot exhaust gases, generating water droplets that may impact on the turbo-compressor impeller and produce harmful erosion. Serrano et al. [1] developed a condensation submodel for such purpose. In this work, the 3D CFD methodology is analyzed by means of sensitivity studies on the numerical setup and intake throttle valve angle. Validation of the model is addressed by means of measurements in a fully instrumented continuous flow turbocharger test bench, obtaining quantitative and qualitative agreement. Particularly, a consistent correlation was found between predicted condensation rate and the impeller damage for seven LR-EGR configurations. Moreover, the T-joint geometry is noticed to have a great impact on condensation generation, thus showing the potential of such a 3D model for improving the LR-EGR design.
机译:在不同湿度和温度条件下的气态流的混合可以产生散装冷凝,这是一种特定的热力学过程,通常意味着巨大的计算工作。在没有严重影响模拟时间的情况下提供流动冷凝预测的模型成为研究水滴存在的情况的潜在工具。例如,在长路线废气再循环(LR-EGR)系统中,进气新鲜空气与潮湿和热废气混合,产生可能影响涡轮压缩机叶轮并产生有害侵蚀的水滴。 Serrano等人。 [1]为此目的开发了一个冷凝子模型。在这项工作中,通过对数值设置和进气节流阀角度的敏感性研究分析了3D CFD方法。通过在完全仪表连续流动涡轮增压器测试台上进行测量来解决模型的验证,获得定量和定性协议。特别地,在预测的冷凝速率和七个LR-EGR配置之间的叶轮损坏之间发现了一致的相关性。此外,注意到T关节几何形状对冷凝产生产生很大影响,因此显示了改善LR-EGR设计的这种3D模型的潜力。

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