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Optimization of a simplified sub-model for NO emission prediction by CFD in large 4-stroke marine diesel engines

机译:大型四冲程船用柴油机CFD预测NO排放的简化子模型的优化

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A simplified sub-model for NO emission prediction at pressurized conditions has been put forth at Abo Akademi University [7,9] including NO formation via the thermal NO path (3 reactions) and via the nitrous oxide intermediate paths (2 + 5 reactions). CFD simulations carried out with the sub-model for marine and off-road diesel engines showed, however, that it significantly - by an order of magnitude - over-predicted NO emission as compared to measurements. The objective of this work was to find the reasons to the discrepancy and to suggest and incorporate improvements. By detailed investigations, a number of programming technical errors and chemical kinetic shortcomings were identified. The improved sub-model and its sub-parts were then tested for CFD simulation of a medium-speed, four-stroke, direct-injection marine diesel engine for different loads and fuels. The importance of NO reduction by soot and hydrocarbons was also investigated. All the sub-models correctly predicted the trend of increasing NO emission with increasing load. In absolute amounts, NO emission was over-predicted by a factor of 2 to 4, if no fitting of rate constants was allowed. Including NO reduction by soot and hydrocarbons, decreased NO emission by ca 4-25% for the cases studied.
机译:Abo Akademi大学[7,9]提出了在加压条件下预测NO排放的简化子模型,其中包括通过热NO路径(3个反应)和一氧化二氮中间路径(2 + 5个反应)形成NO。 。但是,用该子模型对船用和越野柴油发动机进行的CFD模拟显示,与测量值相比,NOx排放量显着高出了一个数量级。这项工作的目的是找出导致差异的原因,并提出并纳入改进建议。通过详细的调查,发现了许多编程技术错误和化学动力学缺陷。然后对改进后的子模型及其子部件进行测试,以对不同负荷和燃料的中速,四冲程,直喷式船用柴油机进行CFD仿真。还研究了通过烟灰和碳氢化合物还原NO的重要性。所有子模型都正确预测了NO排放随负荷增加而增加的趋势。如果不使用速率常数的绝对值,则绝对排放量的NO排放量会被高估2到4倍。包括烟灰和碳氢化合物减少的NO,在所研究的案例中,NO排放减少了约4-25%。

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