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A phenomenological model for accurate and time efficient prediction of heat release and exhaust emissions in direct- injection diesel engines

机译:直喷柴油发动机准确和延时预测热释放和排放的现象学模型

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摘要

A phenomenological multi-zone model for prediction of heat release and exhaust emissions in DI diesel engines is developed in an attempt to diminish the common trade-off between model accuracy and computing efficiency. This task is achieved by uncoupling the kinetic emissions models from the detailed calculations of spray formation and heat release, which allows to substantially reduce the number of zones in that the kinetics of NO_x and soot formation have to be solved. The predicted results of the model are compared with experimental data obtained from a turbocharged high-speed diesel engine. The results for heat release and pressure histories as well as the estimated nitric oxide emissions are in good agreement with the test data, indicating that an appropriate simplification of the complex combustion process has been established. The soot model is capable of predicting trends, but there are further improvements necessary in order to produce quantitatively correct results.
机译:开发了一种用于预测热释放和DI柴油发动机的排气排放的现象学多区模型,试图减少模型精度和计算效率之间的常见权衡。通过从喷雾形成和热释放的详细计算来实现动力排放模型来实现这项任务,这允许基本上减少了NO_X和烟灰地层的动力学的区域的数量。将模型的预测结果与从涡轮增压的高速柴油发动机获得的实验数据进行比较。热释放和压力历史的结果以及估计的一氧化氮排放与测试数据吻合良好,表明已经建立了适当的简化复杂的燃烧过程。烟灰模型能够预测趋势,但是必须进一步改进,以便产生定量正确的结果。

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