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Validation and optimization of the thermal cycle for a diesel engine by computational fluid dynamics modeling

机译:通过计算流体动力学建模验证和优化柴油机的热循环

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In this study, we developed a computational fluid dynamics (CFD) model of a turbocharged diesel engine (1CT107) powered by diesel fuel. The engine was part of the power generating set in the portable version. In the simulation tests, we analyzed the impact of the ignition timing on the thermodynamic parameters and emissions of toxic components. We verified the model of the test engine and it was then used to optimize the thermal cycle for the test engine. We found that the engine model had acceptable accuracy and it was suitable for emissions modeling. Under the full load, the NO emissions were 2.2 g/kWh, which satisfied the EURO Ⅳ criteria. As the load increased, the soot emissions also increased. This model also confirmed that the dynamics of soot formation were the opposite of NO formation. In summary, CFD modeling provides a powerful tool for optimizing the internal combustion engine in terms of both the thermodynamic parameters and emissions. The model of the test engine was produced using AVL FIRE.
机译:在这项研究中,我们开发了一种以柴油为动力的涡轮增压柴油机(1CT107)的计算流体动力学(CFD)模型。该发动机是便携式版本的发电机组的一部分。在模拟测试中,我们分析了点火正时对热力学参数和有毒成分排放的影响。我们验证了测试引擎的模型,然后将其用于优化测试引擎的热循环。我们发现发动机模型具有可接受的精度,并且适合于排放模型。在满负荷条件下,NO排放量为2.2 g / kWh,符合欧Ⅳ标准。随着负荷增加,烟尘排放也增加。该模型还证实了烟灰形成的动力学与NO的形成相反。总之,CFD建模提供了一个强大的工具,可以根据热力学参数和排放来优化内燃机。测试引擎的模型是使用AVL FIRE生产的。

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