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首页> 外文期刊>International journal of engine research >Performance of multi-dimensional models for simulating diesel premixed charge compression ignition engine combustion using low- and high-pressure injectors
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Performance of multi-dimensional models for simulating diesel premixed charge compression ignition engine combustion using low- and high-pressure injectors

机译:使用低压和高压喷油器模拟柴油预混充量压缩点火发动机燃烧的多维模型的性能

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摘要

An engine CFD model has been developed to simulate premixed charge compression ignition (PCCI) combustion using detailed chemistry. The numerical model is based on the KIVA code that is modified to use CHEMKIN as the chemistry solver. The model was applied to simulate ignition, combustion, and emissions processes in diesel engines operated to achieve PCCI conditions. Diesel PCCI experiments using both low- and high-pressure injectors were simulated. For the low-pressure injector with early injection (close to intake valve closure), the model shows that wall wetting can be minimized by using a pressure-swirl atomizer with a variable spray angle. In the case of using a high-pressure injector, it is found that late injection (SOI = 5° ATDC) benefits soot emissions as a result of low-temperature combustion at highly premixed conditions. The model was also used to validate the emission reduction potential of an HSDI diesel engine using a double injection strategy that favours PCCI conditions. It is concluded that the present model is useful to assess future engine combustion concepts, such as PCCI and low-temperature combustion (LTC).
机译:已开发出发动机CFD模型,以使用详细的化学方法模拟预混合充量压缩点火(PCCI)燃烧。数值模型基于KIVA代码,该代码经过修改以使用CHEMKIN作为化学求解器。该模型被用于模拟为达到PCCI条件而运行的柴油发动机的点火,燃烧和排放过程。模拟了使用低压和高压喷射器的柴油PCCI实验。对于早期喷射的低压喷射器(接近进气门关闭),该模型显示,通过使用可变喷射角度的压力旋流雾化器,可以最大程度地减少壁润湿。在使用高压喷射器的情况下,发现由于在高度预混合的条件下进行低温燃烧,因此后期喷射(SOI = 5°ATDC)有利于烟尘排放。该模型还用于验证有利于PCCI条件的双喷射策略下HSDI柴油机的减排潜力。结论是,本模型可用于评估未来的发动机燃烧概念,例如PCCI和低温燃烧(LTC)。

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