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Simulation of an Intake Manifold Preheater for Cold Engine Startup

机译:发动机冷启动进气歧管预热器的仿真

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Ensuring consistent, reliable diesel engine startups in cold temperatures is of utmost importance in a number of applications. Under extreme temperatures, the use of glow plugs is complemented by intake manifold heaters. In these, the energy released from combustion increases the intake air temperature before the air enters the main combustion chamber. Since the process also alters the stoichiometry of the fuel-air mixture at the intake ports, the preheater operation must be optimized in order to guarantee successful and reliable in-cylinder combustion during engine startups. This paper describes the development of an intake manifold model incorporating an air preheater for application in a diesel engine. The model was created using a commercial, one-dimensional simulation tool and its default heat transfer model was modified in-house for the present application. The model was validated against experimental data and subsequently used to quantify the concentration of combustion product species at the intake runners, as well as intake charge dilution. The experimental and predicted intake runner gas temperatures agreed within 15%. Results showed that the effective equivalence ratio might increase up to 2.6 after the first 15 s of cranking, with 12.5% reduction of the O_2 concentration in the intake charge.
机译:在许多应用中,确保低温下一致,可靠的柴油发动机启动至关重要。在极端温度下,通过进气歧管加热器补充电热塞的使用。其中,从燃烧释放的能量会在空气进入主燃烧室之前提高进气温度。由于该过程还会改变进气口处的燃料-空气混合物的化学计量,因此必须优化预热器操作,以确保发动机启动期间缸内燃烧的成功和可靠。本文介绍了进气歧管模型的开发,该模型结合了用于柴油发动机的空气预热器。该模型是使用商业的一维模拟工具创建的,其默认的传热模型已针对本应用程序在内部进行了修改。该模型已针对实验数据进行了验证,随后用于量化进气流道中燃烧产物种类的浓度以及进气充量稀释。实验和预测的进气流道气体温度均在15%之内。结果表明,启动后15 s后,有效当量比可能增加到2.6,进气中O_2浓度降低12.5%。

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