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首页> 外文期刊>Journal of the Brazilian Society of Mechanical Sciences and Engineering >Analysis and dynamic calibration of the transient of an SI-engine equipped with turbocharger
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Analysis and dynamic calibration of the transient of an SI-engine equipped with turbocharger

机译:配备涡轮增压器的SI发动机瞬态分析和动态校准

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Transient is considered an important operation mode of an engine since most of its working cycles happen in this mode. In this paper, GT-Power software is used to model the engine and the turbocharger; moreover, the experimental results from the IPCO Company are used for validation and calibration. The simulation is calibrated for the engine's steady state in the part- and full-load conditions. Then, since the transient simulation cannot be performed based on the steady-state settings, the engine transient simulation is calibrated. Upon the performed simulation, the calibration differences of the transient and the steady state are investigated. These differences are analyzed during four processes of combustion, injection, heat transfer in the exhaust manifold and the turbocharger performance; then the various parameters' effect on the engine transient are studied. The considered transient is the one during which the engine load increases with the throttle opening at a constant engine speed. It is concluded that the produced maps of the combustion and injection parameters, which are achieved from the quasi-steady conditions, can properly predict these parameters' behavior. However, the turbocharger performance and the heat transfer inside the exhaust manifold must be calibrated, transiently. With this procedure for model calibration, the error between the model and the experimental results were decreased significantly. For example, in the speed of 1900 rpm, the error between the model and the experimental data for transient simulation is reduced from 1.57 to 0.18. The studied engine is 1.65 L EF7-TC which is a spark ignition engine equipped with a turbocharger.
机译:瞬态被认为是发动机的一种重要操作模式,因为它的大部分工作循环都发生在这种模式下。本文使用GT-Power软件对发动机和涡轮增压器进行建模;此外,IPCO公司的实验结果也被用于验证和校准。仿真针对发动机在部分和满载条件下的稳态进行了校准。然后,由于无法根据稳态设置执行瞬态仿真,因此对发动机瞬态仿真进行校准。在进行仿真后,研究了瞬态和稳态的校准差异。在燃烧、喷射、排气歧管传热和涡轮增压器性能四个过程中分析了这些差异;然后研究了各种参数对发动机瞬态的影响。考虑的瞬态是指发动机负载在恒定发动机转速下随着节气门打开而增加的瞬态。结果表明,在准稳态条件下得到的燃烧和喷射参数图可以正确预测这些参数的行为。但是,涡轮增压器的性能和排气歧管内部的传热必须暂时校准。通过这种模型标定程序,模型与实验结果之间的误差显著降低。例如,在1900 rpm的速度下,模型与瞬态仿真的实验数据之间的误差从1.57%降低到0.18%。研究的发动机是 1.65 升 EF7-TC,这是一种配备涡轮增压器的火花点火发动机。

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