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首页> 外文期刊>Journal of Quality in Maintenance Engineering >Simulation based study on improving the transient response quality of turbocharged diesel engines
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Simulation based study on improving the transient response quality of turbocharged diesel engines

机译:基于涡轮增压柴油发动机瞬态响应质量的仿真研究

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摘要

Use of fossil fuels in automotive sector is one of the primary causes of greenhouse emissions. The automotive engines need to perform at their best efficiency point to limit these emissions. Most of the quality indicators in this regard are based on near steady state global operational characteristics for engines without considering local performance. In the present study, extensive numerical simulations have been carried out covering a wide range of steady state and transient operating conditions to quantify interaction of turbocharger with engines through turbo lag phenomena which may cause increased emissions during the load change conditions. Furthermore possible innovations have been explored to minimize turbo lag phenomena. The paper aims to discuss these issues. Design/methodology/approach - In this paper quality indicators have been developed to quantify the performance of turbocharged diesel engine under the transient event of rapid change in fueling rate which has been rarely investigated. The rate of fueling is changed from 40 mm3/injection to 52 mm3/injection at 1,000 rpm engine speed which corresponds to normal operating condition. To improve quality of transient response, torque assistance method and reduction of inertia of compressor wheel have been used. Parametric study has been undertaken to analyze the quality indicators such as outlet pressure of the compressor and the compressor speed. The turbo lag is quantified to obtain the close to optimal transient response of turbocharged diesel engine. Findings - It has been shown that, with torque assist the transient response of the internal combustion engine is significantly improved. On the other hand, marginal improvement in transient response is observed by the reduction in inertia of the compressor wheel. Research limitations/implications - The findings indicate that turbo lag can be minimized by providing torque assistance by active and passive means. Practical implications - The developed methods can be used in practice for efficient operation of vehicles. Social implications - The work carried out in the paper provides a way to minimize harmful emissions. Originality/value - The quality indicators developed provide a quantitative measure of turbo lag phenomena and address the above mentioned problems.
机译:在汽车领域使用化石燃料是温室排放的主要原因之一。汽车发动机需要以其最佳效率表现,以限制这些排放。在这方面的大多数质量指标都基于发动机的近稳态全球运行特征,而不考虑本地性能。在本研究中,已经进行了广泛的数值模拟,覆盖了广泛的稳态和瞬态操作条件,以通过通过涡轮滞后现象量化涡轮增压器与发动机的相互作用,这可能导致负载变化条件期间的发射增加。此外,已经探索了可能的创新,以尽量减少涡轮滞后现象。本文旨在讨论这些问题。设计/方法/方法 - 在本文中,已经开发出质量指标,以量化涡轮增压柴油发动机在很少调查的快速变化的瞬态事件下的性能。以1,000 rpm发动机速度的1,000 rpm发动机速度将燃料速率从40mm3 /注射变为52 mm3 /注射。为了提高瞬态响应质量,已经使用了扭矩辅助方法和压缩轮惯性的减小。已经开展了参数研究,分析了压缩机的出口压力等质量指标和压缩机速度。量化涡轮滞后,以获得涡轮增压柴油发动机的最佳瞬态响应。研究结果 - 已经表明,通过扭矩辅助内燃机的瞬态响应显着提高。另一方面,通过减小压缩机轮的惯性来观察到瞬态响应的边缘改善。研究限制/含义 - 结果表明通过通过主动和被动装置提供扭矩辅助,可以最小化涡轮滞后。实际意义 - 可以在实践中使用开发的方法来实现车辆的有效运行。社会影响 - 论文中开展的工作提供了一种最大限度地减少有害排放的方法。原创性/值 - 所开发的质量指标提供了涡轮滞后现象的定量衡量标准,并解决了上述问题。

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