首页> 外文期刊>Arabian Journal for Science and Engineering >Performance of a Heavy-Duty Turbocharged Diesel Engine Under the Effect of Air Injection at Intake Manifold During Transient Operations
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Performance of a Heavy-Duty Turbocharged Diesel Engine Under the Effect of Air Injection at Intake Manifold During Transient Operations

机译:瞬态操作期间进气歧管的空气喷射效果下重型涡轮增压柴油发动机的性能

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The effectiveness of an air injection technique for the improvement in transient response of heavy-duty turbocharged diesel engines has been investigated but only to a limited extent.In the present work, the investigations are performed to improve the response characteristic of a heavy-duty turbocharged diesel engine under the transient event of rapid acceleration at low engine speeds. The engine model is developed using Ricardo wave software; and after the validation with the data obtained from the real engine, wave model is used to investigate the effectiveness of an air injection system for the improvement in performance of turbocharged diesel engine. The effect of air injection is observed by varying the air injection pressure and the time of acceleration. The turbocharger's response parameters such as the compressor exit pressure, turbine inlet temperature and turbine inlet pressure have been monitored to quantify the turbocharger lag. A pressure value of 1bar is found to be the optimum injection pressure value that significantly reduces the turbocharger lag corresponding to all the selected parameters. Furthermore, faster recovery time is observed for the tests with 1s duration of acceleration than that with 2s duration of acceleration. Turbo lag reduction in percentage per unit energy is found to be 29.0%, 39.2% and 55.5% per Joule based on compressor exit pressure, turbine inlet pressure and turbine inlet temperature, respectively, at 1bar of air injection pressure.
机译:研究了用于改善重型涡轮增压柴油发动机瞬态响应的空气喷射技术的有效性,但仅在有限的程度上进行了有限的。在目前的工作中,进行调查以改善重型涡轮增压的响应特征柴油发动机在低发动机速度下快速加速的瞬态事件。发动机模型是使用Ricardo Wave软件开发的;在用真实发动机获得的数据验证之后,使用波模型来研究空气喷射系统改善涡轮增压柴油机性能的有效性。通过改变空气喷射压力和加速时间来观察空气喷射的效果。已经监测了涡轮增压器的响应参数,例如压缩机出口压力,涡轮机入口温度和涡轮机入口压力,以量化涡轮增压器滞后。发现1Bar的压力值是最佳的注射压力值,可显着减少对应于所有所选参数的涡轮增压器滞后。此外,对于具有比具有2S加速度的持续时间的测试,观察到更快的恢复时间。基于压缩机出速压力,涡轮机入口压力和涡轮机入口温度,在空气喷射压力的1Bar,涡轮滞后,每单位能量百分比的百分比为每单位能量的百分比为29.0%,39.2%和55.5%。

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