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EGR Response in a Turbo-charged and After-cooled DI Diesel Engine and Its Effects on Smoke Opacity

机译:涡轮增压和后冷DI柴油机中的EGR响应及其对烟度的影响

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Three thermo-wires with amplifying circuits have been developed to measure the time-resolved concentration of the exhaust gas recirculated into the intake manifold by a rotary valve based exhaust gas recirculation (EGR) system of a diesel engine. Good agreement was found between the EGR rates measured by the temperature based system and conventional CO2 tracing system. The developed EGR measuring system was used to investigate the EGR transient response in a turbo-charged and after-cooled diesel engine with a real-time measure and control system. The EGR response under EGR valve step change and engine transient operating conditions were discussed. At first, the engine was running under a certain steady condition with zero recirculated exhaust gas, then the rotary valve opened to maximum within 0.1s to demonstrate the EGR step change behavior. EGR rate and air intake stabilized in 0.5s. The combustion process characterized by the maximal in-cylinder pressure came to stabilization in 1.9s. Because of the in-cylinder thermal lag and combustion fluctuations the transient smoke opacities were much different from those at constant EGR rate operations and increased gradually to stabilization in approximately 5s. So, when EGR system was adopted to realize HCCI combustion this performance lag should be seriously taken into consideration. The engine typical transient operations, constant speed and increasing torque (CSIT) operations, were realized by evenly boosting the accelerator so as to make the engine increase torque from 100N·m to 500N·m at constant 1600 rpm. Test results showed that the sudden decreased air intake (resulted by the turbo-lag) brought a dramatic increase of the pressure drop across the EGR valve and resulted in great EGR rate which deteriorated the smoke opacity under transient operations. The peak smoke opacity under 16CSIT5 (constant 1600 rpm from initial 100N·m to final 500N·m within 5s) operation with EGR system which controlled by the steady-operation strategies was 3 times of engine without EGR. In order to obtain better transient performance of the diesel engine equipped with the EGR, its control strategy must be optimized.
机译:已经开发了三种具有放大电路的热线,以测量通过柴油机的基于旋转阀的排气再循环(EGR)系统再循环到进气歧管中的排气的时间分辨浓度。在基于温度的系统测量的EGR率与常规CO2跟踪系统之间发现了很好的一致性。所开发的EGR测量系统用于通过实时测量和控制系统研究涡轮增压和后冷柴油发动机中EGR的瞬态响应。讨论了EGR阀阶跃变化和发动机瞬态工况下的EGR响应。首先,发动机在一定的稳定条件下运行,零废气再循环,然后旋转阀在0.1s内最大打开,以证明EGR阶跃变化行为。 EGR率和进气量稳定在0.5秒内。以最大缸内压力为特征的燃烧过程在1.9s内趋于稳定。由于气缸内的热滞后和燃烧波动,瞬时烟气的浊度与恒定EGR率运行时的烟浊度有很大不同,并在大约5s内逐渐增加到稳定。因此,当采用EGR系统实现HCCI燃烧时,应认真考虑性能延迟。通过均匀地加速油门,从而使发动机以恒定的1600 rpm将扭矩从100N·m增加到500N·m,可以实现发动机的典型瞬态运行,恒定速度和增加扭矩(CSIT)操作。测试结果表明,突然减少的进气量(由涡轮迟滞导致)使EGR阀上的压降急剧增加,并导致很大的EGR率,这降低了瞬态运行时的烟气不透明度。在16CSIT5下(由最初的100N·m到最后的500N·m在5s内恒定1600 rpm)下,由稳态操作策略控制的最大烟气不透明度是不带EGR的发动机的3倍。为了获得配备EGR的柴油发动机更好的瞬态性能,必须优化其控制策略。

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