首页> 外文会议>SAE World Congress Experience >Simulation and Experimental Study of Intake Air Flow Pulsation and Resolution for a 2-Cylinder Uneven Firing (0°-540°) Naturally Aspirated and Turbocharged CPCB II Diesel Engine
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Simulation and Experimental Study of Intake Air Flow Pulsation and Resolution for a 2-Cylinder Uneven Firing (0°-540°) Naturally Aspirated and Turbocharged CPCB II Diesel Engine

机译:用于2缸的进气脉动脉动和分辨率的模拟和实验研究,用于2缸不均匀烧制(0°-540°)天然吸气和涡轮增压CPCB II柴油发动机

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Development of a 2-cylinder uneven firing engine from a 4-cylinder parent engine is associated with variation in air mass flow due to the combined effects of both engine downsizing as well the large firing gap between the cylinders especially 540°. This affects the turbocharger performance & durability and engine emissions due to fluctuations in the air mass flow. This paper investigates the effects of engine geometries such as stroke, valve overlap, cam profiles, intake and exhaust manifold configuration and surge tank effect through one-dimensional thermodynamic simulations and experimental tests, thus reducing the pulsation effect by 85%. Two engine configurations - naturally aspirated engine for 15 kVA power rating and turbocharged version for 30 kVA power rating were considered for the development study. The former was evaluated with different cam profiles and stroke which effected in reducing the air mass flow pulse variation by 80% and the latter by combination of different turbocharger trims and dampening tank resulting in 85% reduction. Experimental tests were carried out for all the engine configurations on an instrumented engine test bench and the results observed were with 98% adherence to the simulation results and could meet the Indian Genset emission norms CPCB-II (Equivalent to EU Stage IIIA norms) comfortably.
机译:由4缸母引擎的2缸不均匀发射发动机的研制与空气质量流量的变化有关,由于两个发动机缩小的综合影响以及汽缸之间的大燃烧间隙尤其是540°。这会影响涡轮增压器性能和耐用性和发动机排放,因为气体批量流动波动。本文通过一维热力模拟和实验测试调查了发动机几何形状的影响,如行程,阀门重叠,凸轮型材,进气和排气歧管配置和电涌罐效果,从而将脉动效果降低了85%。两个发动机配置 - 对于15 kVA额定电流和涡轮增压版的自然吸气发动机进行了开发研究的30 kVA额定功率。使用不同的凸轮型材和中风评估前者,通过不同的涡轮增压器装饰和阻尼箱的组合将空气质量流量变化和后者进行了影响,导致85%的减少。对仪表发动机测试台上的所有发动机配置进行了实验测试,观察到的结果具有98%的粘附结果,并且可以舒适地满足印度发动机排放规范CPCB-II(相当于欧盟第IIIA规范)。

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