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Experimental investigation of gasoline-dimethyl ether dual fuel CAI combustion with internal EGR

机译:内燃机汽油 - 二甲醚双燃料CaI燃烧试验研究

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摘要

A new dual fuel Controlled Auto-Ignition (CAI) combustion concept was proposed and researched for lower exhaust emissions and better fuel economy. The concept takes the advantage of the complementary physical and chemical properties of high octane number gasoline and high cetane number Di-Methyl Ether (DME) to organize the combustion process. Homogeneous gasoline/air mixture is utilized as the main combustible charge, which is realised by a low-cost Port Fuel Injection (PFI) system. Pressurised DME is directly injected into cylinder via a commercial Gasoline Direct Injection (GDI) injector. Flexible DME injection strategies are employed to realise the controlled auto ignition of the premixed charge. The engine is operated at Wide Open Throttle (WOT) in the entire operating region in order to minimize the intake pumping loss. Engine load is controlled by varing the amount of internal Exhaust Gas Recirculation (iEGR) which is achieved and adjusted by Positive Valve Overlap (PVO) and/or exhaust back pressure, and exhaust rebreathing method. The premixed mixture can be of either stoichiometric air/fuel ratio or fuel lean mixture and is heated and diluted by recycled exhaust gases. The use of internal EGR is considered as a very effective method to initiate CAI combustion due to its heating effect and moderation of the heat release rate by its dilution effect. In addition, the new combustion concept is compared to conventional SI combustion. The results indicate that the new combustion concept has potential for high efficiency, low emissions, enlargement of the engine operational region and flexible control of CAI combustion.
机译:提出并研究了一种新的双燃料控制自动点火(CAI)燃烧概念,以减少废气排放并提高燃油经济性。该概念利用了高辛烷值汽油和高十六烷值二甲醚(DME)互补的物理和化学特性来组织燃烧过程。均质汽油/空气混合物被用作主要可燃物,这是通过低成本的港口燃料喷射(PFI)系统实现的。加压的DME通过商用汽油直接喷射(GDI)喷射器直接喷射到气缸中。灵活的DME喷射策略用于实现预混合装料的受控自动点火。发动机在整个工作区域内以全开节气门(WOT)进行操作,以最大程度地减少进气泵的损失。通过改变内部排气再循环(iEGR)的量来控制发动机负载,该排气量通过正气门重叠(PVO)和/或排气背压以及排气再呼吸方法来实现和调节。所述预混合的混合物可以是化学计量的空气/燃料比或贫燃料的混合物,并且被再循环的排气加热并稀释。内部EGR的使用由于其热效应和稀释作用而降低了放热率,因此被认为是引发CAI燃烧的非常有效的方法。此外,将新的燃烧概念与常规的SI燃烧进行了比较。结果表明,新的燃烧概念具有高效率,低排放,扩大发动机工作区域和灵活控制CAI燃烧的潜力。

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