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Investigation of performance and characteristics of a multi-cylinder gasoline engine with controlled auto-ignition combustion in naturally aspirated and boosted operation

机译:自然吸气和增压运行中控制自燃燃烧的多缸汽油发动机性能和特性研究

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摘要

Controlled Auto-Ignition (CAI) also known as Homogeneous Charge Compression Ignition (HCCI) is increasingly seen as a very effective way of lowering both fuel consumption and emissions. Hence, it is regarded as one of the best ways to meet stringent future emissions legislation. It has however, still many problems to overcome, such as limited operating range. This combustion concept was achieved in a production type, 4-cylinder gasoline engine, in two separated tests: naturally aspirated and turbocharged. Very few modifications to the original engine were needed. These consisted basically of a new set of camshafts for the naturally aspirated test and new camshafts plus turbocharger for the boosted test. The first part of investigation shows that naturally aspirated CAI could be readily achieved from 1000 to 3500rpm. The load range, however, decreased noticeably with engine speed due to flow restrictions imposed by the low lift camshafts. Ultra-low levels of NOx emissions and reduced fuel consumption were observed. After baseline experiments with naturally aspirated operation, the capability of turbocharging for extended CAI operation was investigated. The results show that the CAI range could achieve higher load and speed with the addition of the turbocharger. The engine showed increased fuel consumption due to excessive pumping losses. Emissions, however, have been reduced substantially in comparison to the original engine. NOx levels could be reduced by up to 98% when compared to a standard SI production engine.
机译:受控自动点火(CAI)也被称为均质压缩压缩点火(HCCI),越来越被视为降低燃油消耗和排放的一种非常有效的方法。因此,它被视为满足严格的未来排放法规的最佳方法之一。但是,仍然有许多问题需要克服,例如工作范围有限。这种燃烧概念是在生产型四缸汽油发动机中通过两个独立的测试实现的:自然吸气和涡轮增压。需要对原始引擎进行很少的修改。这些基本上包括一组用于自然吸气测试的新凸轮轴,以及一组用于增强测试的新凸轮轴以及涡轮增压器。研究的第一部分显示,自然吸气CAI可以在1000至3500rpm的转速下轻松实现。然而,由于低升程凸轮轴施加的流量限制,负载范围随着发动机转速而明显减小。观察到超低水平的NOx排放量和减少的燃油消耗。在自然吸气操作的基础实验之后,研究了涡轮增压器对CAI扩展操作的能力。结果表明,通过增加涡轮增压器,CAI范围可以实现更高的负载和速度。由于过度的抽气损失,发动机的燃油消耗增加。但是,与原始发动机相比,排放量已大大减少。与标准SI生产发动机相比,NOx含量最多可降低98%。

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