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Technical feasibility study of scroll-type rotary gasoline engine: A compact and efficient small-scale Humphrey cycle engine

机译:涡旋式旋转汽油发动机的技术可行性研究:紧凑高效的小型汉弗莱循环发动机

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This paper reports the study of a conceptual gasoline Internal Combustion Engine (ICE) using scroll type rotary device rather than conventional piston as the main engine component. The proposed innovation engine adopts Humphrey Cycle to maximise the power performance of ICE. A performance comparison of the Humphrey Cycle, Otto cycle and Brayton cycle has been conducted and studied. The effects of using different designed compression ratio under variable expansion ratio have been investigated, which identify the optimal operational conditions under different compression/expansion ratio of the engine. Optimal performance can be achieved under the compression/expansion ratio at 2:1/4.8:1, 4:1/7.4:1, 6:1/9.9:1, 8:1/11.8:1 and 10:1/14.1:1, when the energy efficiency of the system can be respectively achieved at 42.22%, 49.13%, 52.82%, 55.08% and 56.96%. A case study has been conducted to study the performance of small-scale scroll-type rotary ICE. Results pointed out under designed compression ratio from 2:1 to 10:1 the effective power from the system ranges from 3.343 to 19.01 kW. The analysis of fuel efficiency pointed out the Brake Specific Fuel Efficiency (BSFC) of the scroll-type rotary engine burning gasoline ranges from 130.5 to 148.5 g/kWh, which improve the fuel efficiency by 28.02% and 65.89% compared to that of the conventional gasoline engine.
机译:本文报道了使用涡旋式旋转装置而非传统活塞作为主要发动机组件的概念汽油内燃发动机(ICE)的研究。拟议的创新引擎采用汉弗莱循环,以最大限度地提高ICE的动力性能。进行了汉弗莱循环,奥托循环和布雷顿循环的性能比较。研究了在可变膨胀比下使用不同设计压缩比的效果,从而确定了发动机在不同压缩/膨胀比下的最佳运行条件。在压缩/膨胀比为2:1 / 4.8:1、4:1 / 7.4:1、6:1 / 9.9:1、8:1 / 11.8:1和10:1 / 14.1的情况下可以实现最佳性能如图1所示,当系统的能量效率可以分别达到42.22%,49.13%,52.82%,55.08%和56.96%时。进行了案例研究,以研究小型涡旋式旋转ICE的性能。结果表明,在2:1至10:1的设计压缩比下,系统的有效功率范围为3.343 kW至19.01 kW。燃油效率分析指出,涡旋式旋转发动机燃烧汽油的制动比燃油效率(BSFC)在130.5至148.5 g / kWh的范围内,与传统发动机相比,燃油效率提高了28.02%和65.89%汽油发动机。

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