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Study of Combustion Characteristics of a Quasi Internal Combustion Rankine Cycle Engine

机译:准内燃烧QUANNINGINE循环发动机燃烧特性研究

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Internal combustion Rankine cycle (ICRC) engine uses oxygen instead of air as oxidant during the combustion process, therefore totally eliminates the emission of NO_x. CO_2 could be captured after separated from the exhaust gas, the latter are mainly water vapor and CO_2, through condensation at a relatively low price, and thus an ultra-low emission working cycle is achieved. Moreover, water is heated up by exhaust gas and injected into the cylinder during the combustion process to control combustion temperature, and evaporation of the water mist would increase working fluid inside the cylinder, therefore enhance indicated thermal efficiency. This study investigates the combustion characteristics of a quasi ICRC on a single-cylinder SI engine fueled with propane. Gas mixture of O_2/CO_2 is employed to simulate EGR in order to control in-cylinder temperature. O_2 concentration is set to 40 vol.% and water is injected into the cylinder near top dead center to control the oxy-fuel combustion process. The effect of water injection timing, injection duration, as well as injection pressure are studied, and results show that indicted work is enhanced by 7.8% experimentally at engine speed of 2400 r/min with IMEP of 0.62 MPa. Cycle performance is better when injection timing is earlier, and combustion phasing is postponed without decreasing peak in-cylinder pressure. The increase of injection duration and pressure has effects on peak in-cylinder pressure but does not affect combustion phasing notably.
机译:内燃兰尼循环(红十字会)发动机在燃烧过程中使用氧气代替空气作为氧化剂,因此完全消除了NO_X的排放。可以在与废气分离后捕获CO_2,后者主要是水蒸气和CO_2,通过相对低的价格冷凝,因此实现了超低发射工作循环。此外,通过废气加热水并在燃烧过程中注入气缸以控制燃烧温度,并且水雾的蒸发将增加气缸内的工作流体,因此增强了指示的热效率。本研究研究了用丙烷燃料的单缸Si发动机上的准红溴锰的燃烧特性。使用O_2 / CO_2的气体混合物来模拟EGR以控制缸内温度。 o_2浓度设定为40体积%。%和水注入顶部死区附近的圆柱体,以控制氧燃料燃烧过程。研究了水注射正时,注射持续时间以及注射压力的影响,结果表明,在2400 r / min的发动机速度下,通过IMEP为0.62MPa的发动机速度提高了所示工作7.8%。当喷射正时更早时,循环性能更好,并推迟燃烧相位而不降低圆柱压力峰值压力。注射持续时间和压力的增加对圆柱柱压力的影响具有效果,但不会显着影响燃烧相位。

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