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Numerical modeling on homogeneous charge compression ignition combustion engine fueled by diesel-ethanol blends

机译:柴油-乙醇混合燃料供气的均质压燃式发动机数值模型

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This paper investigates the performance and emission characteristics of HCCI engines fueled with oxygenated fuels (ethanol blend). A modeling study was conducted to investigate the impact of ethanol addition on the performance, combustion and emission characteristics of a Homogeneous Charge Compression Ignition (HCCI) engine fueled by diesel. One dimensional simulation was conducted using the renowned commercial software for diesel and its blend fuels with 5% (E5) and 10% ethanol (E10) (in vol.) under full load condition at variable engine speed ranging from 1000 to 2750 rpm with 250 rpm increment. The model was then validated with other researcher’s experimental result. Model consists of intake and exhaust systems, cylinder, head, valves and port geometries. Performance tests were conducted for volumetric efficiency, brake engine torque, brake power, brake mean effective pressure, brake specific fuel consumption, and brake thermal efficiency, while exhaust emissions were analyzed for carbon monoxide (CO) and unburned hydrocarbons (HC. The results showed that blending diesel with ethanol increases the volumetric efficiency, brake specific fuel consumption and brake thermal efficiency, while it decreases brake engine torque, brake power and brake mean effective pressure. In term of emission characteristics, the CO emissions concentrations in the engine exhaust decrease significantly with ethanol as additive. But for HC emission, its concentration increase when apply in high engine speed. In conclusion, using Ethanol as fuel additive blend with Diesel operating in HCCI shows a good result in term of performance and emission in low speed but not recommended to use in high speed engine. Ethanol-diesel blends need to researched more to make it commercially useable.
机译:本文研究了用含氧燃料(乙醇混合物)供油的HCCI发动机的性能和排放特性。进行了建模研究,以研究乙醇添加对以柴油为燃料的均质充气压缩点火(HCCI)发动机的性能,燃烧和排放特性的影响。使用著名的商用软件对柴油及其含5%(E5)和10%乙醇(E10)(以体积计)的混合燃料进行一维模拟,满负荷条件下发动机转速从1000到2750 rpm,转速为250 rpm增量。然后,该模型已与其他研究人员的实验结果一起进行了验证。模型由进气和排气系统,气缸,气缸盖,气门和进气口几何组成。对容量效率,制动发动机扭矩,制动功率,制动平均有效压力,制动比油耗和制动热效率进行了性能测试,同时分析了废气排放中的一氧化碳(CO)和未燃烧的碳氢化合物(HC)。柴油与乙醇的混合提高了容积效率,制动比燃料消耗和制动热效率,同时降低了制动发动机扭矩,制动功率和制动平均有效压力。就排放特性而言,发动机排气中的CO排放浓度显着降低以乙醇为添加剂,但对于HC排放而言,在高速发动机中使用时,其浓度会增加;因此,将乙醇作为燃料添加剂与HCCI运行的柴油混合使用,在低速性能和排放方面显示出良好的效果,但不建议使用在高速发动机中使用。乙醇-柴油混合物需要进行更多的研究才能使其在商业上可用。

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