首页> 外文会议>Proceedings of the ASME Internal Combustion Engine Division fall technical conference 2009 >A COMPREHENSIVE STUDY ON NATURAL GAS HCCI ENGINE RESPONSE TO DIFFERENT INITIAL CONDITIONS VIA A THERMO-KINETIC ENGINE MODEL
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A COMPREHENSIVE STUDY ON NATURAL GAS HCCI ENGINE RESPONSE TO DIFFERENT INITIAL CONDITIONS VIA A THERMO-KINETIC ENGINE MODEL

机译:利用热动力学模型对天然气HCCI发动机对不同初始条件的响应进行综合研究

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摘要

Homogenous Charge Compression Ignition (HCCI) combustion is a promising concept to reduce engine emissions and fuel consumption. In this paper, a thermo-kinetic model is developed to study the operating characteristics of a natural gas HCCI engine. The zero-dimensional single zone model consist detail chemical kinetics of natural gas oxidation including 325 reactions with 53 chemical species, and is validated with experimental results of reference works for two different engines, Volvo TD 100 and Caterpillar 3500, in 5 operating conditions. Then, the influence of parameters such as manifold temperature/pressure and equivalence ratio on in-cylinder temperature/pressure trends and start of combustion is studied. Measurements for Volvo engine show that SOC occurs 3-5 CAD earlier with every 15K increase in initial temperature. These whole results are explained in detail to describe the engine performance thoroughly.
机译:均质充气压缩点火(HCCI)燃烧是减少发动机排放物和燃料消耗的有前途的概念。在本文中,建立了一个热动力学模型来研究天然气HCCI发动机的运行特性。零维单区模型由天然气氧化的详细化学动力学组成,包括与53种化学物质的325次反应,并已在5个工况下用两种不同发动机沃尔沃TD 100和卡特彼勒3500的参考工作的实验结果进行了验证。然后研究了歧管温度/压力和当量比等参数对缸内温度/压力趋势和燃烧开始的影响。对沃尔沃发动机的测量表明,初始温度每升高15K,SOC就会提前3-5加元发生。将详细解释这些整体结果,以全面描述发动机性能。

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