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Computational Modeling of Internal Combustion Engines: Influence of Compression Ratio in the Indicated Performance Curves

机译:内燃机的计算建模:指示性能曲线压缩比的影响

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This paper describes the development of a computational simulation model for internal combustion engines, with spark ignition, powered by ethanol fuel which include the combustion with finite duration, the instantaneous heat transfer and the intake and exhaust processes. The simulation model calculates the thermodynamic properties of each element involved in the process at every discretized instant of the motor cycle using as input the data related to the engine and to its desired operating regime. The simulation model has as a result the temperature and the instantaneous pressure profiles inside of the combustion chamber as a function of the crankshaft angle in the range of one cycle. Besides that, the algorithm includes a variation range of certain parameters of the engine project to evaluate the influence of each one of these parameters in its performance. One of these important parameters that can be varied by this algorithm is the compression ratio, whose study of its influence on engine performance curves is discussed in this paper.
机译:本文介绍了内燃机的计算仿真模型的开发,用火花点火,由乙醇燃料供电,包括具有有限持续时间的燃烧,瞬时传热和进气和排气过程。模拟模型使用与发动机相关的数据和其所需的操作制度的数据来计算在电机循环的每个离散瞬间涉及的每个元件的热力学特性。仿真模型的结果是燃烧室内部的温度和瞬时压力曲线作为一个循环范围内的曲轴角的函数。此外,该算法包括发动机项目的某些参数的变化范围,以评估这些参数中的每个参数的性能的影响。该算法可以变化的这些重要参数之一是压缩比,其对其对发动机性能曲线的影响的研究是在本文中进行的。

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