Simulation of Dual Combustion Cycle in Internal Combustion Engines using MATLAB

Siddhartha Bhowmick, Bishal Singh, Md Mushahid Ansari, M. Sharma
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Abstract

The aim of this study is to develop a comprehensive mathematical model to accurately represent the dual combustion cycle in internal combustion engines, with a focus on improving combustion efficiency and reducing emissions. The novelty of this research lies in the integration of advanced combustion models within the mathematical framework to capture the unique characteristics of dual combustion cycles. The model will consider factors such as combustion characteristics, fuel-air mixing, heat transfer, and emissions. By accurately simulating the dual combustion cycle, valuable insights can be gained into the complex interactions occurring within the engine, leading to the development of optimized engine design and control strategies. The proposed model will be implemented using MATLAB, which offers flexibility and computational efficiency. The results obtained from the simulation can be validated against experimental data to ensure the accuracy and reliability of the model. This study is expected to contribute to the advancement of dual combustion cycle technology and provide valuable guidance for the design and optimization of future internal combustion engines.
内燃机双燃烧循环的MATLAB仿真
本研究的目的是建立一个全面的数学模型,以准确地表示内燃机的双燃烧循环,重点是提高燃烧效率和减少排放。该研究的新颖之处在于将先进的燃烧模型整合到数学框架中,以捕捉双燃烧循环的独特特征。该模型将考虑诸如燃烧特性、燃料-空气混合、传热和排放等因素。通过精确模拟双燃烧循环,可以对发动机内部发生的复杂相互作用获得有价值的见解,从而开发出优化的发动机设计和控制策略。该模型将使用MATLAB实现,具有灵活性和计算效率。仿真结果可以与实验数据进行验证,保证了模型的准确性和可靠性。该研究有望为双燃烧循环技术的发展做出贡献,并为未来内燃机的设计和优化提供有价值的指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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