Performance Optimization of Compression Ignition Engines: A Review

O. Towoju
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引用次数: 1

Abstract

A catalyzing factor for the continuous search to optimize the compression ignition engines is the impact it has on the environment. The compression ignition engines find applications in the transportation sector, agriculture, energy, and construction sectors, and the optimization of its performance will thus not be an effort in futility. Many studies have focused on the optimization of the performance of compression ignition engines. The ones of interest reviewed herein can be broadly categorized as combustion chamber geometry studies, fuel studies, and advanced combustion modes studies. The combustion chamber geometry poses an impact on the in-cylinder fluid motion. This influences the combustion process which in-turn affects the engine performance and emission characteristics. The fuel type is also an influencer of the engine performance and emission characteristics drawing its impact from its properties. The combustion mode also poses an impact on the combustion process and can influence the engine performance and its emission characteristics. While it is difficult to pinpoint a particular intervention means that can completely resolve the challenges created by the use of ignition compression engines, the combustion chamber geometry optimization tends to bring along emission reduction and efficiency boost. A combination of the different methods will however, make a huge impact.
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压缩点火发动机性能优化研究进展
对环境的影响是压缩点火发动机不断寻求优化的催化因素。压缩点火发动机在交通运输、农业、能源和建筑领域都有应用,因此对其性能的优化不会是徒劳无功。许多研究都集中在压缩点火发动机的性能优化上。本文所讨论的内容可大致分为燃烧室几何研究、燃料研究和高级燃烧模式研究。燃烧室几何形状对缸内流体运动有重要影响。这会影响燃烧过程,进而影响发动机的性能和排放特性。燃料类型也是发动机性能和排放特性的影响因素,其影响来自其特性。燃烧方式也会对燃烧过程产生影响,影响发动机的性能和排放特性。虽然很难确定一种特定的干预手段可以完全解决使用点火压缩发动机所带来的挑战,但燃烧室几何结构的优化往往可以减少排放,提高效率。然而,不同方法的结合将产生巨大的影响。
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