Performance, emissions, and combustion characteristics of methane-diesel dual-fuel engines: A review

G. Tripathi, A. Dhar
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引用次数: 2

Abstract

Methane is a popular alternative fuel for internal combustion engines due to its availability in many forms such as methane hydrates, natural gas, biogas, compressed natural gas, liquid natural gas, synthetic natural gas, and pipe natural gas. Methane can be effectively used in existing diesel engines in dual-fuel mode with few modifications. Dual-fuel technology helps bridge existing conventional fuel and alternative gaseous fuel-powered conventional engines. The properties of methane, including its higher calorific value, abundant diffusion, and wider flammability limit make it a suitable fuel for improving the performance of compression ignition engine in dual-fuel mode. Methane-diesel dual-fuel engines are an effective technology for reducing vehicle pollution and partially replacing conventional fuels for transport applications. Therefore, a comprehensive review is needed to document the various pathways for the utilization of methane in dual-fuel engines. This study critically compared the combustion, noise, performance, and emission characteristics of various methane-fueled engines to identify the current challenges and future perspectives for the synergistic use of methane to reduce emissions from internal combustion engines.
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甲烷-柴油双燃料发动机的性能、排放和燃烧特性综述
甲烷是一种受欢迎的内燃机替代燃料,因为它有多种形式,如甲烷水合物、天然气、沼气、压缩天然气、液化天然气、合成天然气和管道天然气。甲烷可以在现有的柴油发动机中有效地利用,在双燃料模式下,很少修改。双燃料技术有助于弥合现有的传统燃料和替代气体燃料驱动的传统发动机。甲烷具有较高的热值、丰富的扩散和较宽的可燃性,是改善双燃料模式下压缩点火发动机性能的理想燃料。甲烷-柴油双燃料发动机是一种有效的减少车辆污染和部分替代传统燃料在运输应用的技术。因此,需要对双燃料发动机中利用甲烷的各种途径进行全面的审查。本研究严格比较了各种甲烷燃料发动机的燃烧、噪音、性能和排放特性,以确定当前的挑战和未来的前景,协同使用甲烷来减少内燃机的排放。
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