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Numerical study of a marine dual-fuel four-stroke engine

机译:船用双燃料四冲程发动机的数值研究

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摘要

Continuously increasing environmental demands in conjunction with the planned strong penetration of the LNG, render the use of LNG as an attractive alternative marine fuel. In this framework, the traditional ship propulsion plants based on Diesel engines running with HFO, should be revisited and compared to the more efficient and environmentally friendly propulsion systems that use dual fuel engines. The present study deals with the computational investigation of a marine four-stroke dual fuel (DF) engine, in both diesel and DF mode operation. The engine model was set up in a commercial software and used to compare the performance and emissions of the investigated engine operation at steady state conditions. The engine diesel mode was initially set up and the model was calibrated to adequately represent the engine operation. Subsequently, the engine dual fuel model was set up by considering the injection of two different fuels; methane and pilot diesel fuel. The derived results were analysed for revealing the differences of the engine performance and emissions at each engine mode. In addition, the turbocharger matching at each mode is investigated revealing the challenges due to the completely different air-fuel ratio strategies used in diesel and dual fuel modes, re-spectively.
机译:不断增长的环境需求以及计划中的液化天然气的强劲渗透,使得液化天然气成为一种有吸引力的船用替代燃料。在这种框架下,基于HFO的柴油发动机的传统船舶推进装置应该重新研究,并与使用双燃料发动机的更高效,更环保的推进系统进行比较。本研究涉及柴油和DF模式操作的船用四冲程双燃料(DF)发动机的计算研究。发动机模型是在商业软件中设置的,用于比较稳态条件下所研究发动机的性能和排放。最初设置了发动机柴油模式,并对其进行了校准以充分代表发动机的运行状态。随后,通过考虑两种不同燃料的喷射建立了发动机双燃料模型。甲烷和引燃柴油。对得出的结果进行了分析,以揭示每种发动机模式下发动机性能和排放的差异。此外,研究了每种模式下的涡轮增压器匹配情况,揭示了由于分别用于柴油和双燃料模式的空燃比策略而带来的挑战。

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