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The influences of the engine design and operating parameters on the performance of a turbocharged and steam injected diesel engine running with the Miller cycle

机译:发动机设计和运行参数对以米勒循环运行的涡轮增压和蒸汽喷射柴油发动机的性能的影响

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摘要

This study reports the influences of the engine design and operating parameters on the performance of a turbocharged, steam injected and Miller cycle diesel engine by using a simulation model based on the finite-time thermodynamics. The model is validated with experimental data and the effects of various engine design and operating parameters such as cycle temperature ratio, cycle pressure ratio, friction coefficient, engine speed, mean piston speed, stroke length, inlet temperature, inlet pressure, equivalence ratio, compression ratio, steam ratio, retarding angle and bore-stroke length ratio on the effective power and effective efficiency are investigated. Furthermore, the energy losses originating from incomplete combustion, friction, heat transfer and exhaust output are demonstrated by using figures. The results show that the engine performance increases with increasing some parameters such as cycle temperature ratio, cycle pressure ratio, inlet pressure; with decreasing some parameters such as friction coefficient, inlet temperature, steam ratio, retarding angle of intake valve closing. However, the engine performance could increase or decrease with respect to different conditions for some parameters such as engine speed, mean piston speed, stroke length, equivalence ratio and compression ratio.
机译:通过基于有限时间热力学的仿真模型,本研究报告了发动机设计和运行参数对涡轮增压,蒸汽喷射和米勒循环柴油机性能的影响。该模型已通过实验数据以及各种发动机设计和运行参数(例如循环温度比,循环压力比,摩擦系数,发动机速度,平均活塞速度,冲程长度,进气温度,进气压力,当量比,压缩比)的影响进行了验证。考察了蒸汽比,蒸汽比,减速角和缸径长度比对有效功率和有效效率的影响。此外,使用数字说明了由于不完全燃烧,摩擦,传热和排气输出引起的能量损失。结果表明,发动机性能随着循环温度比,循环压力比,进气压力等参数的增加而提高。降低一些参数,例如摩擦系数,入口温度,蒸汽比,进气门关闭延迟角。然而,对于某些参数,例如发动机速度,平均活塞速度,冲程长度,当量比和压缩比,发动机性能可能相对于不同条件而增加或降低。

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