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Development and achievement of 'NEO' medium speed diesel engines

机译:“NEO”中速柴油发动机的开发与实现

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The circumstances of medium speed diesel engine have been severe to keep up with the environmental problem such as global warming or IMO regulation. To adapt the market trend, the authors developed a series of Neo medium speed diesel engines, model 22HLX, 28HLX and 34HLX. This paper describes design features, development processes and principal inspection results of these engines. On the development, extensive cost analysis of existing engines was made to realize extremely low cost/output rate. Performance simulation, FEM analysis, 3D module planning and component tests were also carried out. As the result, the engines having high reliability and friendly handling with advantageous performance were developed. These engines achieved high output with increasing power rate (24.5MPa m/s) as the product of high brake mean effective pressure (2.45MPa) and increased mean piston speed (10m/s). High thermal efficiency was achieved by prolonged piston stroke, soft-Miller-cycle and high performance radial turbocharger. Lightweight mono-block piston and compound oil-groove big-end bearing, for example, were the key components to realize such high output engines. Concurrent engineering and virtual factory production were applied by means of unity administration of allied factories. First productions were successfully launched from 1998 to 1999, and the longest running hours reached over 18000 hours in October of 2001. The FOC, LOC and exhaust gas temperature was at low level as expected. At the first principal inspection, the piston top land and piston ring grooves were far clean rather than previous engines. Piston and cylinder liner condition was perfect.
机译:中速柴油发动机的情况一直严重,以跟上全球变暖或IMO调节等环境问题。为了适应市场趋势,作者开发了一系列新速柴油发动机,22HLX,28HLX和34HLX。本文介绍了这些发动机的设计特征,开发过程和主要检查结果。在发展中,对现有发动机的广泛成本分析实现了极低的成本/产量/输出率。还进行了性能模拟,有限元分析,3D模块规划和组件测试。结果,开发了具有高可靠性和友好性能的发动机,具有有利性能。这些发动机以较高的功率(24.5MPa m / s)实现高输出,因为高制动器的产品平均有效压力(2.45MPa)和增加的平均活塞速度(10m / s)。通过延长活塞行程,软铣床和高性能径向涡轮增压器实现高热效率。例如,轻量级单块活塞和复合油槽大端轴承是实现这种高输出发动机的关键部件。并发工程和虚拟工厂生产是通过联合盟由工厂的统一管理。首先从1998年到1999年成功推出了第一个制作,最长的时间是2001年10月18000多小时达到了超过18000小时。FOC,LOC和废气温度在较低的水平上。在第一个主要检查中,活塞顶部和活塞环槽距离最小,而不是先前的发动机。活塞和气缸套件是完美的。

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