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Numerical study of propulsion system performance during ship acceleration

机译:船舶加速过程中推进系统性能的数值研究

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摘要

Ship acceleration manoeuvre is important in terms of safety and engine performance. Head seaways are one of the most challenging conditions for the ship propulsion. A detailed simulation of the propulsion system's transient response during dynamic acceleration in harsh conditions can result in a thorough investigation of the engine performance, a better management of control system and the monitoring of engine limiters application in real conditions. For the overall propulsion system performance assessment during ship acceleration, a computational tool has been developed that consists of a number of sub-systems for the simulation of engine, turbocharger, propeller components and their interaction. The developed tool has been first validated against available shop and sea trials data and subsequently it has been tested for the simulation of propulsion system performance during acceleration in dynamic conditions. Based on the simulation results, a sensitivity analysis has been performed for the investigation of the governor control unit limiters that apply on the engine during acceleration. As a result, the effect of engine governor limiters on the overall engine and hydrodynamic performance of the ship during acceleration is quantified and discussed.
机译:就安全性和发动机性能而言,船舶加速操纵很重要。头部航道是船舶推进中最具挑战性的条件之一。在恶劣条件下动态加速过程中,对推进系统瞬态响应的详细仿真可以对发动机性能进行全面研究,对控制系统进行更好的管理,并在实际条件下监控发动机限制器的应用。为了评估船舶加速过程中的总体推进系统性能,已开发了一种计算工具,该工具由许多子系统组成,用于仿真发动机,涡轮增压器,螺旋桨组件及其相互作用。首先,已针对现有的车间和海上试验数据验证了该开发工具,然后对其进行了测试,以模拟动态条件下加速期间的推进系统性能。根据仿真结果,进行了灵敏度分析,以研究在加速期间应用于发动机的调速器控制单元限制器。结果,量化并讨论了发动机限速器限制器在加速过程中对整个发动机和船舶流体动力性能的影响。

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