柴电联合动力船舶辅助应急驱动运动功率确定特点

A. Rak, V. Busher, O. Glazeva
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摘要

目的。本文比较了在船舶低速时辅助应急模式下船舶电动运动参数的传统计算方法与另一种计算方法,由于不需要使用大量的图表来确定船舶的阻力,因此进行了简化。但以一艘容量为16000个集装箱、主机容量为61776千瓦的集装箱船、一台发动机模式下容量高达6兆瓦的同步机、3台发电容量为3187千瓦的柴油发电机为例,按简化方法计算,可获得的功率增加39%。船舶在电动运动模式下的运行经验——在这种模式下,柴油发电机在船舶上的负荷约为计算所得的70%。因此,在升级推进系统或设计新船时,建议将两种柴油机在主机最小稳定转速极限下的功率计算结果进行比较,并选择结果中较大的那个。方法。根据已知的近似多项式对该公司低速和高速柴油机在辅助应急运行时的比油耗和绝对油耗进行了比较,结果表明,在高速柴油发电机MAK8M32S运行时,燃油消耗降低了24%,然后在维护主机12 RTflex-96C (WÄRTSILÄ-SULZER)时。结果。因此,采用电动运动可以节省主机的发动机功率,降低油耗。在大多数海上运输船上都观察到这一比率。考虑到柴油发电机几乎以最佳负荷运行,而主发动机处于空闲状态,电动运动可以显著减少向大气中排放的有害物质。后者也适用于同步发动机位于主机后面的船舶,尽管在这种情况下,燃料消耗增加了32%。图9,表6,参考文献15。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
FEATURES OF POWER DETERMINATION OF AUXILIARY-EMERGENCY DRIVE MOTION OF A SHIP WITH A COMBINED DIESEL-ELECTRIC POWER PLANT
Purpose. The paper compares the traditional method of calculating the parameters of electric motion of ships in auxiliary emergency modes at low speeds of the vessel with another, simplified because it does not require the use of a large number of diagrams to determine the resistance of the vessel. But according to a simplified method for this example – a container ship with a capacity of 16,000 containers with the main engine capacity of 61776 kW, a synchronous machine with a capacity of up to 6 MW in engine mode, and three diesel generators with an electric capacity of 3187 kW – 39 % more power is obtained. Own experience of operation of the vessel in modes with electric movement – loading of diesel generators in this mode on the vessel about 70 % that is received by calculations. Thus, when upgrading the propulsion system or designing new vessels, it is advisable to compare the results of two calculations of the power of diesel generators at the limit of the minimum stable speed of the main engine and choose the larger of the results. Methodology. Comparison of specific and absolute fuel consumption, made on the basis of known approximation polynomials for low- and high-speed types of diesel of the company at auxiliary emergency movement shows that at the movement from high-speed diesel generators MAK8M32S fuel consumption decreases by 24 %, then at the maintenance of the main engine 12 RTflex-96C from WÄRTSILÄ-SULZER. Results. Therefore, the use of electric motion allows you to save engine power of the main engine, reduce fuel consumption. This ratio is observed on most maritime transport vessels. And given that diesel generators operate at almost optimal load, and the main engine – at idle, electric motion provides a significant reduction in harmful emissions into the atmosphere. The latter is also true for a ship where the synchronous engine is located behind the main engine, although fuel consumption, in this case, increases by 32 %. Figures 9, tables 6, references 15.
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