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Model scale investigation of the effect of different speed reduction strategies on cavitating propeller radiated noise

机译:不同减速策略对空化螺洞辐射噪声影响的模型规模调查

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摘要

The continuous development of design tools and analysis procedures has allowed propeller performances to increase progressively during years following more and more stringent design requirements . High propeller efficiency and avoidance of erosive cavitation are considered nowadays basic requests for a well designed propeller. However this may not be enough to meet the requirements of high added value ships such as passengers ships, mega yachts, research vessels, naval vessels etc. These kinds of ship need a propulsion system not only with good efficiency but also with low levels of vibrations and noise transmitted inside the ship and with low underwater radiated noise. Moreover, the above mentioned ships often work in a rather wide range of operational condition. Actually, the possibility to operate at reduced speed regards almost all kinds of ships, due to the increasing attention to fuel consumption andudexhaust gas emissions, and the related tendency towards slow steaming. Speed reduction may be obtained in different ways. Inudthe case of ships equipped with CPPs, in principle it may be achieved reducing RPM at constant pitch or reducing pitch at constant RPM; the latter is usually preferred when a power take off is present. This results in working conditions far from design ones for the propeller; Cavitation and related radiated noise may increase significantly in similar situations, despite the speed reduction is felt to be generally beneficial for the purpose. In this work, the effect of different speed reduction strategies on cavitation and radiated noise is studied by means of cavitation tunnel tests of four CPPs including both single screw and twin screw configurations.
机译:在越来越严格的设计要求之后,设计工具和分析程序的持续开发允许螺旋桨性能在多年来逐步增加。现在考虑高螺旋桨效率和避免腐蚀性空化的基本要求是一款精心设计的螺旋桨。然而,这可能不足以满足乘客船,巨型游艇,研究船只,海军船只等高附加值船舶的要求。这些船舶不仅需要推进系统,不仅具有良好的效率,而且还具有低水平的振动和船内部传输的噪音和低水下辐射噪声。此外,上述船舶通常在相当宽的操作条件下工作。实际上,由于越来越关注燃料消耗和udexhus ust排放,并且 udexhus ust排放的关注以及缓慢蒸汽的相关趋势,可能在减少速度方面运营的可能性。减速可以以不同的方式获得。在 Ud的情况下,配备有CPP的船舶原则上,可以在恒定的俯仰或以恒定的转速减小间距来实现减少RPM;当存在电力消耗时,后者通常是优选的。这导致远离螺旋桨的设计条件;在类似情况下,空化和相关的辐射噪声可能显着增加,尽管感觉到速度速度通常是有益的。在这项工作中,通过四个CPP的四个CPP的空化隧道试验研究了不同减速策略对空化和辐射噪声的影响,包括单螺杆和双螺杆配置。

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