Fisheries Research Vessel hydrodynamic design minimizing bubble sweepdown

G. Karafiath, J. Hotaling, J. Meehan
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引用次数: 4

Abstract

The authors review the need for a quiet fisheries research ship to protect and maintain fish stocks and marine mammals. The ship design, construction, and acquisition processes are presented in overview. The main mission of the Fisheries Research Vessel (FRV) depends greatly on acoustic sensor performance. A major concern in achieving maximum efficiency from modern acoustic sounders is the reduction of bubbles and the control of bubble sweepdown patterns that flow over the acoustic sensors. Design efforts related to problems on earlier ships are reviewed, including the extensive efforts undertaken to minimize bubble sweepdown on the T-AGS 60 PATHFINDER Class. The authors describe the application of earlier US Navy work to the design of NOAA's FRV 40 and how the design takes advantage of many previous hydrodynamic and ship design developments. A discussion of subsequent model tests to verify the design is included.
渔业研究船的水动力设计,最大限度地减少气泡的扫掠
作者回顾了需要一艘安静的渔业研究船来保护和维持鱼类资源和海洋哺乳动物。舰艇设计、建造和采购过程概述。渔业科考船(FRV)的主要任务很大程度上取决于声传感器的性能。现代声波探测仪实现最大效率的一个主要问题是减少气泡和控制流过声波传感器的气泡扫掠模式。对早期舰船上出现的问题进行了设计,包括为尽量减少T-AGS 60 PATHFINDER级上的气泡扫掠所做的大量努力。作者描述了美国海军早期工作在NOAA FRV 40设计中的应用,以及该设计如何利用许多先前的水动力和船舶设计发展。讨论了后续的模型试验,以验证设计。
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