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Experimental Static Cavitation Tunnel for Underwater Marine Propeller Cavitation Study

机译:水下海水螺旋桨空化研究的实验静态空化隧道

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The static cavitation tank set-up and experimental techniques were developed as a compete facility for investigation of underwater marine propeller cavitation flow as presented in this paper. This facility was developed to initiate experimental investigation of underwater marine propellerhydrodynamic with particular emphasis on the modeling and characterizing of propeller thrust and torque performances under cavitating flow. The static cavitation tank, dynamometer, controller, instrumentation and data acquisition were developed as a complete system with the computer aideddesign and engineering application tools. The system was designed for conducting the open-water test to characterize propeller performance (thrust and torque) as well as observation of cavitation phenomenon up to a maximum propeller rotation speed of 1200 RPM. A highly skewed commercial ‘J’outboard marine propeller sample with different pitch distance values (248 mm [9.25×9.75J], 267 mm [9.25×9.75J] and 305 mm [9.25×12J]) were utilized to demonstrate the capability and functional of this developed facility. Experiment found that propeller thrust and torquecharacteristics increases in value along with increasing propeller rotation speed (100 RPM to 1200 RPM), which had conformed to the marine propeller performance convention. Propulsion operation ranging from 700 rpm to 1200 rpm had also satisfied well above the recommended minimum Reynoldsnumber of 5×10~(5) for the flow to simulate a fully turbulent and matching condition of the actual physical model flow. Cavitation and cavitating flow was found to develop on the back section of propeller blade had steadily increased from 800 RPM onwards. Facility drawbacks suchas limitation to zero advanced speed operation condition, maximum propeller rotation of 1200 RPM, pressure and velocity measurement ability and rebounding wave were also highlighted. This low cost and capability limitation facility was developed as a start for enhancing the University underwatermarine propeller research activities.
机译:静态空化罐设置和实验技术被开发为如本文介绍的水下海洋螺旋桨空化流动的竞争设施。该设施是开发的,以便在水下海洋螺旋流程中的实验研究,特别强调在空化流动下的螺旋桨推力和扭矩性能的建模和表征。静态空化罐,测功机,控制器,仪表和数据采集被开发为具有计算机AidedDesign和工程应用工具的完整系统。该系统被设计用于进行开放式水测试,以表征螺旋桨性能(推力和扭矩)以及空化现象的观察到1200rpm的最大螺旋桨转速。具有不同间距距离值的高度倾斜的商业化的商业化船用螺旋桨样品(248 mm [9.25×9.75J],267mm [9.25×9.75J]和305mm [9.25×12j])来证明该能力和这种发达的设施的功能。实验发现,螺旋桨推力和扭矩随着螺旋桨性能序列的增加而增加,随着螺旋桨转速(100 rpm至1200 rpm)的增加而增加。推进操作范围从700 rpm到1200 rpm,在5×10〜(5)的推荐最小reynoldsnumber高于5×10〜(5)的情况下,用于模拟实际物理模型流动的完全湍流和匹配条件。发现空化和空化流动在螺旋桨叶片的后部开发,稳定地从800 rpm向后增加。设施缺点如零高级速度操作条件的限制,最大螺旋桨旋转1200转,压力和速度测量能力和反弹波也被突出显示。这种低成本和能力限制设施是为加强大学的途径螺旋桨研究活动而开发的。

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