首页> 外文OA文献 >Wind tunnel tests on the effect of a ship hull on rudder-propeller performance at different angles of drift
【2h】

Wind tunnel tests on the effect of a ship hull on rudder-propeller performance at different angles of drift

机译:风洞试验船体对不同漂移角度下舵 - 螺旋桨性能的影响

摘要

This report presents the experimental results from a series of wind tunnel tests. The tests investigated the influence of various upstream bodies on the performance of a representative ship rudder-propeller combination for different angle of drift. All the tests were carried in the 3.5m x 2.5m low-speed wind tunnel at the University of Southampton and are an extension to basic rudder-propeller tests which have already been carried out and are reported elsewhere. The model rudders tested were all-movable and the model propeller used was based on a Wageningen B4.40. Rudder forces and moments and propeller thrust, torque and revolutions were measured for all conditions tested. A standard series of flow conditions were used. These were free-stream flow (no propeller present) and tests at propeller open-water advance ratio of J of 0.94, 0.51 and 0.36. For these conditions, forces were measured at rudder angles between -40 degrees and +40 degree. In addition, a select sample of tests were carried out for both larger rudder incidence and for tests in the second quadrant and at a low advance ratio J of 0.17.Three types of test were carried out:1) the rudder-propeller combination alone was tested at drift angles of -15 degrees, -7.5 degrees, +7.5 degrees, and +15 degrees;2) at two angles of drift of -15 degrees and +7.5 degrees, three different lengths of centre-board were place upstream of the rudder-propeller combination to simulate the effect of a thin upstream hull on performance;3) at two angles of drift of -15 degrees and -7.5 degrees a representative ship hull form based on the stern of the Mariner class of vessels was mounted upstream of the rudder-propeller combination to assess the influence of hull thickness.Pressures were measured at 200 locations distributed over the rudder surface for the rudder-propeller combination alone and the results are given as both chordwise pressure distribution for eight spanwise locations and as distributions of spanwise sectional load distributions.The results give an essential insight into the behaviour of flow around the stern of a vessel providing rudder force data for use in more realistic manoeuvring simulations and detailed data for the validation of numerical models of the ship rudder-propeller-hull interaction problem.
机译:该报告介绍了一系列风洞测试的实验结果。该测试研究了各种上游主体对不同漂移角对代表性船舵/螺旋桨组合性能的影响。所有测试均在南安普敦大学的3.5m x 2.5m低速风洞中进行,是对已经进行的基础舵-螺旋桨测试的扩展,并在其他地方进行了报道。所测试的模型舵为全活动式,所使用的模型螺旋桨基于Wageningen B4.40。在所有测试条件下都测量了舵力和力矩以及螺旋桨推力,扭矩和转速。使用标准的一系列流动条件。这些是自由流(不存在螺旋桨),并在螺旋桨开水提前率J为0.94、0.51和0.36时进行测试。对于这些条件,以-40度至+40度的舵角测量力。此外,还选择了一些测试样本,以测试较大的舵发生率和在第二象限中的测试,并以0.17的低推进比J进行测试。进行了三种类型的测试:1)单独使用舵-桨组合在-15度,-7.5度,+ 7.5度和+15度的漂移角下进行测试; 2)在-15度和+7.5度的两个漂移角下,将三种不同长度的中心板放置在方向舵和螺旋桨组合以模拟薄型上游船体对性能的影响; 3)在-15度和-7.5度的两个漂移角处,基于Mariner类船尾的代表性船体形式安装在船体的上游单独测量舵/推进器组合在舵表面分布的200个位置的压力,测量结果为两个翼展方向位置的弦向压力分布结果提供了对船尾周围流动行为的基本了解,提供了舵力数据以用于更现实的操纵仿真和详细数据以验证船舵的数值模型-螺旋桨-船体相互作用问题。

著录项

  • 作者

    Molland A.F.; Turnock S.R.;

  • 作者单位
  • 年度 1995
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号