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A Method to Scale the Roughness of Submarine Nonskid Coatings on a Free-Running Model for Maneuvering Experiments

机译:在机动实验的自由运行模型上缩放海底防滑涂层粗糙度的方法

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摘要

A portion of the upper-deck surface of a submarine can be coated with roughness for crew safety when walking on the hull. The roughness factor for the nonskid coating on a full-scale submarine is very large, on the order of 400 under typical ship operation conditions. Boundary layer development, flow separation, cross-flow drag, hull surface pressure, and ship motion may be modified by the presence of this coating during turning maneuvers. Free-running model (FRM) submarines are routinely employed by the Naval Surface Warfare Center to characterize submarine maneuvering behavior, and the application of an appropriately sized nonskid coating to the model is required for fidelity of model maneuvering experiments. Three methods to scale the coating have been investigated, and conventional geometric scaling and wall shear velocity scaling methods were found to be inadequate. A new scaling method termed the momentum boundary layer thickness (MBLT) method has been developed. This method relates the cross-flow drag on the FRM with that on the full-scale vehicle. Boundary layer velocity profiles on an axisymmetric body at model and full-scale Reynolds numbers have been computed by a RANS code. Velocity profiles encountered by the full-scale nonskid coating are found to match well with those developed on the FRM with roughness sized using the MBLT method. The scaled roughness size compares favorably with two empirically determined roughness sizes that have been previously used on FRMs that have shown good correlation with full-scale maneuvering data.
机译:潜艇的上甲板表面的一部分可以涂上粗糙物,以确保船员在船体上行走时的安全。全尺寸潜艇上的防滑涂层的粗糙度系数非常大,在典型的船舶操作条件下约为400。边界层发展,流动分离,横流阻力,船体表面压力和船舶运动可通过在转向操纵过程中存在该涂层而得到改变。海军水面作战中心通常采用自由运行型(FRM)潜艇来表征潜艇的机动行为,为保真地进行模型机动实验,需要在模型上施加适当尺寸的防滑涂层。已经研究了三种缩放涂层的方法,并且发现传统的几何缩放和壁切速度缩放方法是不适当的。已经开发出一种新的缩放方法,称为动量边界层厚度(MBLT)方法。该方法将FRM上的横流阻力与全尺寸车辆上的横流阻力联系起来。在模型和全尺寸雷诺数下,轴对称体上的边界层速度分布已通过RANS代码进行了计算。发现全尺寸防滑涂层遇到的速度曲线与使用MBLT方法测量的粗糙度尺寸与FRM上开发的速度曲线非常匹配。缩放后的粗糙度大小可与两个经验确定的粗糙度大小相比较,后者是先前在FRM上使用的,它们已显示出与满量程操纵数据的良好相关性。

著录项

  • 来源
    《Journal of Ship Research》 |2011年第1期|p.64-69|共6页
  • 作者

    Young T. Shen; David E. Hess;

  • 作者单位

    Naval Surface Warfare Center, Code5700, 9500 MacArthur Blvd., West Bethesda, Maryland 20817-5700;

    Naval Surface Warfare Center, Code 5600, 9500 MacArthur Blvd., West Bethesda, Maryland 20817-5700;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    submersibles; coatings; model testing; maneuvering;

    机译:潜水器涂料;模型测试;机动;
  • 入库时间 2022-08-18 01:36:48

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