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在增强型平面通道流槽中对大型平板的摩擦阻力进行测量。

Frictional drag measurements of large-scale plates in an enhanced plane channel flowcell.

机构信息

School of Engineering, Marine, Offshore & Subsea Technology Group, Newcastle University, Newcastle upon Tyne, UK.

Department of Naval Architecture, Ocean and Marine Engineering, University of Strathclyde, Glasgow, UK.

出版信息

Biofouling. 2020 Feb;36(2):169-182. doi: 10.1080/08927014.2020.1742887. Epub 2020 Apr 1.

Abstract

This paper describes the design of an enhanced, plane channel, flowcell and its use for testing large-scale coated plates (0.6 m × 0.22 m) in fully developed flow, over a wide range of Reynolds numbers, with low uncertainty. Two identical, hydraulically smooth plates were experimentally tested. Uniform biofilms were grown on clean surfaces to test skin friction changes resulting from different biofilm thickness and densities. A velocity survey of the flowcell measurement section, using laser Doppler anemometry, showed a consistent velocity profile and low turbulence intensity in the central flow channel. The skin friction coefficient was experimentally determined using a pressure drop method. Results correlate closely to previously published regression data, particularly at higher speeds. Repeated measurements indicated very low uncertainty. This study demonstrates this flowcell's applicability for representing consistent frictional drag of ship hull surfaces, enabling comparability of hydrodynamic drag caused by surface roughness to the reference surface measurements.

摘要

本文描述了一种增强型平面通道流动池的设计及其在充分发展的流动条件下,以低不确定度测试大面积涂层板(0.6 m×0.22 m)的用途。对两块相同的水力光滑板进行了实验测试。在清洁表面上生长均匀的生物膜,以测试不同生物膜厚度和密度引起的摩擦阻力变化。使用激光多普勒测速仪对流动池测量段进行了速度测量,结果表明在中心流道中存在一致的速度分布和低湍流强度。通过压降法实验确定了摩擦阻力系数。结果与先前发表的回归数据非常吻合,尤其是在较高速度下。重复测量表明不确定性非常低。本研究证明了该流动池在代表船体表面一致摩擦阻力方面的适用性,使得由于表面粗糙度引起的水动力阻力与参考表面测量值具有可比性。

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