受限水域船体区水流紊动特性PIV试验研究*
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广西科技计划项目(桂科AA23062023)


PIV experiment on turbulent characteristics of hull area flow in restricted waters
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    摘要:

    船舶在受限水域中航行时,由于水深较浅、水面较窄,水流结构十分复杂。基于粒子图像测速系统(PIV)水槽试验,研究受限水域船体周围的紊动特性,探讨纵向紊动强度Tux、雷诺应力τ、紊动能k的分布特征以及随断面系数的变化规律。结果表明:船首中剖面的纵向紊动强度Tux和紊动能 k 均受船体边壁影响,最大值集中在水槽底部及船底附近,雷诺应力τ最大值出现在水槽近底处,在船首水面及船底附近为负值;船前区Tux和k从水槽底部向水面递减,τ 沿垂向先增大后减小;船尾回流区形成长椭圆形 Tux和 k 高值区及τ的负值区并向下游扩散。随断面系数增大,Tux、τ 和 k 的高值范围及τ的负值范围均减小,k的拐点位置上移;增大断面系数可显著减弱船体对水流的挤压效应,减小水流受船体形状的影响,湍流动量传递与交换作用减弱,局部高强度紊动降低,增加流场稳定性。

    Abstract:

    When ships navigate in restricted waters, the water flow structure is very complex due to shallow water depth and narrow water surface.The turbulent characteristics around the hull in restricted waters are studied on the basis of particle image velocimetry(PIV)flume experiment, and the distribution characteristics of longitudinal turbulence intensity Tux, Reynolds stress τ, turbulence kinetic energy k, and their variation with cross-section coefficient are explored.The results show that the longitudinal turbulence intensity Tux and turbulence kinetic energy k of the mid-section of the bow are both affected by the hull walls, with the maximum values concentrated at the bottom of the water flume and near the bottom of the ship.The maximum Reynolds stress τ occurs near the bottom of the flume, and is negative at the bow surface and near the bottom of the ship.Tux and k in the front area of the ship decrease from the bottom of the water flume towards the water surface, and τ first increases and then decreases vertically.The stern reflux zone forms a long elliptical shape with high values of Tux and k, as well as negative values of τ, and diffuses downstream.As the cross-section coefficient increases, the high and negative ranges of Tux, τ, and k decrease, and the inflection point of k shifts upward.Increasing the cross-section coefficient can significantly reduce the squeezing effect of the hull on the flow, reduce the influence of the hull shape on the flow, weaken the turbulent momentum transfer and exchange, reduce local high-intensity turbulence, and increase the stability of the flow field.

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梁伟坤,钟 亮,汪贤瑶,等.受限水域船体区水流紊动特性PIV试验研究*[J].水运工程,2025(10):138-147.

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  • 在线发布日期: 2025-10-20
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