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Experimental study on bow flow field of scientific research ship based on flow visualisation

机译:基于流量可视化的科学研究船舶弓流场的实验研究

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摘要

To investigate the bubble sweep-down phenomenon of a scientific research ship from the perspective of its flow mechanism, the flow-field characteristics of the bow were measured in a towing-tank environment. First, the silkthread method was used to visualise the streamline characteristics of the bow. Next, the flow field of the bow was measured using multiple two-section 2-dimensional computed tomography scans with stereoscopic particle image velocimetry. The flow-field information of different sections at different speeds (e.g., velocity distribution, vector characteristics, and streamline distribution) were then obtained. A 3-dimensional (3D) three-component (3C) space reconstruction of the time-averaged flow field in the bow was thus realised. From the visualisation results, the flow field in the bow generally exhibits a downward movement trend. The flow structure of the bow flow field was found to be closely related to the wave-making change of the bow. On the other hand, the crosssectional flow characteristics and 3D reconstruction results showed that with the bubble sweep-down, some bubbles flowed along the bilge and amassed with other bubbles, breaking through the geometric inflection point of the bilge. Compressed by the bilge vortex, they slid backward and affected the operation of acoustic equipment.
机译:为了从流量机构的角度研究科学研究船的气泡扫描现象,在牵引罐环境中测量弓的流场特性。首先,使用纯丝线方法来可视化弓的流线特征。接下来,使用具有立体粒子图像速度计量法的多个两部分二维计算断层扫描测量弓的流场。然后获得不同速度(例如,速度分布,矢量特性和流线分布)的不同部分的流场信息。因此,实现了弓中的时间平均流场的三维(3D)三分(3C)空间重建。根据可视化结果,弓中的流场通常呈现向下运动趋势。发现弓流场的流动结构与弓的波动变化密切相关。另一方面,横截面流动特性和3D重建结果表明,随着气泡扫描,一些气泡沿着舱底流动并与其他气泡散,突破舱底的几何拐点。被胆汁涡旋压缩,它们向后滑动并影响声学设备的操作。

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