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Effect of flow rate on electrochemical characteristics of marine material under seawater environment

机译:流速对海水环境下海洋材料电化学特性的影响

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摘要

As interest in the ocean for energy supply increases in various countries around the world, the shipbuilding and offshore industries are showing sharp growth trends. The harbor and offshore structures made of steel piles or sheet piles as components are easily to be corroded because oxygen is smoothly supplied through the thin water films formed by seawater splash. In particular, the supply of dissolved oxygen becomes easier and reaction rate is enhanced as the flow rate increases; as a result, corrosion rates increase. In addition, in marine environments, the seawater flows resulting from the difference between the rise and fall of the tides and ocean currents caused by topographical effects affect the corrosion characteristics of offshore structures. Therefore, in the present study, flow fields were analyzed in the seawater environments through particle image velocimetry (PIV) measurement; the electrochemical characteristics of S355ML steel were evaluated and the corrosion trend of this steel with changes in flow rate was analyzed as well. The results exhibited greater damage as flow rate increased due to the effects of corrosion and physical erosion.
机译:随着世界上各个国家对海洋能源供应的兴趣不断增加,造船和近海工业呈现出急剧的增长趋势。由钢桩或板桩构成的港口和海上结构很容易受到腐蚀,因为氧气是通过海水飞溅形成的薄水膜平稳地供应氧气的。特别地,随着流速的增加,溶解氧的供应变得更容易并且反应速率提高。结果,腐蚀速率增加。另外,在海洋环境中,由于潮汐的上升和下降之间的差异而引起的海水流动以及由地形效应引起的洋流影响了近海结构的腐蚀特性。因此,在本研究中,通过粒子图像测速(PIV)测量分析了海水环境中的流场。评估了S355ML钢的电化学特性,并分析了其随流量变化的腐蚀趋势。由于腐蚀和物理腐蚀的影响,当流速增加时,结果显示出更大的损坏。

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