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Matching Forces Applied in Underwater Hull Cleaning with Adhesion Strength of Marine Organisms

机译:在水下船体清洗中施加的匹配力与海洋生物的附着力

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Biofouling is detrimental to the hydrodynamic performance of ships. In spite of advances in hull coating technology, a ship must usually undergo underwater hull cleaning to remove biofouling during her in-service time. However, some cleaning practices may also lead to decreased lifetime of the fouling-control coating. Therefore, cleaning forces should be minimized, according to the adhesion strength of marine organisms present on the hull. In this article, values of adhesion strength found in available literature are discussed in the light of current knowledge on hull cleaning technology. Finally, the following knowledge gaps are identified: (1) data on adhesion strength of naturally-occurring biofouling communities are practically absent; (2) shear forces imparted by current cleaning devices on low-form fouling (microfouling) and corresponding effects on hull coatings are largely unknown. This knowledge would be valuable for both developers and users of cleaning technology.
机译:生物污染对船舶的水动力性能有害。尽管船体涂层技术有所进步,但船舶通常必须在服役期间进行水下船体清洁以清除生物污垢。但是,某些清洁方法也可能导致防垢涂层寿命缩短。因此,应根据船体上存在的海洋生物的粘附强度将清洁力降至最低。在本文中,将根据有关船体清洁技术的最新知识来讨论可利用文献中发现的粘附强度值。最后,确定了以下知识差距:(1)几乎没有关于自然发生的生物污染群落的粘附强度的数据; (2)目前尚不清楚由目前的清洁设备对低型污垢(微污垢)施加的剪切力以及对船体涂层的相应影响。这些知识对于清洁技术的开发者和使用者都是有价值的。

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