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Antifouling paint schemes for green SHIPS

机译:绿色船舶防污涂料方案

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Recent advances in antifouling (AF) paints in general prevent fouling in about 95% of the vessel's immersed surface. However the remaining area which amounts to 5% or less of the total area does get fouled. Although this level of fouling has marginal impact on the routine performance of the vessel it is a predominant vector for the transmigration of invasive species which is now a serious environmental concern. Virtually all ocean going vessels are coated with antifouling paints predominant among them are "Self polishing coatings". CFD analysis conducted on various types of vessels have indicated that there are certain "hotspots" where the polishing rates are exceedingly high and would polish the AF paints at a much faster rate and ultimately result in the failure of the AF coating. A possible solution to this issue is to first identify these hotspots and suitable paint schemes/formulations are to be applied in such areas. An experimental procedure utilizing a "drum-test" apparatus can be used to compute the coating thicknesses based on wall shear stresses. Such painting schemes would prevent the premature failure of the AF coating in general and significantly reduce the risk of transmigration of invasive species in particular.
机译:防污(AF)涂料的最新进展通常可以防止约95%的船舶浸没表面结垢。但是,占总面积5%或更少的剩余面积确实会结垢。尽管这种结垢程度对船舶的常规性能影响很小,但它是入侵物种迁移的主要媒介,现在已成为严重的环境问题。实际上,所有远洋船舶都涂有防污涂料,其中主要是“自抛光涂料”。在各种类型的容器上进行的CFD分析表明,某些“热点”的抛光速率非常高,会以更快的速度抛光AF涂料,最终导致AF涂层失效。该问题的可能解决方案是首先确定这些热点,并在此类区域中应用适当的油漆方案/配方。可以使用利用“鼓测试”设备的实验程序来基于壁剪切应力来计算涂层厚度。这样的喷漆方案通常可以防止AF涂层过早失效,尤其可以显着降低入侵物种迁移的风险。

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