首页> 外文会议>MTS/IEEE Charleston OCEANS Conference >The Corrosion and Biofouling Characteristics of Sealed vs. Perforated Offshore Monopile Interiors Experiment Design Comparing Corrosion and Environment Inside Steel Pipe
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The Corrosion and Biofouling Characteristics of Sealed vs. Perforated Offshore Monopile Interiors Experiment Design Comparing Corrosion and Environment Inside Steel Pipe

机译:密封与穿孔近海单桩内饰的腐蚀与生物污损特性比较钢管内部腐蚀与环境的实验设计

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Internal corrosion, chemistry and biofouling inside partially submerged hollow steel pipes are evaluated. Watertight pipes with stagnant water inside are compared to pipes with holes that allow circulation with the surrounding seawater.This experiment investigates the issue of whether perforated steel towers could be an improved design for steel monopiles that are presently used for shallow water offshore wind structures. By adding holes to the structure walls, surrounding seawater will consistently flush the internal space. This will create a habitat for marine life, and cathodic protection can be applied to protect the interior steel as it is applied to the external surface. Perforations could provide a potential solution for future designs and preliminary measurements have demonstrated significant differences in water chemistry and corrosion.
机译:对部分浸入空心钢管内的内部腐蚀,化学和生物污垢进行了评估。将内部停滞的水密管与允许周围海水循环的带孔的管进行比较。本实验研究了多孔钢塔是否可以作为目前用于浅水海上风电结构的钢单桩的改进设计的问题。通过在结构壁上增加孔,周围的海水将持续冲洗内部空间。这将为海洋生物创造一个栖息地,并且当将其应用于外表面时,可采用阴极保护来保护内部钢材。穿孔可以为将来的设计提供潜在的解决方案,初步测量表明水化学和腐蚀方面存在显着差异。

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