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THE APPLICATION OF CAISSON-TYPE SOLUTIONS TO THE CURRENT OFFSHORE WIND ENERGY MARKET

机译:沉箱型解决方案在当前海上风电市场中的应用

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The current offshore wind energy market is not only focused on the design of WTG foundations, but also on the design of offshore infrastructures that lead to an improvement in the current grid connection system, such as artificial islands. For all these type of projects, caisson-type solutions can be applied with numerous advantages. The present article present three different projects in which caisson-type solutions were used: the foundation of a WTG (Gravi3® patent) in the Portuguese Coast, the foundation of a meteorological mast installed in Scotland and the design of an artificial island in the North Sea. The main advantage of this solution is the well-developed construction principle to build the caissons, which is based in the employ of a floating dock in a shelter area. As the caissons are cellular elements, the interior is empty; they float, so they are transported to the place in question to be deployed by means of filling with water the cells that comprised the caisson. This technology is rather used in Spain, being most of the kilometres of breakwater built using caissons thank to their high production rates. The three examples that will be presented in the article are proof of the versatility of this solution. Whereas the case of Gravi3® consists in a gravity based solution for WTQ which is comprised of 3 circular caissons connected by means of a steel tripod; the meteorological mast is formed by a rectangular caisson and a steel shaft. Finally, the artificial island is a mixed solution that uses caissons in the perimeter and hydraulic filling in the inner part. Furthermore, these solutions could be also applied in ports, integrating the WTG on the current or future dikes.
机译:当前的海上风能市场不仅集中在WTG基础的设计上,而且集中在海上基础设施的设计上,这些设计导致了当前的电网连接系统(如人工岛)的改善。对于所有这些类型的项目,都可以使用沉箱式解决方案,并具有许多优势。本文介绍了使用沉箱式解决方案的三个不同项目:葡萄牙海岸WTG(Gravi3®专利)的基础,苏格兰安装的气象桅杆的基础以及北部人工岛的设计海。该解决方案的主要优点是完善的构造沉箱的构造原理,其基础是在避难所中使用浮船坞。由于沉箱是蜂窝状元素,因此内部是空的。它们漂浮,因此它们通过装满构成沉箱的细胞,被运送到相关地点进行部署。该技术相当在西班牙使用,由于其高生产率,大部分时间都是使用沉箱建造的防波堤。本文将介绍的三个示例证明了该解决方案的多功能性。而Gravi3®的情况在于WTQ的基于重力的解决方案,该解决方案由3个通过钢三脚架连接的圆形沉箱组成;气象桅杆由矩形沉箱和钢制杆身组成。最后,人工岛是一种混合解决方案,其外围使用沉箱,内部采用液压填充。此外,这些解决方案也可以应用于港口,将WTG集成到当前或将来的堤坝上。

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