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Spatial Distribution of Wave Pressures on Seawave Slot-Cone Generator

机译:海浪槽锥发电机波压的空间分布

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摘要

This paper presents results on loading acting on an innovative caisson breakwater for electricity production. The work reported here is part of the European Union Sixth Framework programme priority 6.1 (Sustainable Energy System), contract 019831, titled "Full-scale demonstration of robust and high-efficiency wave energy converter" (WAVESSG). Information on wave loadings acting on Wave Energy Convert (WEC) Seawave Slot-Cone Generator (SSG) exposed to extreme wave conditions are reported. The SSG concept is based on the principle of overtopping and storing the wave energy in several reservoirs placed one above the other. Comprehensive 2D and 3D wave tank model tests were carried out at the Department of Civil Engineering, Aalborg University (Denmark) in the 3D deep water wave tank. The model scale used was 1:60 of the SSG prototype at the planned location of a pilot plant at the west coast of the island Kvitsøy near Stavanger, Norway. The research study is intended to be of direct use to engineers analyzing design and stability of the pilot plant.
机译:本文介绍了作用在创新型沉箱防波堤上的电力生产结果。此处报告的工作是欧盟第六框架计划优先级6.1(可持续能源系统),合同019831的一部分,标题为“鲁棒和高效波能转换器的全面演示”(WAVESSG)。报告了作用在暴露于极端波浪条件下的波浪能转换(WEC)海浪槽锥发电机(SSG)上的波浪载荷信息。 SSG的概念是基于波能的叠加原理,并将波能存储在一个位于另一个之上的储层中。在奥尔堡大学(丹麦)土木工程系的3D深水波箱中进行了全面的2D和3D波箱模型测试。在挪威斯塔万格附近的Kvitsøy岛西海岸的一个试验工厂的计划位置,所使用的模型比例为SSG原型的1:60。该研究报告旨在直接用于分析试验工厂的设计和稳定性的工程师。

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