Fluid-Structure-Soil Interaction of a Moored Wave Energy Device

J. Tom, D. Rijnsdorp, R. Ragni, D. White
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引用次数: 3

Abstract

This paper explores the response of a wave energy device during extreme and operational conditions and the effect of this response on the geotechnical stability of the associated taut moorings. The non-hydrostatic wave-flow model SWASH is used to simulate the response of a taut-moored wave energy converter. The predicted forces acting on the mooring system are used to compute the build-up of excess pore pressures in the soil around the mooring anchor and the resulting changes in strength and capacity. An initial loss of strength is followed by a subsequent increase in capacity, associated with long-term cyclic loading and hardening due to consolidation. The analyses show how cyclic loading may actually benefit and reduce anchoring requirements for wave energy devices. It demonstrates the viability of a close interdisciplinary approach towards an optimized and cost-effective design of mooring systems, which form a significant proportion of expected capital expenditures.
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系泊波能装置的流固土相互作用
本文探讨了波浪能装置在极端和工作条件下的响应,以及这种响应对相关系泊的岩土稳定性的影响。采用非静水波流模型SWASH模拟了系泊波浪能转换器的响应。预测作用在系泊系统上的力用于计算系泊锚周围土壤中超孔隙压力的积累以及由此产生的强度和容量变化。最初的强度损失伴随着随后的容量增加,这与长期循环加载和固结硬化有关。分析表明,循环荷载实际上可能有利于并减少对波浪能装置的锚固要求。它证明了一个紧密的跨学科方法的可行性,以优化和具有成本效益的系泊系统设计,这构成了预期资本支出的很大一部分。
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