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首页> 外文期刊>Journal of engineering thermophysics >Constructal Design Applied to the Geometric Evaluation of an Oscillating Water Column Wave Energy Converter Considering Different Real Scale Wave Periods
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Constructal Design Applied to the Geometric Evaluation of an Oscillating Water Column Wave Energy Converter Considering Different Real Scale Wave Periods

机译:考虑到不同实际刻度波期的振荡水柱波能量转换器的几何评估应用构造设计

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摘要

The present work presents numerical study of the influence of geometry on the performance of an oscillating water column (OWC) wave energy converter by means of a constructal design. The main purpose is to maximize the root mean square hydrodynamic power of device, (P (hyd))(RMS), subject to several real scale waves with different periods. The problem has two constraints: hydropneumatic chamber volume (V (HC) ) and total OWC volume (V (T) ), and two degrees of freedom: H (1)/L (ratio of height to length of the hydropneumatic chamber) and H (3) (OWC submergence). For the numerical solution it was used a computational fluid dynamic (CFD) code, based on the finite volume method (FVM). The multiphasic volume of fluid (VOF) model is applied to tackle with the water-air interaction. The results led to important theoretical recommendations about the design of OWC device. For instance, the best shape for OWC chamber, which maximizes the (P (hyd))(RMS), was achieved when the ratio (H (1)/L) was four times higher than the ratio of height to length of incident wave (H/lambda), (H (1)/L) (o) = 4(H/lambda). Moreover, the optimal submergence (H (3)) was achieved as a function of wave height (H) and water depth (h), more precisely given by the following relation: h - (3H/4) (H (3)) (o) = h.
机译:本作者介绍了几何形状对通过构造设计振荡水柱(OWC)波能转换器的性能的影响的数值研究。主要目的是最大化装置的根均方水动力功率,(P(HYP))(RMS),受几个不同时段的几个真实刻度波。该问题具有两个约束:液压气体室体积(V(HC))和总OWC体积(V(T))和两度自由度:H(1)/ L(液压气室的长度的比例)和H(3)(OWC淹水)。对于数值解决方案,它基于有限体积法(FVM)使用计算流体动态(CFD)代码。施用流体(VOF)模型的多相体积以用水 - 空气相互作用。结果导致了关于OWC设备设计的重要理论建议。例如,当比率(H(1)/ L)高于与入射波的高度的比率高四倍时,实现了OWC室的最大形状(h / lambda),(h(1)/ l)(o)= 4(h / lambda)。此外,作为波高(H)和水深(H)的函数实现了最佳潜水(H(3)),通过以下关系更精确地提供:H - (3H / 4)(H(3)) (o)& = h。

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    Inst Fed Parana IFPR Programa Posgrad Ciencia Tecnol &

    Sociedade PPGCT Campus Paranagua Paranagua Parana Brazil;

    Univ Parma Dipartimento Ingn &

    Architettura Parco Area Sci 181-A I-43124 Parma Italy;

    Univ Fed Rio Grande do Sul Programa Posgrad Engn Mecan PROMEC Porto Alegre RS Brazil;

    Univ Fed Rio Grande FURG Programa Posgrad Modelagem Computac PPGMC Rio Grande RS Brazil;

    Univ Fed Rio Grande FURG Programa Posgrad Modelagem Computac PPGMC Rio Grande RS Brazil;

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  • 正文语种 eng
  • 中图分类 热力工程、热机;
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