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Large fog collectors: New strategies for collection efficiency and structural response to wind pressure

机译:大型除雾器:提高除尘效率和对风压的结构响应的新策略

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摘要

Most studies of large fog collectors (LFC) have focused on the collection efficiency, the amount of water collected, or economic and social aspects, but have not addressed the effects of strong winds on the system. Wind pressure is directly related to fog water collection efficiency but on the other hand may cause serious damage on the structure of LFCs. This study focuses in the effects of wind pressure on the components of the LFC as an integral system, and the ways to face strong winds with no significant damage. For this purpose we analysed cases of mechanical failure of LFCs both in our experimental station at Pena Blanca in Chile and elsewhere.The effects of wind pressure can be described as a sequence of physical processes, starting with the mesh deformation as a way of adapting to the induced stresses. For a big enough pressure, local stress concentrations generate a progressive rupture of the mesh. In cases where the mesh is sufficiently strong the wind force causes the partial or total collapse of the structure. Usually the weakest part is the mesh, especially close to where it is attached to the structure. The way the mesh is attached to the frame or cable of the structure is particularly important since it can induce significant stress concentrations. Mesh failure before the structure failure may be considered as a mechanical fuse, since it is cheaper to repair. However, more practical mechanical fuses can be conceived. In relation to structural performance and water collection efficiency, we propose a new design strategy that considers a three-dimensional spatial display of the collection screen, oblique incidence angle of wind on mesh and small mesh area between the supporting frame. The proposed design strategies consider both the wind pressure on mesh and structure and the collection efficiency as an integral solution for the LFC. These new design strategies are the final output of this research. Applying these strategies a multi-funnel LFC is proposed, which is far more efficient than the conventional one, and even though it is more expensive, the final cost of the collected water should be notoriously reduced.
机译:大型烟雾收集器(LFC)的大多数研究都集中在收集效率,收集的水量或经济和社会方面,但并未解决强风对系统的影响。风压与雾水的收集效率直接相关,但另一方面可能会严重损害LFC的结构。这项研究的重点是风压对LFC组件(作为一个整体系统)的影响,以及面对强风而无明显损坏的方法。为此,我们在智利Pena Blanca和其他地方的实验站分析了LFC的机械故障情况。风压的影响可以描述为一系列物理过程,从网格变形开始,是适应诱发的压力。对于足够大的压力,局部应力集中会导致网格的逐渐破裂。在网孔足够坚固的情况下,风力会导致结构部分或全部塌陷。通常,最薄弱的部分是网格,尤其是靠近网格的位置。网格连接到结构的框架或电缆的方式特别重要,因为它会引起明显的应力集中。结构故障之前的网格故障可以被视为机械熔断器,因为修复成本较低。但是,可以构想出更实用的机械保险丝。关于结构性能和集水效率,我们提出了一种新的设计策略,该策略考虑了集水屏的三维空间显示,风在网格上的倾斜入射角以及支撑框架之间的小网格区域。提出的设计策略考虑了网格和结构上的风压以及收集效率,这是LFC的整体解决方案。这些新的设计策略是本研究的最终结果。应用这些策略,提出了一种多漏斗式LFC,它比传统的LFC效率要高得多,尽管它更昂贵,但是应该显着降低收集水的最终成本。

著录项

  • 来源
    《Atmospheric research》 |2015年第1期|236-249|共14页
  • 作者单位

    Centro del Desierto de Atacama - Escuela de Diseno, Pontificia Universidad Catolica de Chile, El Comendador 1916, Providencia, 7520245, Santiago, Chile;

    Centro del Desierto de Atacama - Escuela de Ingenieria, Pontificia Universidad Catolica de Chile, Av. V. Mackenna 4860, Macul, 7820436, Santiago, Chile;

    Centro del Desierto de Atacama - Escuela de Ingenieria, Pontificia Universidad Catolica de Chile, Av. V. Mackenna 4860, Macul, 7820436, Santiago, Chile;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Large fog collector; Fog; Water; Fog water; Fog collector screen; Fog collector structure;

    机译:大型除雾器;多雾路段;水;雾水;雾收集器屏幕;雾收集器结构;

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