通过水平翅片调节光催化-Trombe 墙性能的新型被动方法

IF 6.7 2区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY
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引用次数: 0

摘要

受太阳辐照中紫外线比例不足和光催化层透光率低的限制,光催化-瞬变壁(PC-TW)的净化和热性能亟待提高。为此,有人提出了一种利用水平翅片调节 PC-TW 性能的新型被动方法。为了实现这一创新,研究人员通过数值方法构建了一个三维模型,以研究相对翅片高度 h* 和间距 s* 的影响,并讨论了这些参数对性能的影响机制。结果表明:在自然通风策略下,与不设鳍片的 PC-TW 相比,热效率ηth、净化效率ηHCHO 和总效率ηtotal 都有一定程度的提高,且存在最佳的鳍片参数。然而,当 h* 超过 0.4 时,水平翅片反而会降低效率。在强制通风策略下,h* 的增加有助于提高所有效率,使 ηHCHO 呈单调上升趋势,而 ηth 和 ηtotal 则呈抛物线趋势。此外,s* 的增加会降低改进后的效率,但仍能将其保持在较高的范围内。对于不同的通风策略,考虑到性能和制造成本,建议 h* 和 s* 分别为 0.2 和 2.5。h* 和 s* 分别通过影响相邻鳍片之间涡流的大小和数量来调节性能,并且 h* 比 s* 对性能的影响更大。这项研究不仅为 PC-TW 的性能调节铺平了道路,而且为带鳍片 PC-TW 的结构设计和运行提供了理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel passive method to regulate the performance of photocatalytic-Trombe wall by horizontal fins

Constrained by the inadequate percentage of ultraviolet in solar irradiation and the low transmittance of photocatalytic layer, the purification and thermal performance of photocatalytic-Trombe wall (PC-TW) need to be improved urgently. To address this, a novel passive method to regulate PC-TW performance using horizontal fins was proposed. Aiming at this innovation, by numerical method, a three dimensional model was constructed to investigate the impact of relative fins height h* and spacing s*, and the mechanism about how these parameters affect the performance was also discussed. The results indicate that: under natural ventilation strategy, compared with PC-TW without fins, the thermal efficiency ηth, purification efficiency ηHCHO and total efficiency ηtotal are improved to some extent and there exist optimal fins parameters. However, horizontal fins will instead lower the efficiencies when h* exceeds 0.4. Under forced ventilation strategy, the increase in h* contributes to all efficiencies, making ηHCHO increasing monotonically, while ηth and ηtotal present a parabolic trend. In addition, the increase in s* lowers the improved efficiencies but can still keep them in a high range. For different ventilation strategies, considering the performance and manufacturing cost, the suggested h* and s* are 0.2 and 2.5. h* and s* respectively regulate the performance by affecting the size and amount of vortex between adjacent fins, and h* has a greater impact on the performance than s*. This study not only paves a new approach for performance regulation of PC-TW, but also provides theoretical basis for structural design and operation of PC-TW with fins.

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来源期刊
Journal of building engineering
Journal of building engineering Engineering-Civil and Structural Engineering
CiteScore
10.00
自引率
12.50%
发文量
1901
审稿时长
35 days
期刊介绍: The Journal of Building Engineering is an interdisciplinary journal that covers all aspects of science and technology concerned with the whole life cycle of the built environment; from the design phase through to construction, operation, performance, maintenance and its deterioration.
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