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Thermal performance of sculptured tiles for building envelopes

机译:构建信封雕刻瓷砖的热性能

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Since effective thermal insulation of buildings could significantly decrease energy consumption worldwide, this study examined the potential of concrete tiles with complex geometries at improving thermal performance in building envelopes. The study focused on air flow characteristics that occur near the external surface of the tile, and their influence on the rate of heat transfer within the material. Six groups of sculptured tiles were developed, using a systematic approach (i.e., repetition of basic geometries), biomimicry, and inspiration from natural envelopes. Air flow behavior and heat transfer rates were examined at three different wind speeds, through both experiments and computational fluid dynamics simulations using a configuration of flow impingement that can be regarded as the worst case scenario. After successfully validating the data, additional numerical simulations were conducted for all developed tiles using the Star-CCM + commercial software. The results showed an improvement in the insulation performance of about half of all the tested cases. Moreover, significant improvements were seen in the geometries that mimicked animal fur, achieving heat transfer rates that were up to 24% lower than those achieved by smooth tiles. Our results indicate that the application of such tiles with increased thermal resistance could save on thermal insulation materials and improve the thermal performance of building facades.
机译:由于建筑物的有效隔热可能会显着降低全球能源消耗,因此该研究检查了混凝土砖与复杂几何形状的潜力在提高建筑信封中的热性能下。该研究专注于在瓷砖外表面附近发生的气流特性,以及它们对材料内的热传递速率的影响。使用系统方法(即,重复基本几何形状),生物化和自然信封的灵感来开发六组雕刻瓷砖。通过使用流动冲击的配置,通过实验和计算流体动力学模拟来检查空气流动行为和传热速率。在成功验证数据后,使用Star-CCM +商业软件对所有开发的瓷砖进行了额外的数值模拟。结果表明,在所有测试案例的绝缘性能的绝缘性能的提高。此外,在模仿动物毛皮的几何形状中看到了显着的改进,实现了比通过光滑瓦片所达到的高达24%的传热速率。我们的结果表明,这种瓷砖的应用具有增加的热阻可以节省热绝缘材料,提高建筑物外墙的热性能。

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