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Thermal Effectiveness Enhancement of Autoclaved Aerated Concrete Wall with PCM-Contained Conical Holes to Reduce the Cooling Load

机译:带有PCM的锥形孔可提高热压加气混凝土墙的热效率从而降低冷却负荷

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摘要

This work investigates and improves the thermal dynamics of autoclaved aerated concrete (AAC) wall containing phase change material (PCM). The PCM is paraffin wax loaded into conical holes drilled into the AAC. Filled AAC with three different numbers of PCM-filled holes (2, 3, and 4 conical holes, which are designated as AAC-2H, AAC-3H, and AAC-4H, respectively) as well as the unfilled original AAC were both tested under two different conditions: indoors (with controlled temperature) and outdoors (with actual weather). For the indoor experiment, a heater was used as a thermal source and set up to maintain the testing temperature at one of three levels: 40 °C, 50 °C, or 60 °C. The wall temperature was then measured on the surface with each horizontally-positioned wall as well as four different positions at various depths below the surface of the wall. It was found that AAC-4H was the optimum condition, which can produce outstandingly a time lag of approximately 27%, reduce a decrement factor of approximately 31%, and also decrease the room temperature. This reached approximately 9% when compared with that of ordinary AAC at the controlled testing temperature of 60 °C. All samples were further tested in actual weather to confirm the thermal performances of AAC-4H. Thermal effectiveness of AAC-4H was improved by extending approximately a 14.3% time lag, which reduces approximately a 4.3% decrement factor and achieving approximately 5% lower room temperature when compared with ordinary AAC.
机译:这项工作研究并改善了含有相变材料(PCM)的高压灭菌加气混凝土(AAC)墙的热力学。 PCM是石蜡,装在钻入AAC的锥形孔中。用三个不同数量的PCM填充孔(分别称为AAC-2H,AAC-3H和AAC-4H的2个,3个和4个锥形孔)填充的AAC以及未填充的原始AAC均经过测试在两种不同的条件下:室内(温度受控)和室外(实际天气)。对于室内实验,使用加热器作为热源并将其设置为将测试温度保持在以下三个级别之一:40°C,50°C或60°C。然后在每个水平放置的墙以及在墙表面下方不同深度处的四个不同位置的表面上,测量墙温度。已经发现,AAC-4H是最佳条件,它可以显着地产生大约27%的时滞,减少大约31%的减量因数,并且还降低室温。与普通AAC在60°C的受控测试温度下相比,该值达到了大约9%。所有样品均在实际天气中进行了进一步测试,以确认AAC-4H的热性能。与普通AAC相比,AAC-4H的热效率通过延长大约14.3%的时间延迟而得以改善,这减少了大约4.3%的减小因子,并降低了约5%的室温。

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