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Detailed Energy Saving Performance Analyses On Thermal Mass Walls Demonstrated In A Zero Energy House

机译:零能耗房屋中展示的热质墙的详细节能性能分析

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An insulated concrete wall system was used on exterior walls of a zero energy house. Its thermal functions were investigated using actual data in comparison to a conventional wood frame system. The internal wall temperature of massive systems changes more slowly than the conventional wall constructions, leading to a more stable indoor temperature. The EnergylO simulated equivalent R-value and DBMS of the mass walls under actual climate conditions are, respectively, 6.98 (m~2℃)/W and 3.39. However, the simulated heating energy use was much lower for the massive walls while the cooling load was a little higher. Further investigation on the heat flux indicates that the heat actually is transferred inside all day and night, which results in a higher cooling energy consumption. A one-dimensional model further verified these analyses, and the calculated results are in good agreement with the actual data. We conclude that the thermal mass wall does have the ability to store heat during the daytime and release it back at night, but in desert climates with high 24-h ambient temperature and intense sunlight, more heat will be stored than can be transferred back outside at night. As a result, an increased cooling energy will be required.
机译:在零能耗房屋的外墙上使用了隔热混凝土墙系统。与实际的木框架系统相比,使用实际数据研究了其热功能。大型系统的内壁温度变化比常规壁结构更慢,从而导致室内温度更加稳定。在实际气候条件下,Energy10模拟的质量壁的等效R值和DBMS分别为6.98(m〜2℃)/ W和3.39。但是,对于厚壁而言,模拟的热能使用量要低得多,而冷却负荷要高一些。对热通量的进一步研究表明,热量实际上是昼夜不停地传递,这导致更高的冷却能耗。一维模型进一步验证了这些分析,计算结果与实际数据吻合良好。我们得出的结论是,热质墙确实具有在白天存储热量并在晚上释放热量的能力,但是在高24小时环境温度和强烈阳光的沙漠气候中,将存储的热量多于传递回室外的热量在晚上。结果,将需要增加的冷却能量。

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