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Assessment of the Portuguese building thermal code: Newly revised requirements for cooling energy needs used to prevent the overheating of buildings in the summer

机译:评估葡萄牙建筑热规范:用于防止夏季建筑物过热的冷却能源需求的最新修订要求

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In this paper, cooling energy needs are calculated by the steady-state methodology of the Portuguese building thermal code. After the first period of building code implementation, re-evaluation according to EN ISO 13790 is recommended in order to compare results with the dynamic simulation results. From these analyses, a newly revised methodology arises including a few corrections in procedure. This iterative result is sufficiently accurate to calculate the building's cooling energy needs. Secondly, results show that the required conditions are insufficient to prevent overheating. The use of the gain utilization factor as an overheating risk index is suggested, according to an adaptive comfort protocol, and is integrated in the method used to calculate the maximum value for cooling energy needs. This proposed streamlined method depends on reference values: window-to-floor area ratio, window shading g-value, integrated solar radiation and gain utilization factor, which leads to threshold values significantly below the ones currently used. These revised requirements are more restrictive and, therefore, will act to improve a building's thermal performance during summer. As a rule of thumb applied for Portuguese climates, the reference gain utilization factor should assume a minimum value of 0.8 for a latitude angle range of 40-41°N, 0.6 for 38-39°N and 0.5 for 37°N.
机译:在本文中,通过葡萄牙建筑热规范的稳态方法计算了冷却能源需求。在实施建筑规范的第一阶段之后,建议根据EN ISO 13790进行重新评估,以便将结果与动态仿真结果进行比较。通过这些分析,出现了一种新修订的方法,包括一些程序上的更正。该迭代结果足够准确,可以计算建筑物的冷却能量需求。其次,结果表明所需的条件不足以防止过热。根据自适应舒适协议,建议将增益利用因数用作过热风险指标,并将其集成到用于计算冷却能需求最大值的方法中。提议的简化方法取决于参考值:窗与地板的面积比,窗遮阳g值,太阳辐射积分和增益利用率,这导致阈值大大低于当前使用的阈值。这些修订的要求更加严格,因此将在夏季改善建筑物的热性能。作为适用于葡萄牙气候的经验法则,对于40-41°N的纬度角,参考增益利用率应假设最小值为0.8,对于38-39°N的纬度角为0.6,对于37°N的纬度为0.5。

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