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Development of a short duration method to assess the envelope thermal performance of multi-family housings

机译:开发一种短期方法来评估多户住宅的围护热性能

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摘要

Building energy efficiency is a key factor in reducing CO_2 emissions. For this reason, European Union (EU) member states have developed thermal regulations to ensure building thermal performance. These results are often based on results achieved with building simulation software during the design stage. However, the actual thermal performance can deviate significantly from the predicted one, and this difference is known as the energy performance gap. Accurate indicators of the actual thermal performance are a valuable tool to guarantee building quality. These indicators, including the heat transfer coefficient (HTC) and the heat loss coefficient (HLC), can be estimated by the application of in situ methods. As multi-family housing and tertiary sector buildings are an important part of the building stock, mature methods to measure their thermal performance are needed. This paper presents a short-duration method for assessing the HTC in large building typologies using a sampling approach. The method was applied in a four-storey building model under different conditions to study the limits of the method and to improve indicator bias and uncertainty. Indicator quality was strongly influenced by the external weather conditions, the temperature variation during the protocol and the heat exchange with the adjacent apartments. Under winter conditions and with stable indoor temperatures, the method had a high accuracy when the protocol was applied for half a day. It is recommended that the protocol be used over two days to improve indicator quality under less favorable test conditions.
机译:建筑能效是减少CO_2排放的关键因素。出于这个原因,欧盟 (EU) 成员国制定了热法规,以确保建筑的热性能。这些结果通常基于在设计阶段使用建筑仿真软件获得的结果。然而,实际的热性能可能与预测的热性能有很大差异,这种差异被称为能量性能差距。实际热性能的准确指标是保证建筑质量的宝贵工具。这些指标,包括传热系数(HTC)和热损失系数(HLC),可以通过应用原位方法进行估计。由于多户住宅和第三产业建筑是建筑存量的重要组成部分,因此需要成熟的方法来测量其热性能。本文提出了一种使用抽样方法评估大型建筑类型中HTC的短期方法。将该方法应用于不同条件下的四层建筑模型,以研究该方法的局限性并改善指标偏差和不确定性。指标质量受到外部天气条件、协议期间的温度变化以及与相邻公寓的热交换的强烈影响。在冬季条件下,室内温度稳定,该方法在应用方案半天时具有较高的准确度。建议在两天内使用该协议,以在不太有利的测试条件下提高指示剂质量。

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