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Assessment of natural and hybrid ventilation models in whole-building energy simulations

机译:整栋建筑能源模拟中自然通风和混合通风模型的评估

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Natural ventilation is a traditional cost-effective technique to cool and ventilate buildings. Proper simula tion tools are highly desired to ensure acceptable thermal performance of naturally ventilated buildings and to assist the design and optimization of such buildings. This study is to advance the use of natural and hybrid ventilation concepts in building design by assessing the accuracy and usability of current thermal-ventilation models. Because of the similarity noted among various models and tools, a prevalent airflow-thermal modeling program, EnergyPlus, was evaluated by simulating three selected real build ings that were supplied with most detailed building and measurement information. The study of these cases reveals that the current model has (1) significant functional limitations for venting and exhaust fan control schemes;(2) need for additional relationships to describe horizontal openings and fully-open connections between zones;and (3) possible over-prediction of buoyancy-driven flows in the case of multi-story buildings. The study further indicates the building and measurement data that are critical for a more accurate validation of thermal-ventilation models, including, on-site measured temperature, wind, and solar conditions;measured volume flow rate data, at critical points throughout the building;and effective area and discharge coefficients for specific vents used in building.
机译:自然通风是用于建筑物冷却和通风的传统成本有效技术。强烈需要正确的模拟工具,以确保自然通风的建筑物具有可接受的热性能,并有助于此类建筑物的设计和优化。这项研究旨在通过评估当前热通风模型的准确性和可用性来促进自然通风和混合通风概念在建筑设计中的应用。由于各种模型和工具之间存在相似性,因此通过模拟三个选定的实际建筑物来评估流行的气流热模型程序EnergyPlus,这些建筑物提供了最详细的建筑物和测量信息。对这些情况的研究表明,当前模型具有(1)通风和排风扇控制方案的重大功能限制;(2)需要其他关系来描述区域之间的水平开口和全开口连接;以及(3) -对于多层建筑物,由浮力驱动的流量的预测。该研究进一步指出了对于更准确地验证热通风模型至关重要的建筑物和测量数据,包括现场测量的温度,风和太阳条件;在整个建筑物的关键点处测量的体积流量数据;以及以及建筑物中特定通风口的有效面积和排放系数。

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