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Assessment of Natural Ventilation Potential for Residential Buildings across Different Climate Zones in Australia

机译:评估澳大利亚不同气候区住宅建筑的自然通风潜力

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In this study, the natural ventilation potential of residential buildings was numerically investigated based on a typical single-story house in the three most populous climate zones in Australia. Simulations using the commercial simulation software TRNSYS (Transient System Simulation Tool) were performed for all seasons in three representative cities, i.e., Darwin for the hot humid summer and warm winter zone, Sydney for the mild temperate zone, and Melbourne for the cool temperate zone. A natural ventilation control strategy was generated by the rule-based decision-tree method based on the local climates. Natural ventilation hour (NVH) and satisfied natural ventilation hour (SNVH) were employed to evaluate the potential of natural ventilation in each city considering local climate and local indoor thermal comfort requirements, respectively. The numerical results revealed that natural ventilation potential was related to the local climate. The greatest natural ventilation potential for the case study building was observed in Darwin with an annual 4141 SNVH out of 4728 NVH, while the least natural ventilation potential was found in the Melbourne case. Moreover, summer and transition seasons (spring and autumn) were found to be the optimal periods to sustain indoor thermal comfort by utilising natural ventilation in Sydney and Melbourne. By contrast, natural ventilation was found applicable over the whole year in Darwin. In addition, the indoor operative temperature results demonstrated that indoor thermal comfort can be maintained only by utilising natural ventilation for all cases during the whole year, except for the non-natural ventilation periods in summer in Darwin and winter in Melbourne. These findings could improve the understanding of natural ventilation potential in different climates, and are beneficial for the climate-conscious design of residential buildings in Australia.
机译:在这项研究中,根据澳大利亚三个人口最多的气候区中的​​典型单层房屋,对住宅建筑的自然通风潜力进行了数值研究。使用商业仿真软件TRNSYS(瞬态系统仿真工具)在三个有代表性的城市进行了所有季节的仿真,分别是达尔文(夏季炎热和冬季温暖地区),悉尼(中温带)和墨尔本(温带地区)。 。基于局部气候的基于规则的决策树方法生成了自然通风控制策略。分别考虑当地气候和当地室内热舒适性要求,使用自然通风小时(NVH)和满意的自然通风小时(SNVH)来评估每个城市的自然通风潜力。数值结果表明,自然通风潜力与当地气候有关。在达尔文,案例研究大楼的自然通风潜力最大,在4728 NVH中,年通风量为4141 SNVH,而在墨尔本案例中,自然通风潜力最小。此外,通过利用悉尼和墨尔本的自然通风,夏季和过渡季节(春季和秋季)被认为是维持室内热舒适的最佳时期。相比之下,发现达尔文全年都可以使用自然通风。此外,室内工作温度结果表明,除了达尔文夏季夏季和墨尔本冬季的非自然通风期外,全年只有在所有情况下都使用自然通风才能保持室内的热舒适性。这些发现可以增进人们对不同气候下自然通风潜力的理解,并有助于澳大利亚住宅建筑的气候意识设计。

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