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Thermal comfort improvement of naturally ventilated patient wards in Singapore

机译:新加坡自然通风病房的热舒适性改善

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摘要

Located near the equator, Singapore has a tropical rainforest climate with high temperature and high humidity. In hospitals of Singapore, the subsidized patient wards are designed to be naturally ventilated, considering the affordability for patients. However, due to the high occupant density of the patient wards and the hot humid climate, occupants may feel discomfort, especially in the older hospital wards which were not well designed for natural ventilation. In this paper, the thermal comfort level of occupants at Singapore's Changi General Hospital (CGH) is evaluated based on both in-situ measurements and modeling analysis. Against this backdrop, several low energy solution concepts that potentially improve the thermal comfort level of occupants in patient wards are analyzed and simulated using detailed building thermodynamic and airflow simulation. We found that this approach of combining thermodynamics, computational fluid dynamics, and thermal comfort level models was effective for analyzing and comparing the thermal comfort impact of alternative, low-energy building retrofit concepts. We also found that passive solutions to ventilation could be used effectively for a patient hospital ward, even in the tropical warm climate of Singapore. (C) 2017 Elsevier B.V. All rights reserved.
机译:新加坡位于赤道附近,属热带雨林气候,高温高湿。考虑到患者的承受能力,在新加坡的医院中,补贴的病房设计为自然通风。但是,由于患者病房的乘员密度高和炎热潮湿的气候,乘员可能会感到不适,尤其是在不适用于自然通风的老年病房中。在本文中,将基于现场测量和模型分析来评估新加坡樟宜综合医院(CGH)的乘员的热舒适水平。在这种背景下,使用详细的建筑物热力学和气流模拟分析和模拟了几种可能会改善患者病房中乘员的热舒适水平的低能耗解决方案。我们发现,将热力学,计算流体力学和热舒适水平模型结合起来的这种方法对于分析和比较替代性低能耗建筑改造概念对热舒适的影响是有效的。我们还发现,即使在新加坡的热带温暖气候下,被动通风解决方案也可以有效地用于患者病房。 (C)2017 Elsevier B.V.保留所有权利。

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