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Early-design sensitivity of radiant cooled office buildings in the tropics for building performance

机译:辐射冷却办公大楼的早期设计敏感性,在热带地区建立性能

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摘要

The research community has worked on improving the design, performance, and operation of radiant system technologies; however, the interactions between architectural design decisions and radiant cooling systems design in the tropics - where radiant system design and operation represents a challenge due to high external heat gains and latent loads - have been left unexplored by existing work. This manuscript (1) addresses the holistic early-design of effective radiant cooling systems and the architectural environments that they serve in hot and humid tropical climates, (2) analyses how different design choices and their interaction affect buildings performance compared to conventional all-air systems, and (3) proposes preliminary early-design indications of the parameters values to adopt when designing radiant cooled office buildings in the tropics to achieve high multi-objective design goals. Morris sensitivity analysis is used to analyse the impact of 13 different building and system design parameters on comfort, system and energy performances for 3 radiant systems typologies applied to a parametric office building in the tropical climate of Singapore. The elementary effect (EE) of each parameter is analysed based on 8200 individual EnergyPlus simulation models being run, and the impact, interactions & (non) linear effects of different design factors are assessed. It is found that radiant cooling systems require different early-design phase considerations than conventional air-based cooling systems since different parameters prove to be dominant or significant. All three radiant system typologies, if coupled with efficient operational strategies and a complimentary set of design variables, ensure high multi-objective building performance, showing how the implementation of radiant cooling technologies could be beneficial for a tropical climate. The window solar heat gain coefficient and the facade window-to-wall ratio play a key role in this effort with respective values falling below or equal to 54% and 57%. The system set-point temperature has an increased importance for operational efficiency allowing high dry-bulb room temperatures ranging from 24.8 degrees C to 27 degrees C. Crown Copyright (c) 2020 Published by Elsevier B.V. All rights reserved.
机译:研究界已经致力于改善辐射系统技术的设计,性能和操作;然而,在热带地区的建筑设计决策和辐射冷却系统设计之间的相互作用 - 其中辐射系统设计和操作由于高外部热量收益和潜在负载而代表挑战 - 已经留下了现有的工作。此稿件(1)解决了有效的辐射冷却系统的整体早期设计和它们在热和潮湿的热带气候中服务的建筑环境,(2)分析了与传统空气相比不同的设计选择及其互动影响建筑物的性能系统和(3)提出了在在热带地区设计辐射冷却的办公大楼时采用参数值的初步早期设计指示,以实现高度的多目标设计目标。莫里斯灵敏度分析用于分析13个不同建筑和系统设计参数对3个辐射系统类型的舒适性,系统和能量性能的影响,适用于新加坡热带气候的参数室建筑。基于8200个单独的能量应用模拟模型进行分析每个参数的基本效果(EE),以及评估不同设计因子的影响,相互作用和(非)线性效应。发现辐射冷却系统需要不同的早期设计相位考虑,而不是传统的空气基冷却系统,因为不同的参数被证明是显着的或显着的。所有三种辐射系统类型,如果加上有效的操作策略和免费的设计变量,可确保高的多目标建筑性能,展示了辐射冷却技术的实施如何有利于热带气候。窗户太阳能热增益系数和外观窗口到壁比在这项努力中发挥着关键作用,各自的值下降到低于或等于54%和57%。系统设定点温度具有增加的操作效率,允许高干灯泡室温范围从24.8摄氏度范围为27摄氏度。欧姆维尔B.V发布的皇冠版权(c)2020。保留所有权利。

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