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Evaluating dynamic building materials: The potential impact of climatically responsive building enclosures.

机译:评估动态建筑材料:对气候敏感的建筑围护结构的潜在影响。

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Despite the great interest and investment in new material technologies and advanced simulation tools, predictions for the potential impact of dynamic envelope systems so far have been based on simulations of the overall building. However, overall building simulations provide limited insights into the behavior of the building envelope since results of these types of simulations are affected by many factors that are independent of or indirectly influenced by the building envelope. Therefore, it is difficult to isolate the impact of the building envelope on building energy consumption independent of building-specific factors such as building geometry, construction, environmental systems, and building use. In order to understand and quantify the dynamic nature of environmentally responsive envelope systems, designers and engineers necessitate a new method that enables the direct evaluation of only the envelope. This method needs to be able to predict the heat transfer through dynamic building envelopes under variable environmental conditions. Ultimately, this new method should help identify the applicability of new technologies early in the design process when detailed information on a building's design or operation are not yet available.; This thesis establishes a new method and a validated reference case for the evaluation of climatically responsive building envelopes with dynamic material properties. The method isolates the performance of the building envelope in a building energy simulation model through transformation of a validated BESTEST model. It allows for parametric evaluation of the thermal performance of dynamic building envelopes under a wide range of environmental boundary conditions in comparison to existing reference technologies. This method can serve as a starting point for the critical evaluation of the impact that dynamic envelope systems have on the heat balance of buildings. The method was applied to the evaluation of electrochromic glazing to demonstrate the strength of this method when utilizing building energy simulation to evaluate the behavior of dynamic building systems. With this new method, a precedent and reference case has been established that can guide the evaluation of isolated building systems utilizing advanced dynamic heat balance energy simulation tools.
机译:尽管对新材料技术和先进的模拟工具有极大的兴趣和投入,但迄今为止,对动态围护系统的潜在影响的预测都是基于对整个建筑物的模拟。但是,由于这些类型的模拟结果受许多独立于或间接受建筑围护结构影响的因素的影响,因此,总体的建筑模拟对建筑围护结构的行为的了解有限。因此,很难独立于建筑物特定的因素(例如建筑物的几何形状,构造,环境系统和建筑物的使用)来隔离建筑物围护结构对建筑物能耗的影响。为了理解和量化对环境敏感的信封系统的动态特性,设计人员和工程师需要一种仅对信封进行直接评估的新方法。该方法必须能够预测在可变环境条件下通过动态建筑围护结构进行的热传递。最终,当尚未获得有关建筑物设计或运营的详细信息时,这种新方法应有助于在设计过程的早期确定新技术的适用性。本文建立了一种评估具有动态材料特性的气候响应建筑围护结构的新方法和经过验证的参考案例。该方法通过转换经过验证的BESTEST模型,将建筑围护结构的性能隔离在建筑能耗模拟模型中。与现有参考技术相比,它可以对动态建筑围护结构在各种环境边界条件下的热性能进行参数评估。该方法可以用作对动态围护系统对建筑物的热平衡产生影响的关键评估的起点。该方法被应用于电致变色玻璃的评估,以证明该方法在利用建筑能耗模拟评估动态建筑系统行为时的优势。通过这种新方法,已经建立了先例和参考案例,可以使用先进的动态热平衡能量模拟工具来指导隔离建筑系统的评估。

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