建筑围护结构能效的自适应模型

M. Milardi
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引用次数: 3

摘要

关于建筑物能源效率的辩论已经确立了围护结构在实现消费和住房质量控制目标方面的战略作用。研究表明,它在创新实验场景中排名,遵循法规2010/31/EU (EPBD 2)的方向,其目标是实现“适应性”的建筑围护结构,其特点是能够动态响应与之相关的环境背景的压力。该实验旨在完善干预模型,该模型可以指导设计选择构成建筑围护结构的元素,其特点是具有强大的交互适应性组件。这是基于:层的创新信封,系统使用RES和系统的SMART管理要求的组合,重点是智能控制外部/内部之间的能量流动和层的自适应性能。“延迟分层”模式与建筑朝向和气候期有关,而对于受环境应力影响的包裹体响应的控制,研究采用BEMS和BIM系统,并将定义其他相关标准。该实验旨在通过开发技术系统,通过减少影响(排放)来满足提高建筑物能源性能的要求。从正在进行的检查中获得的结果表明,包膜的组成层以协同的方式反应,并适应不同的气候条件,确保高质量的性能,符合监管标准制定的能源效率目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adaptive Models for the Energy Efficiency of Building Envelopes
The debate on energy efficiency in buildings has already established the strategic role of the envelope to achieve the control objectives of consumption and housing quality. The study shows, it ranks in the innovative experimentation scenario, following the directions of the regulations 2010/31/EU (EPBD 2) and its objective is the realization of a building envelope "adaptive", characterized by the ability to dynamically respond to stress from the environmental context with which it relates. The experiment aimed at perfecting a model of intervention that can guide the design choices towards elements that make up the building envelope, characterized by a strong interactive-adaptive component. This is based on the combination of: layers of innovative envelope, systems using RES and SMART management requirements of the system, with a focus on intelligent control energy flows between external/internal and adaptive performance of the layers. The mode of "deferred layering" in relation to the orientation of the building and to climate periods, while for the control of wrap responses subjected to environmental stress, the research adopts BEMS & BIM systems and other related criteria will be defined. The experiment aims to satisfy the requirements to improve the energy performance of buildings by reducing the impacts (emissions), through the development of a technical system. The results obtained from inspections in progress, show that the constituent layers that envelope react in a synergistic way and adapted to different climatic conditions, ensuring high-quality performance, in line with the energy efficiency targets established by regulatory standards.
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