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Adaptive Building Envelope System using Parametric Camshaft Mechanism for Sustainable Building

机译:使用参数凸轮轴机构进行可持续建筑的自适应建筑包络系统

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Adaptation is essential to manage the problem of climate change. In order to meet this growing challenge, this paper propose an adaptive building envelope system that can optimize its configuration by responding to environmental changes that could achieve new levels of sustainable performance and energy efficiency. Most of the current adaptive building envelope uses kinetic techniques in order to make its formation transformable. However, with the use of kinetic components such as a large amount of interactive motorized system that require electrical power may also cause further decrease the building energy efficiency. This paper proposes a camshaft mechanism system for adaptive building envelope that uses less motors, controllers, and sensors. This system uses pre-programmed analysis data of daily solar radiation changes to parametrically drive the number of rotation phase and length of nose (Lobe Lift) that generates the shape of camshaft. This camshaft then controls the changing opening and closing values of the building envelope components. The advantages of this system are less energy consumption, less maintenance and lower cost since it uses less motors, controllers and wiring. In conclusion, this paper has developed a prototypical tool that facilitates the new approach to energy efficient kinetic buildings.
机译:适应对于管理气候变化问题至关重要。为了满足这种不断增长的挑战,本文提出了一种自适应建筑包络系统,可以通过响应可能实现新的可持续性能和能源效率的环境变化来优化其配置。大多数当前的自适应建筑信封使用动力学技术,以使其形成变化。然而,利用诸如需要电力的大量交互式电动系统的动力学组件也可能导致建筑能效应进一步降低。本文提出了一种用于适用于适用性建筑包络的凸轮轴机构系统,其使用较少的电动机,控制器和传感器。该系统使用日常太阳辐射的预先编程分析数据变为参数驱动产生产生凸轮轴形状的旋转阶段和鼻子长度(凸起升降机)。然后,该凸轮轴控制建筑包络组件的变化开口和关闭值。该系统的优点较少能耗,维护较少,成本较低,因为它使用电机较少,控制器和接线。总之,本文开发了一种原型工具,促进了节能动力学建筑的新方法。

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