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The Solar Dynamic Buffer Zone (SDBZ) curtain wall: Validation and design of a solar air collector curtain wall.

机译:太阳能动态缓冲区(SDBZ)幕墙:太阳能集热器幕墙的验证和设计。

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Given the increases in both the environmental and economic costs of energy, there is a need to design and building more sustainable and low-energy building systems now. Curtain wall assemblies show great promise---the spandrel panels within them can be natural solar collectors. By using a Solar Dynamic Buffer Zone (SDBZ) in the spandrel cavity, solar energy can be efficiently gathered using the movement of air. There is a need for a numerical model capable of predicting performance of an SDBZ Curtain Wall system.;This research designed, constructed and quantified a prototype SDBZ curtain wall system through by experimental testing in a laboratory environment. The laboratory experiments focussed on three main variables: air flow through the system, incoming radiation and collector surface type. Results from the experimental testing were used to validate a one-dimensional numerical model of the prototype.;Results from this research show a SDBZ curtain wall system as an effective means of reducing building heating energy consumption through the preheating of incoming exterior ventilation air during the heating season in cold climates. The numerical model showed good correlation with experimental results at higher operating flows and at lower flows when using an apparent velocity at the heat transfer boundary layer. A seasonal simulation for Toronto, ON predicted energy savings of 205 kWh/m2 with an average seasonal efficiency of 28%. This is considered in the upper range when compared to other solar air collectors.;Given the lack of published literature for similar systems, this research acts to introduce a simple, innovative approach to collect solar energy that would otherwise be lost to the exterior using already existing components within a curtain wall. Specifically, the research has provided: results from experiments and simulation, a first generation numerical model, aspects of design and construction of the SDBZ curtain wall and specific directions for further research.;This research shows a SDBZ curtain wall has the potential to act as a significant solar collector. By coupling a simple method with an existing cladding system, the SDBZ curtain wall can reduce a building's heating load by at least 5--10%.
机译:鉴于能源的环境和经济成本的增加,现在需要设计和建造更可持续的和低能耗的建筑系统。幕墙组件显示出巨大的希望-其中的隔板可以是天然的太阳能收集器。通过在翼d腔中使用太阳能动态缓冲区(SDBZ),可以利用空气的移动有效地收集太阳能。需要一种能够预测SDBZ幕墙系统性能的数值模型。本研究通过在实验室环境中进行实验测试来设计,构建和量化SDBZ幕墙系统原型。实验室实验着重于三个主要变量:通过系统的气流,入射辐射和收集器表面类型。实验测试的结果被用于验证原型的一维数值模型。研究结果表明,SDBZ幕墙系统是通过在预热期间将外部通风空气预热来减少建筑物供暖能耗的有效手段。寒冷气候的供暖季节。当在传热边界层使用表观速度时,数值模型在较高的工作流量和较低的流量下显示出与实验结果的良好相关性。安大略省多伦多的季节性模拟预测,每季度可节省205 kWh / m2的能源,平均季节性效率为28%。与其他太阳能空气收集器相比,这被认为是较高的范围。鉴于缺乏类似系统的公开文献,本研究旨在引入一种简单,创新的方法来收集太阳能,否则使用已经存在的太阳能将其损失掉幕墙中的现有组件。具体而言,该研究提供了:实验和仿真结果,第一代数值模型,SDBZ幕墙的设计和建造方面以及进一步研究的具体方向。该研究表明,SDBZ幕墙具有发挥作用的潜力。一个重要的太阳能集热器。通过将一种简单的方法与现有的砌面系统相结合,SDBZ幕墙可以将建筑物的热负荷降低至少5--10%。

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