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Shoeboxer: An algorithm for abstracted rapid multi-zone urban building energy model generation and simulation

机译:Shoeboxer:一种抽象的快速多区域城市建筑能耗模型生成和仿真的算法

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In this paper the authors present an algorithm that abstracts an arbitrarily shaped set of building volumes into a group of simplified 'shoebox' building energy models. It is shown that for generic perimeter and core floorplans the algorithm provides a faster but comparably accurate simulation results of annual load profiles vis-a-vis multi-zone thermal models generated according to ASHRAE90.1 Appendix G guidelines. Envisioned applications range from rapid thermal model generation for urban building energy modelling to schematic architectural design. Following a description of the algorithm, its ability to produce load profiles for a mixed-use neighborhood of 121 fully conditioned buildings for a variety of climates is demonstrated. The comparison yields relative mean square errors in simulated annual building energy use intensity of five to 10 percent compared to ASHRAE 90.1 compliant building energy models while reducing simulation times by a factor of 296. (C) 2017 Elsevier B.V. All rights reserved.
机译:在本文中,作者提出了一种算法,可以将任意形状的建筑体积抽象为一组简化的“鞋盒”建筑能耗模型。结果表明,对于通用的外围和核心平面图,该算法提供了相对较快的模拟结果,这些结果与根据ASHRAE90.1附录G指南生成的多区域热模型相比,每年的负荷曲线更为精确。预期的应用范围包括从快速热模型生成到城市建筑能源建模,再到示意性建筑设计。在对该算法进行了描述之后,证明了其能够为121种完全适应气候变化的建筑物的混合用途邻域生成负荷曲线的能力。与符合ASHRAE 90.1的建筑能源模型相比,该比较在模拟的年度建筑能源使用强度中产生5%至10%的相对均方误差,同时将模拟时间减少了296倍。(C)2017 Elsevier B.V.保留所有权利。

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