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Daylight Design of Office Buildings: Optimisation of External Solar Shadings by Using Combined Simulation Methods

机译:办公大楼的日光设计:使用组合模拟方法优化外部遮阳板

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Integrating daylight and energy performance with optimization into the design process has always been a challenge for designers. Most of the building environmental performance simulation tools require a considerable amount of time and iterations for achieving accurate results. Moreover the combination of daylight and energy performances has always been an issue, as different software packages are needed to perform detailed calculations. A simplified method to overcome both issues using recent advances in software integration is explored here. As a case study; the optimization of external shadings in a typical office space in Australia is presented. Results are compared against common solutions adopted as industry standard practices. Visual comfort and energy efficiency are analysed in an integrated approach. The DIVA (Design, Iterate, Validate and Adapt) plug-in for Rhinoceros/Grasshopper software is used as the main tool, given its ability to effectively calculate daylight metrics (using the Radiance/Daysim engine) and energy consumption (using the EnergyPlus engine). The optimization process is carried out parametrically controlling the shadings’ geometries. Genetic Algorithms (GA) embedded in the evolutionary solver Galapagos are adopted in order to achieve close to optimum results by controlling iteration parameters. The optimized result, in comparison with conventional design techniques, reveals significant enhancement of comfort levels and energy efficiency. Benefits and drawbacks of the proposed strategy are then discussed.
机译:对于设计人员而言,将日光和能源性能与优化相结合到设计过程中一直是一个挑战。大多数建筑环境性能模拟工具需要大量时间和迭代才能获得准确的结果。此外,日光和能源性能的组合一直是一个问题,因为需要不同的软件包来执行详细的计算。本文探讨了使用软件集成的最新进展来克服这两个问题的简化方法。作为案例研究;介绍了澳大利亚典型办公空间中外部阴影的优化。将结果与采用行业标准惯例的常见解决方案进行比较。视觉舒适度和能源效率采用集成方法进行分析。 Rhinoceros / Grasshopper软件的DIVA(设计,迭代,验证和调整)插件被用作主要工具,因为它具有有效计算日光度量标准(使用Radiance / Daysim引擎)和能耗(使用EnergyPlus引擎)的能力。 )。优化过程是通过参数控制阴影的几何形状进行的。采用嵌入在进化求解器Galapagos中的遗传算法(GA),以通过控制迭代参数来获得接近最佳的结果。与常规设计技术相比,优化结果显示出舒适度和能源效率的显着提高。然后讨论了所提出策略的优缺点。

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