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Coordinated optimal design of zero/low energy buildings and their energy systems based on multi-stage design optimization

机译:基于多阶段设计优化的零能耗/低能耗建筑及其能源系统的协调优化设计

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摘要

As promising means to reduce carbon emission and energy consumption, zero/low energy buildings have been attracting increasing attentions. Multi-stage design optimization methods have been developed for zero/low energy buildings and their energy systems especially when a large number of design variables need to be optimized. However, these methods ignore the interactions between building envelope and energy system design optimizations, which can be addressed by simultaneous optimization methods requiring huge computation cost. In this study, a coordinated optimal design method is proposed as a computation cost-effective method for stand-alone and grid-connected zero/low energy buildings and their energy systems on the basis of multi-stage design optimization methods, to effectively consider the interactions between building envelope and energy system design optimizations. An iterative approach is adopted to coordinate multi-stage optimizations of building envelope and energy systems. The Hong Kong zero carbon building is used as the reference building to test and validate the proposed method. The results and experiences of the case studies show that the proposed coordinated design method can provide global optimal designs efficiently and robustly. The life cycle "cost" of the optimal designs is 4% less and unmet cooling load is over 22% less compared with existing multi-stage design methods.
机译:作为减少碳排放和能源消耗的有前途的手段,零能耗/低能耗建筑已引起越来越多的关注。已经针对零/低能耗建筑及其能源系统开发了多阶段设计优化方法,尤其是当需要优化大量设计变量时。但是,这些方法忽略了建筑围护结构与能源系统设计优化之间的相互作用,而这可以通过需要大量计算成本的同时优化方法来解决。在这项研究中,提出了一种协调的最佳设计方法,作为基于多阶段设计优化方法的独立和并网零/低能耗建筑物及其能源系统的计算成本效益方法,以有效地考虑建筑围护结构与能源系统设计优化之间的相互作用。采用迭代方法来协调建筑物围护结构和能源系统的多阶段优化。以香港零碳建筑为参考建筑,对所提出的方法进行测试和验证。案例研究的结果和经验表明,所提出的协调设计方法可以高效,可靠地提供全局最优设计。与现有的多阶段设计方法相比,最佳设计的生命周期“成本”降低了4%,未满足的冷却负荷降低了22%以上。

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