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Research on Energy-Saving Optimization for the Performance Parameters of Rural-Building Shape and Envelope by TRNSYS-GenOpt in Hot Summer and Cold Winter Zone of China

机译:TRNSYS-GenOpt在中国夏热冬冷地区农村建筑形状和围护性能参数的节能优化研究

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The aim of this paper is to optimize the building shape parameters and envelope parameters influencing the rural building energy consumption in cold winter and hot summer climate. Several typical models are established and optimized by integrated TRNSYS and GenOpt. Single-objective optimization has provided guidance to the multi-dimensional optimization. Building shape and envelope parameters are considered simultaneously by multi-dimensional optimization. Results of the optimization showed significant reduction in terms of EC (energy consumption). When O (building orientation) was SW (south by west) 10°, LWR (length-width ratio) was 1.1, WWRS (window-wall ratio in south) with the range of 0.6–0.8, ITE (insulation thickness of exterior wall) and ITR (insulation thickness of roof) was 0.05 m and 0.08 m respectively, the building had minimal energy consumption. The results also indicated that the optimal EWT (exterior window type) was plastic single-frame Low-E insulating glazing filled with inert gas, and the optimal shape of building is Re (rectangle). An effective method was provided to optimize the design of the rural building for the purpose of reducing building energy consumption in cold winter and hot summer climate.
机译:本文的目的是优化影响寒冷冬季和炎热夏季气候下农村建筑能耗的建筑物形状参数和围护结构参数。集成TRNSYS和GenOpt建立并优化了几种典型模型。单目标优化为多维优化提供了指导。通过多维优化可以同时考虑建筑物的形状和围护结构参数。优化结果表明,EC(能耗)显着降低。当O(建筑物朝向)为SW(南向西)10°时,LWR(长宽比)为1.1,WWRS(南窗比)在0.6-0.8范围内,ITE(外墙保温厚度) )和ITR(屋顶的隔热厚度)分别为0.05 m和0.08 m,该建筑物的能耗最小。结果还表明,最佳的EWT(外窗型)是填充有惰性气体的塑料单框架Low-E绝缘玻璃,建筑物的最佳形状是Re(矩形)。提供了一种有效的方法来优化农村建筑的设计,以减少寒冷冬季和炎热夏季气候下的建筑能耗。

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