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首页> 外文期刊>Fresenius environmental bulletin >STUDY ON THERMAL INSULATION PERFORMANCE EVALUATION AND PROCESS PARAMETERS OPTIMIZATION OF GREEN BUILDING WALL
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STUDY ON THERMAL INSULATION PERFORMANCE EVALUATION AND PROCESS PARAMETERS OPTIMIZATION OF GREEN BUILDING WALL

机译:绿色建筑墙隔热性能评价及工艺参数优化研究

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In order to reduce the energy consumption of green building wall and meet the needs of residents for living temperature, the optimization method of wall insulation thickness and process parameters of green building is proposed. Combined with the inter-nal and external interference factors of green build-ing wall insulation performance, the energy con-sumption of green building wall insulation is com-prehensively analyzed. The economic index model of green building wall insulation is constructed based on economic theory of P1-P2. According to the life cycle cost curve of green building, the opti-mal insulation thickness of green building wall is solved. The relationship between the thermal con-ductivity of wall insulation materials, heating calcu-lation time and wall insulation thickness are obtained through statistical yearbook data, so as to optimize the wall insulation thickness and process parameters of green building. Taking a standard room in a green building as the experimental object, the experiments are set to carry out to evaluate the thermal insulation performance. The experimental results show that the proposed optimization method of wall insulation thickness and process parameters of green building is effective and feasible. The optimized wall insula-tion thickness of green building is less affected by the external environment temperature, and the in-vestment cost of the optimized green building wall is significantly reduced.
机译:为了降低绿色建筑墙的能耗并满足居民生活温度的需求,提出了绿色建筑壁绝缘厚度和工艺参数的优化方法。结合绿色建设墙体绝缘性能的NAL间和外部干扰因素,绿色建筑墙隔离的能量消耗是COM-PRECHESICE的分析。基于P1-P2的经济理论构建了绿色建筑墙隔离的经济指标模型。根据绿色建筑的生命周期成本曲线,解决了绿色建筑墙的Opti-Mal绝缘厚度。通过统计年鉴数据获得壁绝缘材料,加热计算时间和壁绝缘厚度的热导液之间的关系,从而优化绿色建筑的壁绝缘厚度和工艺参数。在绿色建筑物中占据标准间作为实验对象,设定实验以进行速度以评估保温性能。实验结果表明,绿色建筑的壁绝缘厚度和工艺参数所提出的优化方法是有效可行的。绿色建筑的优化墙壁烯叶厚度受外部环境温度影响较小,优化的绿色建筑墙的载入成本明显减少。

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