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Extensive Utilization Of Dynamic Simulation For Sensitivity Analysis And Optimization Design Of Refurbishment Measures

机译:动态仿真广泛用于灵敏度分析和翻新措施的优化设计

摘要

Statistics and, in particular, sensitivity analysis represent an important tool for the building designer to find information about which parameters have the largest potential in reducing the energy consumption or which are the most crucial to focus on in the different phases of the project process. The application of dynamic simulation to a large number of configurations (i.e. the extensive simulation) to find the optimal solution either considering only the energy aspects or also the economic impacts and not only to evaluate a small set of possible alternatives, represents in that perspective a new approach to the building design, in particular for refurbishment considerations. This work aims to evaluate and generalize this kind of approach with its application to the refurbishment of residential buildings. The considered design solutions represent the most common measures of improvement of the performance of opaque and transparent envelope, such as the insulation level of walls and windows and the solar properties of the glazings. Different starting cases characterized by different envelope thermal inertia, corresponding to three massive materials (timber, clay and concrete), and different geometrical features were studied. A large number of environmental conditions, envelope characteristics and refurbishment interventions have been analyzed within a factorial simulation plan. Among those parameters, the ratios between the dispersing envelope and the volume conditioned (considering 3 different floors of a building – the top, the intermediate and the ground floor), the windows size (small or large size) and their distribution (South, East or West oriented), the level of insulation of the opaque envelope (starting cases without insulation, poor insulated and high insulated cases) and the kind of glazings (starting cases with single glasses and improved cases with double or triple glasses with high or low Solar Heat Gain Coefficient, SHGC) have been examined. Three Italian climates (Milan in the North, Rome in the center region and Messina in the South) were considered as representative of the Southern Europe. The inferential statistical analysis has been used to identify the predominant factors in each refurbishment solution and the economical savings both in heating and in cooling.
机译:统计数据,尤其是敏感性分析,是建筑设计师寻找重要信息的重要工具,有关哪些参数在减少能耗方面具有最大潜力,或者哪些参数是在项目过程的不同阶段重点关注的信息。在这种情况下,将动态仿真应用于大量配置(即广泛的仿真)以找到既考虑能源方面又考虑经济影响的最佳解决方案,不仅评估少数可能的替代方案,还代表了一种新的建筑设计方法,尤其是出于翻新考虑。这项工作旨在评估和推广这种方法及其在住宅建筑翻新中的应用。所考虑的设计解决方案代表了改善不透明和透明封套性能的最常用措施,例如墙和窗的隔热程度以及玻璃的日光特性。研究了以不同的包络热惯性为特征的不同起始情况,分别对应于三种块状材料(木材,粘土和混凝土)以及不同的几何特征。在析因模拟计划中分析了许多环境条件,包络特性和整修措施。在这些参数中,分散包络线与调节的体积之间的比率(考虑建筑物的3个不同楼层-顶层,中间层和底层),窗户的大小(小或大)及其分布(南,东)或西向),不透明封套的绝缘水平(无绝缘的初始情况,不良绝缘和高度绝缘的情况)以及玻璃的种类(单玻璃开始的情况以及带有高或低太阳光的双层或三层玻璃的改进情况)已经检查了热增益系数(SHGC)。意大利的三种气候(北部的米兰,中部地区的罗马和南部的墨西拿)被认为是南欧的代表。推论统计分析已用于确定每种翻新解决方案中的主要因素以及加热和冷却方面的经济节省。

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