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Effect of different building envelope materials on thermal comfort and air-conditioning energy savings: A case study in Basra city, Iraq

机译:不同建筑包络材料对热舒适度和空调节能的影响 - 以伊拉克巴斯拉市为例

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Recently, a numerous number of houses has been built using AAC materials, which consume the most amount of energy in the building sector by Heating, ventilation, and air-conditioning (HVAC) systems. Thus, the most significant factor affecting the energy consumed by HVAC systems is the materials used in the building. Building models are important tools in determining the energy efficiency of buildings. Numerous strategies have been established to construct building models, such as the weight, gray, and black boxes, as well as hybrid models. Hybrid models have not been researched extensively, although they provide a reasonable representation of actual indoor conditions. Therefore, this study employs a hybrid calculation model for the analysis of physical and empirical correlations to evaluate thermal comfort in buildings, which reflects their energy consumption. The residential load factor (RLF) technique is adopted owing to its systematic organization and ease of use, which is achieved by dividing the model into submodels. The model is verified and validated by drawing a comparison with field measurements and the output obtained from ANSYS software. The actual field measurements and ANSYS outputs match the outputs of the proposed model; the results show small residual errors, indicating a well-defined model structure. The cost and energy savings of vernacular buildings and autoclaved aerated concrete (AAC) (or low-cost) buildings have been highly debated in Basra city. Models of these two different building materials are simulated within the MATLAB/Simulink environment. Their results indicate that the vernacular building has the highest energy saving potential up to 47.83% over 24 h a day. These results provide an excellent argument to realize the benefits of vernacular buildings by reducing the dependency on powered cooling.
机译:最近,使用AAC材料建造了许多房屋,该材料通过加热,通风和空调(HVAC)系统消耗了建筑物中最多的能量。因此,影响HVAC系统消耗的能量的最重要因素是建筑物中使用的材料。建筑模型是确定建筑物能源效率的重要工具。已经建立了许多策略来构建建筑模型,例如重量,灰色和黑匣子,以及混合模型。杂交模型尚未广泛研究,尽管它们提供了实际室内条件的合理代表性。因此,本研究采用混合计算模型来分析物理和经验相关性,以评估建筑物中的热舒适性,这反映了它们的能量消耗。由于其系统组织和易用性,采用了住宅负载因子(RLF)技术,这是通过将模型分成子模型来实现的。通过与现场测量和从ANSYS软件获得的输出进行比较来验证和验证模型。实际的现场测量和ANSYS输出匹配所提出的模型的输出;结果显示出小的残余错误,表示明确定义的模型结构。白话建筑物和高压灭菌混凝土(AAC)(或低成本)建筑的成本和节能在巴斯拉市高度辩论。这两个不同的建筑材料的模型在Matlab / Simulink环境中模拟。它们的结果表明,白话建筑的最高节能潜力每天24小时高达47.83%。这些结果通过减少电力冷却依赖性来实现白话建筑物的好处。

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