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首页> 外文期刊>International Journal of Ventilation >Impact of window parameters on the building envelope on the thermal comfort, energy consumption and cost and environment
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Impact of window parameters on the building envelope on the thermal comfort, energy consumption and cost and environment

机译:窗口参数对热舒适,能耗和成本和环境的建筑信封的影响

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In this paper, the impact of window parameters (shape, design, sizes, position and orientation) on the building thermal comfort (temperature, relative humidity and discomfort period), energy consumption (lighting loads, heating and cooling loads and total energy consumption) and cost, and environment effect (CO2 emissions) is analysed under hot semi-arid climate conditions. This study considers the effective window design parameters; window to wall area ratio (WWR), position on the wall, and orientation. An experimental setup is used to validate the numerical solution of the mathematical model by Design-Builder software. Results show that window at north has the minimum interior temperature, discomfort hours, cooling load, CO2 emissions, total energy consumption and energy cost, and maximum lighting, relative humidity and heating load and contrarily the window at south. Window characteristics haven't great effect on the relative humidity. Increasing WWR increases the cooling load, interior temperature, energy consumption and cost and decreases lighting and heating loads. Window shape ratio (2-1) and middle position represent the lowest in the energy consumption contrarily ratio (1-3) and down position. Controlling, studied window parameters reduces annual cooling load by about 30%, lighting power, CO2 emissions, annual energy consumption and energy cost by about 39%, 22%, 24% and 21%, respectively.
机译:在本文中,窗口参数(形状,设计,尺寸,位置和方向)的影响在建筑物热舒适度(温度,相对湿度和不适时期),能耗(照明负载,加热和冷却负荷和总能耗)在热半干旱气候条件下分析了成本和成本和环境效应(二氧化碳排放)。本研究考虑了有效的窗口设计参数;窗口到墙面积比(WWR),墙上的位置和方向。实验设置用于通过Design-Builder软件验证数学模型的数值解决方案。结果表明,北方的窗口具有最小的内部温度,不适,冷却载荷,二氧化碳排放,总能耗和能源成本,以及最大照明,相对湿度和加热负荷以及南方的窗口。窗口特性对相对湿度没有很大影响。增加的WWR增加了冷却负载,内部温度,能耗和成本,降低了照明和加热负载。窗口形状比(2-1)和中间位置代表能量消耗中最低的比率(1-3)和下降位置。控制,研究窗口参数将年冷却负荷降低约30%,照明功率,二氧化碳排放量,年度能量消耗和能源成本分别为约39%,22%,24%和21%。

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