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Analyzing energy consumption while heating one-layer building envelopes in conditions of intermittent heating

机译:在间歇加热条件下加热一层建筑信封的同时分析能量消耗

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This paper focuses on energy consumption for heating single layer building envelopes, used in conditions of intermittent heating in different physical and mechanical and thermophysical parameters of construction materials. The authors investigated several variants of single-layer building envelopes, used frequently in building practice, with different density and coefficients of building materials thermal conductivity. For each variant of a building envelope heat leakage and time spent on heating were calculated. Heating time was calculated by both exact and approximate analytical method. Then the researchers draw a graphic dependence of energy consumption on the density of the material taking this computational data as a basis. Further analysis showed that building envelopes made of lightweight aggregate concrete and porous concrete were the most energy efficient.This paper focuses on energy consumption for heating single layer building envelopes, used in conditions of intermittent heating in different physical and mechanical and thermophysical parameters of construction materials. The authors investigated several variants of single-layer building envelopes, used frequently in building practice, with different density and coefficients of building materials thermal conductivity. For each variant of a building envelope heat leakage and time spent on heating were calculated. Heating time was calculated by both exact and approximate analytical method. Then the researchers draw a graphic dependence of energy consumption on the density of the material taking this computational data as a basis. Further analysis showed that building envelopes made of lightweight aggregate concrete and porous concrete were the most energy efficient.
机译:本文重点介绍加热单层建筑信封的能耗,用于在不同物理和机械和热物理参数的间歇加热条件下使用的建筑材料。作者研究了经常在建筑实践中使用的单层建筑包络的几种变体,具有不同的密度和建筑材料导热系数的系数。对于建筑物包络的每个变型,计算热泄漏和在加热上花费的时间。通过精确和近似分析方法计算加热时间。然后,研究人员利用能量消耗的图形依赖性对将该计算数据的材料密度作为基础。进一步的分析表明,由轻质骨料混凝土和多孔混凝土制成的建筑包络是最能效率的。本文侧重于加热单层建筑信封的能耗,用于不同物理和机械热物理参数的间歇加热条件。作者研究了经常在建筑实践中使用的单层建筑包络的几种变体,具有不同的密度和建筑材料导热系数的系数。对于建筑物包络的每个变型,计算热泄漏和在加热上花费的时间。通过精确和近似分析方法计算加热时间。然后,研究人员利用能量消耗的图形依赖性对将该计算数据的材料密度作为基础。进一步的分析表明,由轻质骨料混凝土和多孔混凝土制成的建筑包络是最能效率的能力。

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