煤炭工程 ›› 2026, Vol. 58 ›› Issue (7): 30-35.doi: 10.11799/ce202607005

• 设计技术 • 上一篇    下一篇

鄂尔多斯矿区正南正北向通廊式职工公寓建筑外墙面颜色对节能减碳使用策略研究

苑晓慧   

  1. 中煤科工集团北京华宇工程有限公司,北京 110120
  • 收稿日期:2025-08-08 修回日期:2026-04-15 出版日期:2026-07-15 发布日期:2026-08-03
  • 通讯作者: 苑晓慧 E-mail:1328229102@qq.com

Energy-saving strategy of exterior wall colors for north-south oriented gallery apartment buildings in the Ordos mining area#br#

  • Received:2025-08-08 Revised:2026-04-15 Online:2026-07-15 Published:2026-08-03

摘要:

以鄂尔多斯矿区正南正北向通廊式职工公寓为研究对象,针对严寒C区气候特征,通过能耗模拟量化分析浅色系、深色系及分向颜色真石漆外墙饰面对建筑节能减碳的影响。研究基于建筑实际参数(6层框架结构,体型系数0.17,各向窗墙比0.28~0.32),分春夏秋冬四季及全年周期,对比不同外墙颜色的采暖、制冷能耗差异。为验证模型准确性,将模拟结果与同类建筑运行数据、严寒C区能耗设计指标进行交叉对比;同时开展太阳辐射强度、室外温度波动的敏感性分析,明确颜色方案的节能稳定性。结果表明:深色系在冬季可降低采暖能耗(黑色较白色节能15.19%),浅色系在夏季显著减少制冷能耗(白色较黑色节能27.48%);全年综合来看,中灰色外墙节能效果最优,较白色基准节能1.95%,对应减碳量4551kgCO2。分向颜色方案1(南向中灰+东西向浅灰+北向深灰)全年节能率达6.53%,碳排放减少29742 kgCO2。敏感性分析显示,深色系对太阳辐射波动更敏感,浅色系在室外温度升高时节能优势更显著,分向方案在气候参数波动下稳定性最优。研究为严寒C区矿区建筑外墙颜色的节能减碳策略提供了量化依据和实践参考。

关键词: 建筑节能严寒C区, 职工公寓, 真石漆, 外墙颜色, 分向设计, 能耗模拟, 敏感性

Abstract:

Abstract This study focuses on the south-north oriented corridor-type staff dormitory in the Ordos mining area, aiming to quantitatively analyze the impact of light-colored, dark-colored, and directional color real stone paint exterior finishes on building energy conservation and carbon reduction in the severe cold zone C. Based on the actual building parameters (6-story frame structure, shape coefficient 0.1659, window-wall ratio 0.28-0.32 for different orientations), the research compares the differences in heating and cooling energy consumption of different exterior wall colors through energy consumption simulation, considering seasonal (spring, summer, autumn, winter) and annual cycles.To verify the accuracy of the model, the simulation results were cross-compared with the operational data of similar buildings and the energy consumption design indicators for Severe Cold Region C?1?1??. Meanwhile, a sensitivity analysis was performed on solar radiation intensity and outdoor temperature fluctuations to clarify the energy-saving stability of the color schemes?1??1??. The results show that dark colors can reduce heating energy consumption in winter (black saves 15.19% compared to white), while light colors significantly reduce cooling energy consumption in summer (white saves 27.48% compared to black). For the annual comprehensive performance, medium gray exterior walls achieve the optimal energy-saving effect, with a 1.95% reduction compared to the white benchmark, corresponding to a carbon reduction of 4551 kgCO?. The sensitivity analysis indicates that dark colors are more sensitive to solar radiation fluctuations, light colors show more prominent energy-saving advantages as outdoor temperature rises, and the orientation-based scheme presents the best stability under climatic parameter fluctuations. This study provides quantitative basis and practical reference for energy-saving and carbon-reduction strategies of exterior wall colors in mining area buildings in severe cold zone C.

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