Tao Zhiyi, Xu Guoqiang, Li Guo, Zhao Xiaochen, Gao Zhaokui, Shen Xin
Architecture College, Inner Mongolia University of Technology, Hohhot 010051, China.
The Key Laboratory of Grassland Habitat System and Low-Carbon Construction Technology, Hohhot 010051, China.
Plants (Basel). 2025 Jul 18;14(14):2228. doi: 10.3390/plants14142228.
Universities in severely cold regions face the dual challenge of adapting to seasonal climate variations while enhancing outdoor thermal comfort in outdoor leisure plazas. This study takes a university in Hohhot as a case study. Through field investigations conducted in summer and winter, thermal benchmarks were established. Based on this, an orthogonal experimental design was developed considering greenery layout, plant types, and surface albedo. ENVI-met was used to simulate and analyze the seasonal regulatory effects of landscape elements on the microclimate. The results show that: (1) the lower limit of the neutral PET range in Hohhot in winter is -11.3 °C, and the upper limit in summer is 31.3 °C; (2) the seasonal contribution of landscape elements to PET ranks as follows: plant types > greenery layout > surface albedo; and (3) the proposed optimization plan achieved a weighted increase of 6.0% in the proportion of activity area within the neutral PET range in both summer and winter. This study is the first to construct outdoor thermal sensation categories for both summer and winter in Hohhot and to establish a thermal comfort optimization evaluation mechanism that considers both diurnal and seasonal weightings. It systematically reveals the comprehensive regulatory effects of landscape elements on the thermal environment in severely cold regions and provides a nature-based solution for the climate-responsive design of campus plazas in such areas.
严寒地区的大学面临着适应季节性气候变化以及提升户外休闲广场热舒适度的双重挑战。本研究以呼和浩特的一所大学为例。通过在夏季和冬季进行实地调查,建立了热基准。在此基础上,考虑绿化布局、植物类型和地表反照率开展了正交实验设计。利用ENVI-met模拟并分析了景观要素对微气候的季节性调节作用。结果表明:(1)呼和浩特冬季中性生理等效温度(PET)范围的下限为-11.3℃,夏季上限为31.3℃;(2)景观要素对PET的季节贡献排序为:植物类型>绿化布局>地表反照率;(3)所提出的优化方案使夏季和冬季中性PET范围内活动区域的比例加权增加了6.0%。本研究首次构建了呼和浩特夏季和冬季的户外热感觉类别,并建立了考虑昼夜和季节权重的热舒适度优化评价机制。它系统地揭示了景观要素对严寒地区热环境的综合调节作用,并为该地区校园广场的气候适应性设计提供了基于自然的解决方案。