Ma Dixuan, Wang Yupeng, Zhou Dian, Zhu Zongzhou
School of Human Settlements and Civil Engineering, Xi'an Jiaotong Unversity, Xi'an, 710049, China.
Technology Innovation Center for Land Engineering and Human Settlements, Shaanxi Land Engineering Construction Group Co., Ltd and Xi'an Jiaotong University, Xi'an, China.
Environ Sci Pollut Res Int. 2023 Feb;30(9):23135-23154. doi: 10.1007/s11356-022-23809-9. Epub 2022 Nov 1.
Pocket parks, the green infrastructures with small sizes and flexible layouts, are suitable for thermal environment improvement in the urban built-up block with limited green space. To quantify the relationship between pocket parks and the thermal environment in western China, two parks in the built-up block of Xi'an were selected. By field measurement, the cooling effect could be extended 100 m from the park boundary, connecting two parks. Furthermore, the road and greening within the block demonstrate significant influence on the cooling diffusion by regression analysis. Based on ENVI-met simulation, the ratio of the tree and the grass, the layout of the tree and the grass, and the layout of the paving were analyzed at different proportions of greening and paving of the park. Finally, a combination of the daytime physiological equivalent temperature (PET) and nighttime air temperature (AT) was proposed to choose the optimum layouts: the trees concentrated in the center and the pavement with more roads. Results can provide insights for designing pocket parks based on the thermal environment improvement.
口袋公园作为规模小、布局灵活的绿色基础设施,适合在绿地空间有限的城市建成区改善热环境。为了量化中国西部口袋公园与热环境之间的关系,选取了西安市建成区内的两个公园。通过实地测量,降温效果可从公园边界延伸100米,连接两个公园。此外,通过回归分析可知,街区内的道路和绿化对降温扩散有显著影响。基于ENVI-met模拟,在公园绿化和铺装比例不同的情况下,分析了树木与草地的比例、树木与草地的布局以及铺装布局。最后,提出结合白天生理等效温度(PET)和夜间气温(AT)来选择最佳布局:树木集中在中心,路面道路较多。研究结果可为基于热环境改善的口袋公园设计提供参考。