Based on general inspections of parks in Guangzhou, Shenzhen and Zhuhai, nine parks with low-impact development facilities were selected as survey sites, and field investigations, records, and analysis of types, structures, scales, and plant landscape of low-impact development facilities were carried out. The results showed that the most commonly used types of low-impact development facilities in park green space were planting ditch, rain gardens and dry streams. A total of 87 species of plants were recorded in the low-impact development facilities, belonging to 79 genera in 49 families, and most of them were Fabaceae and Poaceae. Different planting areas of low-impact development facilities had different requirements for plant tolerance according to water accumulation. Rain gardens and dry streams were the most abundant in terms of plant species and configuration landscapes. Finally, in view of the widespread problems in the application of low-impact development facilities in park green space, suggestions were recommended based on plant selection, landscape configuration and post-maintenance.
GAO Hong-juan
,
SHI Zheng-jun
,
XU Yan
,
LEI Jiang-li
. Analysis of Plant Application to Low Impact Development Facilities of Park Green Space in Guangdong[J]. Subtropical Plant Science, 2020
, 49(04)
: 292
-298
.
DOI: 10.3969/j.issn.1009-7791.2020.04.008
[1] 邹玉庭. 园林植物在海绵城市建设中的应用分析[J]. 现代园艺, 2018(22): 115–117.
[2] 住房城乡建设部. 海绵城市建设技术指南-低影响开发雨水系统构建[J]. 建设科技, 2015(1): 4–5.
[3] 栾春凤,申潇潇. 基于低影响开发的郑州大学新校区雨水利用设施规划初探[J]. 现代园林, 2015,12(6): 483–487.
[4] 胡帆. 海绵设施在公园绿地规划设计中的应用——以杭州市东湖路市民公园为例[D]. 杭州: 浙江大学硕士学位论文, 2019.
[5] 肖仕和. 南昌市小区低影响开发应用研究[D]. 南昌: 南昌大学硕士学位论文, 2018.
[6] 朱海雄,龚颖,程昊. 岳阳市现状城市绿地海绵功能优化策略[J]. 广东园林, 2017,39(5): 82–87.
[7] 陈文希. 厦门市海绵城市建设中雨水花园植物的选择及应用[J]. 河南建材, 2018(5): 449–451.
[8] 韩君伟. 基于海绵城市的雅安雨水花园植物材料综合评价[J]. 中南林业科技大学学报, 2018,38(11): 131–135.
[9] 李文超,朱梦梦,张睿舒. 海绵城市建设中减少蚊患的海绵设施设计研究[J]. 住宅与房地产, 2018(21): 74, 122.
[10] Marsalek J, Jimenez-Cisneros B, Karamouz M. Urban Water Cycle Processes and Interactions[M]. Leiden: Taylor & Francis, 2006.
[11] 何仲坚,朱纯,冯毅敏. 广东湿地植物资源概况[J]. 广东园林, 2006(S1): 20–23.
[12] 高艳芝,宗俊勤,孟璠,陈静波,赵瑞霜,刘建秀. 不同暖季型草坪草种耐淹性能评价[J]. 草地学报, 2014,22(5): 1021–1030.
[13] 陈钰婷,陈钰文,林石狮,高玉蓉,罗连,于法钦. 广东省雨水花园适用乡土植物筛选及应用分析[J]. 亚热带植物科学, 2017,46(3): 274–280.
[14] 刘佳妮. 雨水花园的植物选择[J]. 北方园艺, 2010(17): 129–132.
[15] 弋舒昱,万红友. 人工湿地植物及其去污效果研究进展[J]. 环境保护科学, 2012,38(1): 19–22.
[16] 董晶. 城市绿地海绵适宜性评价体系构建与优化策略研究[D]. 济南: 山东建筑大学硕士学位论文, 2019.