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作 者:刘晓娟[1,2,3] 孙红召 张大磊 范春丽 田云芳[1,2,3] LIU Xiaojuan;SUN Hongzhao;ZHANG Dalei;FAN Chunli;TIAN Yunfang(Zhengzhou Normal University,Zhengzhou 450044,China;Zhengzhou Key Laboratory of Plant Landscape Diversity and Ecological Restoration,Zhengzhou 450044,China;Zhengzhou Key Laboratory of Ornamental and Medicinal Characteristic Resources and Plants,Zhengzhou 450044,China;Henan Forestry Investigation and Planning Institute,Zhengzhou 450040,China)
机构地区:[1]郑州师范学院,郑州450044 [2]郑州市植物景观多样性与生态修复重点实验室,郑州450044 [3]郑州市观赏药用特色资源植物重点实验室,郑州450044 [4]河南省林业调查规划院,郑州450040
出 处:《河南科学》2023年第2期177-182,共6页Henan Science
基 金:河南省高等学校重点科研项目(21A220007);河南省科技攻关项目(222102110281)。
摘 要:利用探地雷达测量顶板绿化乔木(朴树)根系,分别采用网格状、环状和射线状3种放线测量方式和900 MHz、1.5 GHz两种天线频率进行探测.结果显示:(1)1.5 GHz天线、网格状测量方式得到的疑似点最多效果最好,而射线状测量未得到任何数据;(2)通过分析计算得到根疑似点的空间坐标,并生成了空间分布图;(3)探测到的根系最深处为25 cm,表明顶板绿化植被的根系粗根分布浅;(4)探地雷达可用于探测根系的位置、相对分布面积,但由疑似点的散点生成根系的三维实体结构还缺乏研究基础和模型验证,因此研究认为,仅用探地雷达技术而不结合其他方法反演根系空间结构具有一定的局限性.In this study,ground penetrating radar is used to detect the root system of the roof-greening tree(Celtis sinesis Pers). Three setting out patterns,namely grid,ring and ray,and two antenna frequencies of 900 MHz and 1.5 GHz,were used respectively. The results showed that:(1)The measurement of 1.5 GHz antenna and grid setting out is most effective,while no data is obtained from radial setting-out;(2)The three-dimensional distribution mapping of suspected points is generated by calculating the spatial coordinates of the root suspected points;(3)The deepest depth of the detected root system is 25 cm,indicating that the thick root distribution of the roof greening vegetation is shallow;(4)The ground penetrating radar is effective in detecting the location and distribution area of root system,however,judging the three-dimensional spatial structure of the whole root system and generating three-dimensional solid structure from the scattered distribution of suspected points of the root system still lacks research basis and model verification. It has limitations to use only the ground penetrating radar technology without combining other methods.
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