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利用GPR多频天线振幅包络平均值法估算滴灌棉田土壤盐分含量
引用本文:张金珠,邹杰,王振华,宗睿,谭明东. 利用GPR多频天线振幅包络平均值法估算滴灌棉田土壤盐分含量[J]. 农业工程学报, 2021, 37(8): 99-107
作者姓名:张金珠  邹杰  王振华  宗睿  谭明东
作者单位:石河子大学水利建筑工程学院,石河子 832000;现代节水灌溉兵团重点实验室,石河子 832000
基金项目:国家自然科学基金项目(51869027),兵团科技创新团队项目(2019CB004)
摘    要:土壤盐渍化问题严重制约着农业经济发展,快速准确地掌握农田土壤的盐渍化信息是盐渍化防治的前提.为准确快速地了解滴灌棉田土壤盐分含量情况,该研究采用探地雷达(Ground Penetrating Radar,GPR)多频天线(250 MHz和1000 MHz)对典型滴灌棉田土壤进行探测,通过GPR振幅包络平均值法(Aver...

关 键 词:土壤  盐分  膜下滴灌  探地雷达  雷达波振幅包络平均值  BP神经网络
收稿时间:2021-01-12
修稿时间:2021-03-15

Estimation of soil salt content in drip irrigation cotton field using GPR multi-frequency antenna amplitude envelope average method
Zhang Jinzhu,Zou Jie,Wang Zhenhu,Zong Rui,Tan Mingdong. Estimation of soil salt content in drip irrigation cotton field using GPR multi-frequency antenna amplitude envelope average method[J]. Transactions of the Chinese Society of Agricultural Engineering, 2021, 37(8): 99-107
Authors:Zhang Jinzhu  Zou Jie  Wang Zhenhu  Zong Rui  Tan Mingdong
Affiliation:1.College of Water Conservancy and Architectural Engineerin, Shihezi University, Shihezi 832000, China; 2. Key Laboratory of Modern Water-saving Irrigation of Xinjiang Corps of Production and Construction, Shihezi University, Shihezi 832000, China
Abstract:Abstract: The prevention and control of saline soil is of great significance to the sustainable development of agriculture in Xinjiang, and comprehensive knowledge of the Salt content of saline soil is a prerequisite for the prevention and control of salinization, so it is necessary to find an accurate and rapid method to estimate salt content information of saline soil. Ground Penetrating Radar (GPR) is widely used in geophysical and environmental assessment as a non-destructive detection technology. In recent years, this technology focuses on the detection of water content. However, the detection of soil salt is relatively weak due to the large dielectric loss in saline-alkali soil, the easily-absorbed electromagnetic wave energy the complex way to process radar signal, and even the different frequency combinations are needed to test, all of which above bring great troubles to the detection of salt. However, the rapid development of dielectric models in salinized soil makes it possible to use this technique to retrieve salt content. In order to better understand the soil salt content in drip irrigation cotton field, a typical drip irrigation cotton field was selected as the research object to be detected with a Canada''s Ekko PRO series GPR multi-frequency antenna (250 MHz and 1 000 MHz). Then, the soil dielectric constant was obtained through radar amplitude envelope Average method (AEA). Soil salt content was estimated by adopting the Dobson saline soil dielectric model (Dobson dielectric model of saline soil, Dobson) as the theoretical tools. Meanwhile, the dielectric constant, soil bulk density, water content, and soil clay content were applied as the input variables of the model; Multiple Linear Regression (MLR) method was used to establish soil salinity inversion model; BP neural network (BP) was employed for simulation and prediction. Finally, the accuracy of salt content inversion by MLR model, BP model and Dobson model was evaluated based on the measured salt content. The results showed that: (l) The effective depth of GPR 250 MHz and 1000 MHz frequency antenna AEA method was 0-30 cm. (2) The dielectric constant obtained by 1 000 MHz frequency antenna AEA had a good polynomial relationship with the measured water content, and the fitting effect and accuracy of the measured water content and the inverse water content were good (R2, RMSE, MER were 0.96, 1.61%, and 7.25%, respectively). (3) Among the three salt inversion models, the inversion accuracy of Dobson salinized soil dielectric model was significantly higher than that of the other two methods, with R2 and RMSE of 0.91 and 0.313 g/kg respectively. Therefore, it is suitable and reliable to use GPR multi-frequency antenna AEA method to estimate soil salt content in cotton fields under drip irrigation. This method provides a new way to retrieve soil salt content and enriches the methods and means of detecting soil salt content.
Keywords:soil   salt   drip irrigation under mulch   ground penetrating radar   radar wave amplitude envelope average   BP neural network
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