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土质对FDR水分传感器拟合参数影响的试验研究
引用本文:陈海波,冶林茂.土质对FDR水分传感器拟合参数影响的试验研究[J].气象科技,2014,42(5):888-892.
作者姓名:陈海波  冶林茂
作者单位:中国气象局河南省农业气象保障与应用技术重点实验室,郑州450003;河南省气象科学研究所,郑州450003
基金项目:中国气象局河南省农业气象保障与应用技术重点实验室开放研究基金项目“自动土壤水分多传感器数据融合观测技术研究”(AMF201210)、公益性行业(气象)科研专项“冻土及干土层自动化观测技术研究”(GYHY201106042)资助
摘    要:通过制作人工土柱的方法,对壤土、黏土、砂土等土质进行FDR(Frequency Domain Reflectometry)水分传感器拟合标定试验,分析了传感器频率与土壤水分之间的关系,以及不同质地土壤对传感器标定参数的影响。数据分析结果表明:FDR土壤水分传感器感应频率随土壤体积含水量的增加而单调减小,具有很好的相关性,不同的土质对土壤水分传感器标定参数影响较大,黏土测试的传感器归一化频率范围在0.64~0.94之间,壤土测试的传感器归一化频率范围在0.4~0.86之间,砂土测试的传感器归一化频率范围在0.3~0.94之间,土壤按类别进行标定比集中标定的效果更好。分析结果对土壤种类复杂地区的自动土壤水分观测仪精细化标定具有一定指导意义。

关 键 词:FDR  土壤水分  标定  土质
收稿时间:2013/9/12 0:00:00
修稿时间:6/6/2014 12:00:00 AM

Experimental Research on Effect of Soil Texture on Fitting Parameters of FDR Moisture Sensors
Chen Haibo and Ye Linmao.Experimental Research on Effect of Soil Texture on Fitting Parameters of FDR Moisture Sensors[J].Meteorological Science and Technology,2014,42(5):888-892.
Authors:Chen Haibo and Ye Linmao
Institution:1 CMA Henan Key Laboratory of Agrometeorological Ensuring and Applied Technique, Zhengzhou 450003; 2 Henan Institute of Meteorological Sciences, Zhengzhou 450003;1 CMA Henan Key Laboratory of Agrometeorological Ensuring and Applied Technique, Zhengzhou 450003; 2 Henan Institute of Meteorological Sciences, Zhengzhou 450003
Abstract:With the method of artificial soil columns, several kinds of soil, such as loam, clay, and sandy soil, were used in the FDR (Frequency Domain Reflectometry) moisture sensor calibration experiment to analyze the relationship between sensor frequency and soil moisture. The effects of soil textures on calibration parameters are studied through calibration experiments on different kinds of soil. The results show that the frequency of the FDR soil moisture sensor is monotonously decreasing with the increase of soil volumetric water content; the correlation is obvious, and different kinds of soil affect moisture sensor parameters remarkably. The normalized frequency of the sensor for clay testing ranges between 0.64 and 0.94, loam between 0.4 and 0.86, soil between 0.3 and 0.94. A better result is obtained in classification calibration than in concentration calibration. The experimental results have significance for the fine calibration of automatic soil water detectors in the areas with complex soil.
Keywords:FDR moisture sensor  soil moisture  calibration  soil texture
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