Development and Calibration of Automated Multiple-Ring Infiltrometer

Y. Olotu, F. Parker-Ikharo., A. A. Rodiya, Evboifo N.O, A. Jibril
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Abstract

An automatic triple-ring infiltrometer was developed using a set of pre-set sensors and transducer (AP 403, AP 404, AP 405 and AP 406, RAP001 and RAP002). The aluminum probe sensors were graduated and arranged in series to monitor the rate at which water is infiltrating into the soil layer. The working principle of automatic triple-ring infiltrometer was developed using six probes with depth calibration of 1.0mm, 26.7 mm, 12.4 mm, and 12.7 mm, respectively. The result obtained showed strong agreement with a coefficient of determination R2= 0.963, indicating positive proportionality between cumulative infiltration and time taken for the water to infiltrate at different depths. The instrument has a measuring accuracy of ± 0.3mm infiltration depth. The device works effectively under biochar amended soil and other soil formations with high precision. Accurate infiltration data generated by the instrument would be applied to estimate the depth of water available to plant and predict possible agricultural drought.
自动化多环渗透计的研制与标定
采用一组预先设置好的传感器和传感器(ap403、ap404、ap405和ap406、RAP001和RAP002),研制了一种自动三环渗透计。铝探针传感器被分级排列,以监测水渗入土层的速度。采用6个探头,分别标定深度为1.0mm、26.7 mm、12.4 mm和12.7 mm,研究了自动三环渗透仪的工作原理。所得结果与决定系数R2= 0.963吻合较好,表明累积入渗与不同深度水入渗时间成正比关系。仪器测量精度为±0.3mm浸润深度。该装置在生物炭改性土壤和其他土壤形态下有效工作,精度高。该仪器产生的准确入渗数据将用于估计植物可用的水深度,并预测可能发生的农业干旱。
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