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Application of active heat pulse method with fiber optic temperature sensing for estimation of wetting bulbs and water distribution in drip emitters.

机译:带有光纤温度传感的主动热脉冲法在估算滴头中的湿球和水分布中的应用。

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摘要

Through the use of the Distributed Fiber Optic Temperature Measurement (DFOT) method, it is possible to measure the temperature in small intervals (on the order of centimeters) for long distances (on the order of kilometers) with a high temporal frequency and great accuracy. The heat pulse method consists of applying a known amount of heat to the soil and monitoring the temperature evolution, which is primarily dependent on the soil moisture content. The use of both methods, which is called the active heat pulse method with fiber optic temperature sensing (AHFO), allows accurate soil moisture content measurements.udIn order to experimentally study the wetting patterns, i.e. shape, size, and the water distribution, from a drip irrigation emitter, a soil column of 0.5 m of diameter and 0.6 m high was built. Inside the column, a fiber optic cable with a stainless steel sheath was placed forming three concentric helixes of diameters 0.2 m, 0.4 m and 0.6 m, leading to a 148 measurement point network. Before, during, and after the irrigation event, heat pulses were performed supplying electrical power of 20 W/m to the steel.udThe soil moisture content was measured with a capacitive sensor in one location at depths of 0.1 m, 0.2 m, 0.3 m and 0.4 m during the irrigation. It was also determined by the gravimetric method in several locations and depths before and right after the irrigation.udThe emitter bulb dimensions and shape evolution was satisfactorily measured during infiltration. Furthermore, some bulb's characteristics difficult to predict (e.g. preferential flow) were detected. The results point out that the AHFO is a useful tool to estimate the wetting pattern of drip irrigation emitters in soil columns and show a high potential for its use in the field.
机译:通过使用分布式光纤温度测量(DFOT)方法,可以以较小的间隔(厘米级)对长距离(千米级)以较高的时间频率和高精度测量温度。热脉冲法包括对土壤施加已知量的热量并监测温度的变化,这主要取决于土壤的水分含量。两种方法的结合使用,即称为主动热脉冲法和光纤温度传感(AHFO),可以进行精确的土壤湿度测量。 ud为了实验研究润湿方式,例如形状,大小和水分布,用滴灌喷头建造直径为0.5 m,高为0.6 m的土壤柱。在立柱内部,放置带有不锈钢护套的光缆,形成三个直径分别为0.2 m,0.4 m和0.6 m的同心螺旋,通向148个测量点网络。在灌溉事件发生之前,之中和之后,都执行热脉冲,向钢提供20 W / m的电力。 ud使用电容式传感器在0.1 m,0.2 m,0.3深度的一个位置测量土壤含水量m和0.4 m在灌溉期间。还可以通过重量分析法在灌溉前后的多个位置和深度进行测定。 ud在渗透过程中可以令人满意地测量发射器灯泡的尺寸和形状演变。此外,检测到一些难以预测的灯泡特征(例如,优先流动)。结果表明,AHFO是估算土壤中滴灌喷头的润湿模式的有用工具,并显示出在田间使用的巨大潜力。

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