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Non-destructive Method for Root Elongation Measurement in Soil Using Acoustic Emission Sensors : II.Spatial measurement of single root elongation

机译:利用声发射传感器在土壤中进行根伸长测量的无损方法:II。单根伸长的空间测量

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A non-destructive method for measurements of spatial root elongation in soil, using acoustic emission(AE)sensors, was developed. Growing roots passing in close proximity to soil particles generate AE pulses, which are detectable as counts by AE sensors. Previously, vertical maize(Zea mays L.)root elongation in soil was successfully measured using AE sensors. The method was expanded to measure spatial maize root elongation in a rectangular stainless steel container. Three AE sensors were placed vertically at 15mm intervals on each of the four side walls of the container. Spatial root tip position was expressed by the three axes(x, y, z). Relative AE counts on the x axis and y axis(Rxp and Ryp)were obtained from three sensors on the same and opposite planes as a fraction of total AE counts on both sides of this plane. Rxp and Ryp were linearly related to root tip positions on the x axis and y axis, respectively. The relationship was expressed by the equation:Y=0.740-0.0420X(r=0.861**)where X is the actual distance from the sensor to root tip position and Y is Rxp or Ryp. Spatial root tip positions can be estimated by the relative AE counts using this regressing equation. Thus, spatial root tip positions were expressed as a function of time. The trajectory of root tip position estimated by AE sensors was consistent with that obtained from actual measurements after excavation of the root from soil. This method can be used to give continuous and three-dimensional information of root tip movements, the rate and direction of root elongation.
机译:开发了一种使用声发射(AE)传感器测量土壤空间根伸长的无损方法。靠近土壤颗粒的正在生长的根部会产生AE脉冲,可以通过AE传感器进行计数。以前,使用AE传感器成功测量了土壤中垂直玉米(Zea mays L.)根系的伸长率。该方法得到了扩展,可以测量矩形不锈钢容器中玉米根的空间伸长率。将三个AE传感器以15mm的间隔垂直放置在容器的四个侧壁上。空间根尖位置由三个轴(x,y,z)表示。从相同和相对平面上的三个传感器获得x轴和y轴上的相对AE计数(Rxp和Ryp),作为该平面两侧总AE计数的一部分。 Rxp和Ryp分别与x轴和y轴上的根尖位置线性相关。该关系用以下公式表示:Y = 0.740-0.0420X(r = 0.861 **)其中X是从传感器到根尖位置的实际距离,Y是Rxp或Ryp。使用此回归方程可通过相对AE计数估算空间根尖位置。因此,空间根尖位置被表示为时间的函数。由AE传感器估计的根尖位置轨迹与从土壤中挖出根后从实际测量获得的轨迹一致。此方法可用于提供连续和三维信息的根尖运动,根伸长率和方向。

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