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用于土壤水分测量的迷你内-外核磁共振传感器设计。

Mini Inside-Out Nuclear Magnetic Resonance Sensor Design for Soil Moisture Measurements.

机构信息

State Key Laboratory of Power Transmission Equipment and System Security and New Technology, Chongqing University, Chongqing 400044, China.

School of Physics and Electronic Engineering, Chongqing Normal University, Chongqing 401331, China.

出版信息

Sensors (Basel). 2019 Apr 9;19(7):1682. doi: 10.3390/s19071682.

Abstract

The improvement of water management in agriculture by exactly detecting moisture parameters of soil is crucial. To investigate this problem, a mini inside-out nuclear magnetic resonance sensor (NMR) was proposed to measure moisture parameters of model soils. This sensor combines three cylindrical magnets that are magnetized in the axial direction and three arc spiral coils of the same size in series. We calculated and optimized the magnet structure by equivalent magnetization to current density. By adjusting the radius and height between the cylinders, a circumferential symmetric constant gradient field (2.28 T/m) was obtained. The NMR sensor was set at 2.424 MHz to measure the water content of sandy soil with small particle diameter and silica sand with large particle diameter. The complete decaying, an NMR signal was analyzed through inverse Laplace transformation and averaged on a ₂ space. According to the results, moisture content of the sample is positively correlated with the integral area of ₂ spectrum peak (); ₂ of the water in small pores is shorter than that in large pores, because the movement of water molecules are limited by the inner wall of the pores. In the same volume, water in large pore sample is more than that in small pore sample, so of silica sand is larger than of sandy soil. Therefore, the sensor is capable of detecting moisture both content and pore size of the sample. This mini sensor (4.0 cm in diameter and 10 cm in length) is portable, and the lowest measurable humidity is 0.38%. Thus, this sensor will allow easy soil moisture measurements on-field in the future.

摘要

通过准确检测土壤水分参数来改善农业用水管理至关重要。为了解决这个问题,提出了一种微型内-外核磁共振传感器(NMR)来测量模型土壤的水分参数。该传感器结合了三个沿轴向磁化的圆柱形磁铁和三个相同尺寸的弧形螺旋线圈串联。我们通过等效磁化电流密度计算并优化了磁铁结构。通过调整圆柱体之间的半径和高度,获得了圆周对称的恒定梯度场(2.28 T/m)。NMR 传感器设置在 2.424 MHz 下,用于测量小粒径沙土和大粒径硅砂的含水量。通过逆拉普拉斯变换对完全衰减的 NMR 信号进行分析,并在 ₂空间上平均。结果表明,样品的含水量与 ₂谱峰积分面积呈正相关();小孔隙中的水的 ₂比大孔隙中的水的 ₂短,因为水分子的运动受到孔隙内壁的限制。在相同的体积下,大孔径样品中的水比小孔径样品中的水多,因此硅砂的 ₂大于沙土的 ₂。因此,该传感器能够检测样品的水分含量和孔径。这个微型传感器(直径 4.0 厘米,长 10 厘米)是便携式的,最低可测量湿度为 0.38%。因此,这种传感器将允许未来在现场轻松地进行土壤湿度测量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef33/6480103/e9b9ae59c99d/sensors-19-01682-g001.jpg

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