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Improving a Dual-Probe Heat Pulse based soil moisture sensor using insulated nichrome wire

机译:使用绝缘镍铬合金线改进基于双探头热脉冲的土壤湿度传感器

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摘要

The Dual-Probe Heat-Pulse technique has been widely used for in-situ moisture sensing. In the heater probe described in our earlier work the power consumption was 350 mW-the lowest in this category of sensors. In this paper, by employing a material selection method, we further improve the performance of the sensor by employing Parylene-coated nichrome wire and different packaging methods. The power consumption is reduced to 165 mW with a temperature rise between 1 K to 6.2 K degrees in 34% wet and dry red soils, respectively. A variant of the nichrome sensor was one that employed a ceramic tube with four longitudinal holes that eliminated the need for Parylene coating. The sensor was verified in agar agar solution and calibrated with 1200 kg/m red field soil. The compact packaging of the nichrome heater allowed us to provide a heat distribution of 3267 J/m on the probe surface which is two times more than the earlier attempts.
机译:双探头热脉冲技术已广泛用于原位湿度感测。在我们之前的工作中描述的加热器探头中,功耗为350 mW,是此类传感器中最低的。在本文中,通过采用材料选择方法,我们通过使用聚对二甲苯涂层的镍铬合金丝和不同的包装方法进一步提高了传感器的性能。在34%的潮湿和干燥红色土壤中,温度升高分别在1 K至6.2 K度之间时,功耗降低至165 mW。镍铬合金传感器的一种变体是采用带有四个纵向孔的陶瓷管,从而无需聚对二甲苯涂层。传感器在琼脂溶液中验证,并用1200 kg / m的红场土壤校准。镍铬合金加热器的紧凑包装使我们能够在探头表面提供3267 J / m的热量分布,这是早期尝试的两倍。

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