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Evaluation of the Dual-Probe Heat-Pulse Method for Measuring Water Content in Spaceflight Plant Growth Systems

机译:用于测量空间植物生长系统水含量的双探针热脉冲方法的评价

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The dual-probe, heat-pulse (DPHP) method uses temperature increase with time after heating to measure soil heat capacity, which then is related to soil volumetric water content. The coarse-textured plant growth media being considered for spaceflight applications may lead to problems in contact resistance between the medium and the probes of the DPHP sensor, which may limit the effectiveness of the method. The DPHP method was evaluated in 0.25-1 mm and 1-2 mm fritted clay media. Specific heat, determined using differential scanning calorimetry, was 830 J kg{sup}(-1)°C at 20°C for the 0.25-1 mm medium and 810 J kg{sup}(-1)°C{sup}(-1) at 20°C for the 1-2 mm medium. Good agreement between sensor measurements and independent water content measurements obtained through oven-drying was indicated by a linear regression of y=1.00x + 0.0087 and a standard error of 0.04 cm{sup}3 cm{sup}(-3). The DPHP method can be used to accurately monitor water content in the coarse media being considered for spaceflight applications.
机译:加热到测量土壤热容量,然后是有关土壤体积含水量后的双探针,热脉冲(DPHP)方法使用的温度上升用的时间。粗纹理的植物生长培养基被考虑用于航天应用程序可能导致问题,在介质和DPHP传感器的探针,这可能限制该方法的有效性之间的接触电阻。该方法DPHP在0.25-1毫米和1-2毫米烧结粘土介质进行评价。比热,使用差示扫描量热法测定,是830公斤Ĵ{SUP}( - 1)℃下在20℃下为0.25-1毫米介质和810Ĵ公斤{SUP}( - 1)℃的{} SUP( -1)在20℃下为1-2毫米平台。 ( - 3)至烘箱干燥得到的传感器测量值和独立含水量测量值之间良好的一致性是由y = 1.00倍+ 0.0087的线性回归和0.04厘米{SUP}3厘米{SUP}标准误差表示。该DPHP方法可以用于精确地监测在粗媒体含水量被考虑用于航天应用。

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