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Temperature-drop sensor for determination of drying curves in conventional lumber drying

机译:温度下降传感器,用于确定常规木材干燥中的干燥曲线

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摘要

Conventional lumber drying is carried out by forcing hot air to flow across a pile of lumber layers separated by wood strips. The airflow provides the heat required to warm up the lumber and produce the moisture evaporation and, in theory, the difference in temperature at each side of the load can be used to estimate the evaporation rate. The main problem with this approach is that typical temperature sensors that are installed in conventional kilns are not accurate enough to measure the temperature drop across the load during periods of low evaporation. In this paper, a new sensor to measure the temperature drop across the load is proposed and tested in three experimental drying runs of 2" x 6" spruce-pine lumber. The results demonstrate that after calibration, the temperature drop across the load can be used to determine drying curves in conventional lumber drying. In the particular case of this study, calibration was performed by multiplying the experimental temperature drop across the load by a constant factor, which was adjusted by identifying the correction factor that best simulated the experimental green moisture content of the three lumber charges.
机译:常规的木材干燥是通过迫使热空气流过由木条隔开的一堆木材层来进行的。气流提供了加热木材并产生水分蒸发所需的热量,从理论上讲,负载两侧的温度差可用于估算蒸发速率。这种方法的主要问题是,传统窑炉中安装的典型温度传感器的精度不足以测量低蒸发期间负载上的温度下降。在本文中,提出了一种新的传感器来测量负载上的温度下降,并在2“ x 6”云杉-松材的三个实验干燥过程中进行了测试。结果表明,校准后,负载上的温度下降可用于确定常规木材干燥中的干燥曲线。在本研究的特殊情况下,通过将负载上的实验温度降乘以恒定因子来进行校准,该常数可通过确定最能模拟三种木材料的实验绿色水分含量的校正因子进行调整。

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