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首页> 外文期刊>Drying technology: An International Journal >Drying timber in a solar kiln using an intermittent drying schedule of conventional laboratory kiln
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Drying timber in a solar kiln using an intermittent drying schedule of conventional laboratory kiln

机译:使用传统实验室窑的间歇干燥时间表在太阳能窑中干燥木材

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The purpose of this study was to apply an intermittent drying schedule developed from a conventional kiln to a solar kiln. Implementing this experiment could help better understand the oscillation of the temperature inside a solar kiln and timber quality during drying progress. The theoretical recharge and discharge curves were used to predict the temperature inside the solar kiln using experimental data obtained previously using a solar kiln. The surface and internal checks were measured using ImageJ freeware, and the development of the Moisture Content (MC) profile was assessed by coring and slicing method for the Eucalyptus delegatensis boards during drying. The results showed that the recharge and discharge model can predict the temperature with less than 2 degrees C error from the experimental data in the solar kiln. The total drying time to 12% MC was 87 days for the solar kiln. The drying rate was equivalent to the conventional kiln decreasing at an average rate of 0.2% per day. The surface check formation was found when the MC gradient between the core and the case of the board was greater than 42% at 9 days of drying in the solar kiln and conventional laboratory kiln. The applied drying schedule used in the solar kiln was successful and offered similar drying time. However, the oscillation of temperature in the intermittent drying will require further improvement to get closer conditions in a solar kiln.
机译:本研究的目的是应用从传统窑到太阳窑产生的间歇干燥时间表。实施该实验可以帮助更好地了解在干燥进展期间在太阳能窑和木材质量内的温度振荡。使用先前使用太阳能窑获得的实验数据,使用理论补给和放电曲线来预测太阳能窑内的温度。使用Imagej免费测量表面和内部检查,并且通过在干燥期间通过针对桉树奖板的芯片和切片方法进行水分含量(MC)型材的开发。结果表明,从太阳能窑中的实验数据中,再充电和放电模型可以预测低于2摄氏度的温度。太阳能窑总干燥时间为12%MC为87天。干燥速率相当于常规窑的平均速率每天0.2%。当在太阳能窑和传统的实验室窑中干燥的核心和电路板的MC梯度大于42%时,发现表面检查形成。太阳能窑中使用的应用干燥时间表是成功的,并提供了类似的干燥时间。然而,间歇干燥中的温度振荡将需要进一步改善以在太阳能窑中获得更紧密的条件。

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