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Climate control in vacuum dryers for convective heat transfer Part 2: Actual climates in industrial kilns and suggestions to improve kiln design

机译:对流传热用真空干燥机的气候控制第2部分:工业窑炉的实际气候和改进窑炉设计的建议

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摘要

The first part of this contribution determined the demands on climate control in vacuum drying kilns that are necessary to achieve the final moisture content variation stipulated in the European Drying Group (EDG) proposal on wood drying quality standards. In this second part of the contribution, these demands are compared with measurements of actual climates and the resulting final moisture content in vacuum kilns during industrial production. The measurements show that none of the studied industrial vacuum kilns are capable of controlling climate with acceptable accuracy. The variations in drying climate lead to large variations in final moisture content and reduced production capacities. Drying quality and drying capacity would be greatly increased with improved kiln design and improved climate control systems. Critical factors in kiln design and climate control system design necessary to maintain a controlled drying climate are listed.
机译:该贡献的第一部分确定了真空干燥窑中对气候控制的要求,这些要求是实现欧洲干燥集团(EDG)关于木材干燥质量标准的提案中规定的最终水分含量变化所必需的。在贡献的第二部分中,将这些需求与实际气候的测量结果以及在工业生产过程中真空窑炉中最终的最终水分含量进行了比较。测量结果表明,所研究的工业真空窑均无法以可接受的精度控制气候。干燥气候的变化导致最终水分含量的巨大变化,并降低了生产能力。改进窑设计和改进气候控制系统将大大提高干燥质量和干燥能力。列出了窑炉设计和气候控制系统设计中维持干燥气候受控的关键因素。

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