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Time-valued net energy analysis of solar kilns for wood drying: A solar thermal application

机译:用于木材干燥的太阳能窑炉的时值净能量分析:太阳能热应用

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摘要

This paper describes a LNEA (life-cycle net energy analysis) for solar thermal applications with particular reference to two typical greenhouse-type solar kilns (Oxford and Boral) for wood drying. The analysis included the simulation of future flows of OE (operational energy), and the assessment of EE (embodied energy) for the two kilns over an expected service life of 20 years. The OE streams associated with the drying of a hardwood species (Eucalyptus pilularis) were estimated by solving a solar kiln model, while a LCA (life cycle assessment) model was used for the assessment of EE components. The key objective of this paper was to carry out a time-valued net energy analysis for two significantly different kiln designs. This approach of evaluating the energy-intensive facilities (e.g. solar kilns) is novel, and may result in a robust framework for further performance/design optimization study of solar kiln designs. Based on the chosen life-cycle performance parameters, the Oxford kiln was generally found to be more productive and energy efficient than the Boral kiln for hardwood drying in Australia. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文介绍了用于太阳能热应用的LNEA(生命周期净能量分析),特别参考了两种典型的用于木材干燥的温室型太阳能窑(牛津和波拉尔)。分析包括对OE(运行能量)的未来流量进行模拟,以及对两座窑的预期使用寿命20年内的EE(嵌入式能量)进行评估。通过求解太阳能窑炉模型来估算与硬木树种(桉树)干燥相关的OE流,而使用LCA(生命周期评估)模型来评估EE组件。本文的主要目标是对两种明显不同的窑炉设计进行时间值净能量分析。这种评估高耗能设施(例如太阳能窑炉)的方法是新颖的,并且可能会为进一步研究太阳能窑炉的性能/设计优化提供强有力的框架。根据所选的生命周期性能参数,通常认为牛津窑比澳大利亚的硬木干燥用波拉尔窑更具生产力和能源效率。 (C)2015 Elsevier Ltd.保留所有权利。

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