...
首页> 外文期刊>Industrial Crops and Products >A numerical model approach to predict moisture absorption in densified solid biomass during storage
【24h】

A numerical model approach to predict moisture absorption in densified solid biomass during storage

机译:一种在储存过程中预测致密固体生物质中湿润吸湿性的数值模型方法

获取原文
获取原文并翻译 | 示例

摘要

Bioenergy from wood pellets has aggressively grown due to its potential to reduce fossil fuel consumption and carbon emissions. Wood pellets demand is on rise as a result a large volume of pellets are manufactured and stored before consumption. Wood pellets are inherently hygroscopic and readily absorb moisture during storage. Increased moisture content (M) reduces the heating value, energy efficiency and mechanical durability of wood pellets. Although the moisture absorption behavior of wood pellets is well documented, no predictive model is available to simulate the moisture content in wood pellets. In this research, the kinetics of moisture absorption in wood pellets was analyzed using Fick's law of diffusion. A numerical model was developed to predict the moisture content in wood pellets for different storage conditions. The moisture absorption by wood pellets conditioned in a humidity chamber under two temperatures and two relative humidity's (RHs) was studied over a period of 45 days. The moisture absorption pattern in wood pellets followed Fick's law model with a linear initial part and an equilibrium plateau. Considering the principles of moisture absorption in porous media, an exponential equation modeled the moisture absorption in wood pellets and a good agreement was observed between the numerical model and the experimental data. The high values of coefficient of determination (R-2) and low values of root mean square demonstrated the suitability of the proposed numerical model to predict moisture content in wood pellets. This model can help the densified biomass processors to estimate the moisture uptake during storage conditions.
机译:由于潜力降低化石燃料消耗和碳排放,木质颗粒中的生物能源已经积极地生长。由于在消耗之前,木颗粒需求正在上升,因此制造大量的颗粒并储存。木质颗粒本质上是吸湿性的,并且在储存期间容易吸收水分。增加的水分含量(m)降低了木颗粒的加热值,能量效率和机械耐久性。尽管木质颗粒的吸湿行为有很好的记录,但没有可预测模型可以在木质颗粒中模拟水分含量。在这项研究中,使用Fick的扩散定律分析了木质颗粒中吸湿的动力学。开发了一种数值模型,以预测用于不同储存条件的木颗粒中的水分含量。在两个温度下的湿度室和两个相对湿度(RHS)下的木质粒料的吸湿性在45天的时间内进行了研究。用线性初始部分和平衡平台遵循木质颗粒中的水分吸收图案。考虑到多孔介质中吸湿原理,在数值模型和实验数据之间观察到木质颗粒中的水分吸收和良好协议的指数等式。判定系数的高值(R-2)和根均线的低值证明了所提出的数值模型预测木颗粒中的水分含量的适用性。该模型可以帮助致密化生物质处理器来估计储存条件期间的水分吸收。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号