SUPPLEMENTS TO THE PROBLEM OF ENERGY CONSUMPTION IN REDUCING LIGNOCELLULOSES BIOMASS SIZE TO PRODUCE ENERGY

R. Sfiru, P. Cardei, C. Muraru-Ionel, V. Muraru
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Abstract

This article presents complementary results on experimental data on the process of reducing the size of plant biomass by mechanical cutting. According to the source of the experimental data, the problem of statistical modelling of the main parameters describing the process of biomass reduction was approached. A more comprehensive formulation of the list of main system parameters was also attempted, which should be considered in a minimal mathematical model. The results of this article are starting points for a systemic approach to this biomass processing process. A first systematization is fixing 13 parameters that are included in the model of the biomass size reduction phenomenon. The 13 model parameters are divided into three categories: input parameters (5), adjustment parameters (4) and output parameters (4). The performances of the interpolation formulas are evaluated using the global error and the maximum error, varying between 1% and 0.1% for the prior and 3.8% and 0.34% for the latter. Some mathematical models suggest the existence of optimal operating points. Their exploitation can only come as a result of new high-resolution experimental research, at least in terms of rotation speed.
补充能源消耗的问题在于减少木质纤维素生物量产生能量的大小
本文介绍了机械切削减少植物生物量大小过程的实验数据的补充结果。根据实验数据的来源,探讨了描述生物质还原过程的主要参数的统计建模问题。还尝试了一个更全面的主要系统参数表的公式,这应该在最小数学模型中考虑。这篇文章的结果是一个系统的方法esta生物质处理过程的起点。第一个系统化是确定13个参数,这些参数包括在生物量大小减少现象的模型中。将13个模型参数分为输入参数(5)、调整参数(4)和输出参数(4)三类,利用全局误差和最大误差(前者为1% ~ 0.1%,后者为3.8% ~ 0.34%)对插值公式的性能进行评价。一些数学模型表明存在最优工作点。它们的开发只能作为新的高分辨率实验研究的结果,至少在旋转速度方面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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