Modeling of a Straw Ring-die Briquetting Process

Efficient utilization of biomass resources is crucial for providing renewable energy and mitigating the risk of environmental pollution caused by crop straw burning in China. Straw ring-die briquetting forming is a convenient densification technology to make the low density biomass into briquette fu...

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Main Authors: Xianfei Xia, Yu Sun, Kai Wu, Qinghai Jiang
Format: Article
Language:English
Published: North Carolina State University 2014-09-01
Series:BioResources
Subjects:
Online Access:http://ojs.cnr.ncsu.edu/index.php/BioRes/article/view/BioRes_09_4_6316_Xia_Modeling_Straw_Briquetting
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spelling doaj-b6e3bc7d5e2948bebd3afba7660a72772020-11-25T02:26:38ZengNorth Carolina State UniversityBioResources1930-21261930-21262014-09-01946316632810.15376/biores.9.4.6316-6328Modeling of a Straw Ring-die Briquetting ProcessXianfei Xia0Yu Sun1Kai Wu2Qinghai Jiang3School of Mechanical Engineering, Nanjing University of Science and Technology, No. 200 Xiaolingwei, Nanjing 210094, China; ChinaSchool of Mechanical Engineering, Nanjing University of Science and Technology, No. 200 Xiaolingwei, Nanjing 210094, China; ChinaSchool of Mechanical Engineering, Nanjing University of Science and Technology, No. 200 Xiaolingwei, Nanjing 210094, China; ChinaSchool of Mechanical Engineering, Nanjing University of Science and Technology, No. 200 Xiaolingwei, Nanjing 210094, China; ChinaEfficient utilization of biomass resources is crucial for providing renewable energy and mitigating the risk of environmental pollution caused by crop straw burning in China. Straw ring-die briquetting forming is a convenient densification technology to make the low density biomass into briquette fuel; however, the energy consumption of this process is still a challenge. Productivity and torque modeling were carried out in this study on the basis of theoretical derivation. Generally, the straw briquetting process is divided into a compression deformation stage and an extrusion forming stage with the die structure (ring die and roller radius ratio λ) and friction angle φ being the main factors that affect the productivity. Mechanical modeling based on material compaction and calculation modeling based on die-hole pressure were considered for the calculation of σαx in the torque model. A calculation case was then conducted according to the theoretical model, and actual productivity and torque testing were performed for validation purposes. Results show that this deduced productivity model is successful because the deviation is 4.61%. The torque model determined by the calculation model based on die-hole pressure had a better accuracy with a deviation of 6.76%.http://ojs.cnr.ncsu.edu/index.php/BioRes/article/view/BioRes_09_4_6316_Xia_Modeling_Straw_BriquettingBriquettingStrawProductivityMechanical modelingTorque
collection DOAJ
language English
format Article
sources DOAJ
author Xianfei Xia
Yu Sun
Kai Wu
Qinghai Jiang
spellingShingle Xianfei Xia
Yu Sun
Kai Wu
Qinghai Jiang
Modeling of a Straw Ring-die Briquetting Process
BioResources
Briquetting
Straw
Productivity
Mechanical modeling
Torque
author_facet Xianfei Xia
Yu Sun
Kai Wu
Qinghai Jiang
author_sort Xianfei Xia
title Modeling of a Straw Ring-die Briquetting Process
title_short Modeling of a Straw Ring-die Briquetting Process
title_full Modeling of a Straw Ring-die Briquetting Process
title_fullStr Modeling of a Straw Ring-die Briquetting Process
title_full_unstemmed Modeling of a Straw Ring-die Briquetting Process
title_sort modeling of a straw ring-die briquetting process
publisher North Carolina State University
series BioResources
issn 1930-2126
1930-2126
publishDate 2014-09-01
description Efficient utilization of biomass resources is crucial for providing renewable energy and mitigating the risk of environmental pollution caused by crop straw burning in China. Straw ring-die briquetting forming is a convenient densification technology to make the low density biomass into briquette fuel; however, the energy consumption of this process is still a challenge. Productivity and torque modeling were carried out in this study on the basis of theoretical derivation. Generally, the straw briquetting process is divided into a compression deformation stage and an extrusion forming stage with the die structure (ring die and roller radius ratio λ) and friction angle φ being the main factors that affect the productivity. Mechanical modeling based on material compaction and calculation modeling based on die-hole pressure were considered for the calculation of σαx in the torque model. A calculation case was then conducted according to the theoretical model, and actual productivity and torque testing were performed for validation purposes. Results show that this deduced productivity model is successful because the deviation is 4.61%. The torque model determined by the calculation model based on die-hole pressure had a better accuracy with a deviation of 6.76%.
topic Briquetting
Straw
Productivity
Mechanical modeling
Torque
url http://ojs.cnr.ncsu.edu/index.php/BioRes/article/view/BioRes_09_4_6316_Xia_Modeling_Straw_Briquetting
work_keys_str_mv AT xianfeixia modelingofastrawringdiebriquettingprocess
AT yusun modelingofastrawringdiebriquettingprocess
AT kaiwu modelingofastrawringdiebriquettingprocess
AT qinghaijiang modelingofastrawringdiebriquettingprocess
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