欢迎访问过程工程学报, 今天是

›› 2009, Vol. 9 ›› Issue (4): 625-633.

• 流动与传递 •    下一篇

双套管密相气力输运过程的数值模拟和能耗分析

管春生 张春霞 陈灵 魏小林 马履翱 张宇   

  1. 中国电力科学研究院 中国电力科学研究院 中科院力学所工程科学部 中科院力学所工程科学部 中国电力科学研究院
  • 收稿日期:2008-12-19 修回日期:2009-04-07 出版日期:2009-08-20 发布日期:2009-08-20
  • 通讯作者: 张春霞

Numerical Simulation and Estimation of Energy Consumption for the Pneumatic Conveying Using Double-tube Socket

GUAN Chun-sheng, ZHANG Chun-xia, CHEN Ling, WEI Xiao-lin, MA Lv-xiang, ZHANG Yu,   

  1. China electric power research institute China electric power research institute Division of Engineering sciences, Institute of Mechanics, the Chinese academy of sciences Division of Engineering sciences, Institute of Mechanics, the Chinese academy of sciences China electric power research institute
  • Received:2008-12-19 Revised:2009-04-07 Online:2009-08-20 Published:2009-08-20
  • Contact: ZHANG Chun-xia,

摘要: 基于计算流体力学理论,提出一种可用于预测双套管密相气力输送系统能耗的新方法. 与以往依靠经验的计算方法不同,本工作将输送管道分为起始段与充分发展段两部分,分别进行详细的计算流体力学模拟后汇总得出整个系统的总能耗. 压力梯度为750 Pa/m的情况下,计算所得物料输送速率为10 t/h,耗气量为290 m3/h,实验所得物料输送速率为8.0 t/h,耗气量240 m3/h,证明本数模方法是可靠的.

关键词: 计算流体力学, 双套管, 能耗, 物料输送速率

Abstract: A new method based on CFD (computational fluid mechanics) is used to estimate the energy consumption of DTS (double-tube socket) pneumatic conveying. The whole pipeline is divided into developing and fully developed parts. After CFD simulation of both parts the overall energy consumption is calculated. The results show that under the pressure gradient of 750 Pa/m in the developed part the predicted material flow rate is 10 t/h and the measurement material flow rate 8 t/h. Meanwhile the predicted gas consumption is 290 m3/h and the measurement gas consumption 240 m3/h. The predicted results are in fair agreement with the experimental results, suggesting that the new method is reliable and applicable.

Key words: computational fluid mechanics, double-tube socket, energy consumption, material flow rate

中图分类号: