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重力沉降-浓缩稳态过程数学模型及模拟
引用本文:宋 梨,郭亚兵.重力沉降-浓缩稳态过程数学模型及模拟[J].太原科技大学学报,2014(3):236-240.
作者姓名:宋 梨  郭亚兵
作者单位:太原科技大学环境与安全学院,太原030024
基金项目:山西省科技攻关项目(20130313006-1);山西省高等学校优势、特色重点学科建设项目(201214505)
摘    要:浓缩过程现代数学模型的建立,为沉降-浓缩工艺过程模拟仿真及其设备的选型设计提供了强有力的工具。在工业实践中,浓缩设备通常处于稳态运行状态。因此,建立浓缩机稳态过程数学模型,进行浓缩过程稳态模拟仿真,对了解浓缩工艺过程,优化浓缩工艺参数有非常重要的意义。本文通过对工业稳态浓缩过程进行研究,建立了浓缩过程稳态数学模型,并初步开发了稳态浓缩过程仿真程序。又通过对理想浓缩机进行了稳态模拟仿真,得到稳态过程的浓缩设备工艺参数的变化及其规律和浓缩机给料参数发生变化时对工艺过程的影响,尤其是对底流浓度的影响,其模拟结果可作为浓缩机设计的重要参考。

关 键 词:浓缩过程  模拟仿真  底流浓度

Mathematical Model of Sedimentation Steady-state Process of Gravity and Simulation
SONG Li,GUO Ya-bing.Mathematical Model of Sedimentation Steady-state Process of Gravity and Simulation[J].Journal of Taiyuan University of Science and Technology,2014(3):236-240.
Authors:SONG Li  GUO Ya-bing
Institution:( School of Environment and Safety, Taiyuan University of Science and Technology, Taiyuan 030024, China)
Abstract:The modern mathematical model of concentration process is established, a powerful toolfor the simulation of sedimentation process is supplied and the design of the type selection of its equipment is done. In industrial practice, concentration equipment is often in steady-state operating. Therefore, establishing steady-state process mathematical model of thickener and carrying out steady-state simulation of concentration process, are very important to understand concentration process and optimize concentration process parameters. By studying industrial concentration process of steady state, the paper establishes steady-state mathematical model of concentration process, initially develops simulation program of steady state concentration process. And the er is conducted, which gets the variety of concentration equipment process steady-state simulation for ideal thickenparameters of steady-state process and its regularity and effects on the process as a result of the variety of thickener feeding parameters, especially the effects on the underflow concentration. The simulation results could be an important reference for the thickener design.
Keywords:concentration process  simulation  undertow concentration
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