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蒸汽发生器三维热工水力特性分析程序SGTH-Porous3D研发及应用 被引量:1
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作者 丛腾龙 从正 +3 位作者 刘茂龙 肖瑶 郭辉 顾汉洋 《原子能科学技术》 EI CAS CSCD 北大核心 2022年第11期2306-2317,共12页
准确预测蒸汽发生器的管内外耦合传热、管内流量分配及管外三维流动传热对U形管和螺旋管蒸汽发生器的传热和结构优化设计具有重要意义。本文基于多孔介质两流体模型研发了通用蒸汽发生器三维热工水力特性分析程序SGTH-Porous3D,并利用... 准确预测蒸汽发生器的管内外耦合传热、管内流量分配及管外三维流动传热对U形管和螺旋管蒸汽发生器的传热和结构优化设计具有重要意义。本文基于多孔介质两流体模型研发了通用蒸汽发生器三维热工水力特性分析程序SGTH-Porous3D,并利用实验数据对程序进行了验证。提出了基于局部坐标系的直管、U形弯头和螺旋管管束通用多孔介质参数化方法,建立了壳侧三维粗网格分析模型以及适用于U形管、螺旋管的管内单相、两相流动传热模型,发展了管侧流体三维并联多通道简化方法以及管壳侧跨尺寸网格数据映射和耦合传热方法。结果表明:SGTH-Porous3D程序可预测U形管和螺旋管等多型蒸汽发生器管、壳侧三维流动传热特性,可支撑蒸汽发生器的三维传热设计和流致振动分析。 展开更多
关键词 多孔介质模型 流体模型 U形管蒸汽发生器 螺旋管蒸汽发生器 计算两相流体动力学 热工水力分析 耦合传热
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CFD-DEM simulation of fluid-solid flow of a tapered column separation bed 被引量:4
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作者 Duan Chenlong Sheng Cheng +2 位作者 Wu Lingling Zhao Yuemin He Jinfeng 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2015年第5期855-859,共5页
Research on recycling waste Printed Circuit Boards(PCB) is at the forefront of preventing environmental pollution and finding ways to recycle resources.The Tapered Column Separation Bed(TCSB) is invented aiming at dis... Research on recycling waste Printed Circuit Boards(PCB) is at the forefront of preventing environmental pollution and finding ways to recycle resources.The Tapered Column Separation Bed(TCSB) is invented aiming at disposing the problem that fine particles of waste printed circuit boards cannot be separated efficiently so as to obtain further insight about the underlying mechanisms and demonstrate the separation feasibility in the tapered column separation bed.In this work,a Computational Fluid Dynamics(CFD) coupled with Discrete Element Method(DEM) model for two-phase flow has been extended to simulate the fluid-solid flow in the tapered column separation bed.Its validity is demonstrated by its successful capturing the key features of particles' flow pattern,velocity,the pressure distribution,the axial position with time and axial force for particles with different densities.Simulation results show that the plastic particles and resin particles become overflow,while copper particles,iron particles and aluminum particles successively become underflow,with a discharge water flow rate of 1 m^3/h,an obliquity of 30°.The simulated results agree reasonably well with the experimental observation.Using this equipment to separate waste PCBs is feasible,theoretically. 展开更多
关键词 Tapered column separation bed Waste printed circuit boards Computational fluid dynamics Discrete element method Fluid-solid flow
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