• CN:11-2187/TH
  • ISSN:0577-6686

›› 2007, Vol. 43 ›› Issue (4): 83-87.

• 论文 • 上一篇    下一篇

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热量运输机理及在管内螺带强化传热的应用

孔松涛;董其伍;刘敏珊   

  1. 郑州大学热能工程研究中心
  • 发布日期:2007-04-15

HEAT CONVEYANCE AND APPLICATION IN ENHANCING HEAT TRANSFER WITH HEAT EXCHANGER TUBES WITH TWISTED-TAPE INSERT

KONG Songtao;DONG Qiwu;LIU Minshan   

  1. Thermal Energy Engineering Research Center, Zhengzhou University
  • Published:2007-04-15

摘要: 在较小流速和较低粘度的假设条件下,通过对流体微元能量方程变换,提出热量运输的观点。据此观点分析影响对流传热的主要因素并发展场协同理论。对螺带插入换热管内的流体受力情况进行分析,指出各个力对流场的影响。结合热量运输的观点,提出改善管内流动阻力、提高综合传热效率的方法。运用数值模拟得到管内流体流动和传热特性的分布规律。分析表明螺带后光管长度大约500~600 mm时,此段光管具有最大的综合传热系数。分析还表明在较长换热管条件下,螺带插入长度有更大的调整空间,可根据实际情况调整螺带长度以获得较大的传热系数或者较低阻力损失,而综合传热系数依然保持较高水平。证实了在热量运输机理指导下开发新的强化传热结构的可行性。

关键词: 场协同理论, 管内插入物, 强化传热, 热量运输, 数值模拟

Abstract: By modifying the energy equation of finite volume of liquid flow, the viewpoint of heat conveyance is presented under the assumption of low velocity and viscosity. The factors of heat transfer are analyzed and the field synergy principle is extended. The forces related to the liquid in heat exchanger tubes with twisted-tape insert are analyzed and the influence on the flow field is indicated. With the consideration of the viewpoint of heat conveyance, the methods of reducing the floating resistance and increasing the efficiency of integrated heat transfer are presented. The distributing rules of liquid floating in the tube and heat transfer are obtained by numerical simula-tion which shows that the slick tube has the highest integrated heat transfer coefficient when the twisted-tape insert is about 500~600 mm. The analyses indicate that the length of the twisted-tape insert has wider adjusting area to adapt to the ac-tual work condition to obtained a higher heat transfer coeffi-cient or to lower the floating resistance, and that a higher level of integrated heat transfer coefficient is still kept. The above analyses indicate that the viewpoint of heat conveyance could guide the design of new enhanced heat transfer structures.

Key words: Enhanced heat transfer, Field synergy principle, Heat conveyance, Numerical simulation, Twisted tape

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