管壳式换热器

guǎn ké shì huàn rè qì
  • Shell and tube heat exchanger;shell-and-tube exchanger
管壳式换热器管壳式换热器
管壳式换热器[guǎn ké shì huàn rè qì]
  1. 实验结果可为对管壳式换热器的研究设计提供参考。

    The results could be used as a reference in the further research and design of the shell-and-tube exchanger .

  2. 管壳式换热器广泛应用各个行业和领域,应用最广的为火力发电厂中的凝汽器。

    The shell-and-tube exchanger is widely applied in every industry and field , especially in the condenser of the coal-fired power plant .

  3. 管壳式换热器CAD软件系统的设计

    The Design of CAD System for Shell and Tube Heat Exchangers

  4. 利用VC与SQL实现管壳式换热器的工艺设计

    Thermodynamic Designation of Tubular Heat Exchanger with VC and SQL

  5. 基于VB技术的管壳式换热器传热计算系统开发

    Development of Thermal Calculation System for Heat Exchanger Based on VB

  6. 本文的设计与研究对于管壳式换热器尤其是U形管式换热器的工程设计具有一定的参考价值。

    The design and research of the paper has certain reference value to shell-and-tube heat exchanger especially U-tube heat exchanger engineering design .

  7. 管壳式换热器优化设计及其LINGO实现

    Optimum Design for Shell and Tube Heat Exchanger and Its Realization by LINGO

  8. HTFS换热器计算程序与管壳式换热器振动分析

    Calculation Program of HTFS Heat Exchanger and Vibration Analysis of Tube & Shell Heat Exchanger

  9. 分析管壳式换热器产生振动的原因,通过实例,利用HTRI软件讨论管壳式换热器防止振动的措施。

    Analyze reason causing vibration of the shell-and-tube heat exchanger ; discuss preventing vibration measures with example by using HTRI soft ware .

  10. 简介了管壳式换热器设计中Tinker模型及Bell-Delaware方法,讨论了换热器结构性能优化的方法,建立了数学模型,编制了计算程序。

    In this paper , an introduction of Tinker model and Bell-Delaware method used for shell and tube heat exchanger design is given , an optimization method for the structural function of heat exchanger is discussed .

  11. 针对GB150-1998《钢制压力容器》和GB151-1999《管壳式换热器》两标准给出的管壳式换热器浮头法兰厚度计算公式,阐述了计算时应注意的一些问题。

    In the light of calculation formulas for shell and tube heat exchanger floating head flange thickness given by " Steel Pressure Vessels " GB 150-1998 and " Tubular Heat Exchanger " GB 151-1999 , problems that should be payed attention to in calculation are expounded .

  12. 管壳式换热器管板温度场的分析方法

    Analysis Method of Temperature Fields in Tubesheets of Tubular Heat Exchangers

  13. 管壳式换热器优化设计中的一种有效办法

    Effective Method for Optimizing Design of Shell - type Heat Exchanger

  14. 管壳式换热器新型抗振结构体系及工程设计

    Design on new anti vibration structure system of shell-and-tube heat exchangers

  15. 平板式远红外线加热炉管壳式换热器与板式换热器选型参考

    The type selection of Shell-And-Tube Heat Exchanger and Plate Heat Exchanger

  16. 管壳式换热器管束加工工艺要点分析

    Tube bundle processing elements analysis of shell and tube heat exchanger

  17. 振动分析在管壳式换热器设计中的应用

    Application of Vibration Analyzing in the Design of Tubular Heat Exchangers

  18. 管壳式换热器外导流筒接管区的应力分析

    Stress Calculation of External Guiding Flow Cylinder of Shell-and-Tube Heat Exchanger

  19. 管壳式换热器数值模拟的流动模型比较

    The comparison of two turbulence models in simulation of heat exchanger

  20. 管壳式换热器运行与维护课件的开发

    Development of Courseware on Operation and Maintenance of Tubular Heat Exchanger

  21. 管壳式换热器壳程高黏度流体的传热强化

    Enhanced heat transfer investigation on high viscosity fluid in shell-and-tube exchanger

  22. 管壳式换热器的研究进展与方向

    The Direction and Development of shell and tube heat exchanger

  23. 管壳式换热器温度载荷下的强度研究

    Tube and Shell Heat Exchanger Strength Research under Temperature Load

  24. 管壳式换热器管束振动分析及防振措施

    Vibration analysis and precautionary measure on tube bundle of shell-and-tube heat exchangers

  25. 钢制管壳式换热器管束失效原因浅析

    Failure analysis on tube bundles of steel shell-tube heat exchangers

  26. 管壳式换热器中管子和管板的胀接

    Expansion Connection between Tubes and Tube-Sheet in Shell-Tube Heat Exchanger

  27. 换热器环形外导流筒的设计及制造要点管壳式换热器外导流筒的应力计算

    Design and manufacture essentials of annular externally guide shell in heat exchanger

  28. 管壳式换热器是石油化学工业中最常见的设备。

    Shell-and-tube heat exchangers are widely used in petrochemical industries .

  29. 板式换热器换热板片微变形特性浅析GB151-1999管壳式换热器

    Discussion of heat exchange plate micro-distortion characteristics of plate exchanger

  30. 铜管&管壳式换热器设计中的几个问题

    A Few Problems in the Design of Copper Pipe Shell-and-tube Heat Exchanger