shell side

英 [ʃel saɪd] 美 [ʃel saɪd]

网络  净化气体进入换热器之壳侧; 净化气体进入热换器之壳侧; 壳侧; 管壳式换热器之壳侧; 壳方

化学



双语例句

  1. Numerical Study of Turbulent Flow Characteristics in Shell Side of Shell-and-Tube Heat Exchangers
    换热器壳侧紊流流动特性的数值研究
  2. The figures of average field-synergy angles in the shell side are obtained using user-defined programs.
    编制自定义程序提取了壳侧平均场协同角的直观图。
  3. Numerical research on flow field and temperature field of shell side near-wall region of longitudinal shell-and-tube heat exchanger
    纵流壳程换热器壳程近壁区流场和温度场数值研究
  4. Numerical Simulation of Flow in Shell Side of Shell-and-Tube Heat Exchangers with Helical Baffles Dynamic Character Analysis of Herring-bone Folded-plate Ribbed Shell
    螺旋折流板换热器壳侧流动的数值模拟人字形密肋式折板拱壳的动力特性分析
  5. An Experimental Study on the Shell Side Flow and Heat Transfer of Shell and Tube Type Heat Exchangers
    管壳式换热器壳侧流动与传热的实验研究
  6. Online Cleaning Technology of Multi-Phase Flow to Shell Side of Shell and Tube Heat Exchanger(ⅰ)& Numerical Simulation
    管壳式换热器壳程多相流在线清洗技术研究(Ⅰ)&数值模拟
  7. Analysis of Field Coordination on Heat Exchanger Shell Side with Different Diameter Tubes and Holding Structure
    异径布管夹持支撑结构换热器壳侧场协同分析
  8. The heating medium will flow through the heater tubing while the fuel gas will fill the shell side of the heater.
    加热介质流过加热器管,而燃气则注入加热器壳程。
  9. Three-dimensional numerical simulation for shell side turbulent flow and heat transfer characteristics in baffle-plate heat exchangers
    折流板换热器壳程湍流流动与换热的三维数值模拟
  10. Numerical investigation on shell side support of longitudinal flow heat exchanger
    纵流式换热器壳侧支撑方式的数值研究
  11. By the use of a numerical method calculated was the flow and heat transfer process on the condenser shell side of a 328 MW steam turbine condenser imported from Italy. An analysis is given of the rationality of the condenser design.
    采用数值方法对大港电厂从意大利引进的328MW汽轮机凝汽器壳侧的流动与传热过程进行了计算,对该凝汽器的设计合理性进行了分析。
  12. Published literature on heat transfer and pressure drop for two phase two com ponent gas liquid mixtures on the shell side of segmentally baffled shell and tube heat exchanger is reviewed. Further research directions in this field are presented.
    对两相不互溶双组分汽(气)-液混合物在有折流板的壳管式换热器壳侧的流动和传热研究进行了回顾,并提出了进一步研究方向。
  13. The paper presented the mechanism ot intensification of heat transfer through both tube side and shell side, and indicated the direction of development.
    从管程强化和壳程强化两方面论述了管壳式换热器强化传热技术的机理,指出了管壳式换热器今后发展中的主要方向;
  14. The calculation method for bolt pretightening force of tube side gasket and shell side gasket were proposed.
    给出了管程和壳程垫片螺栓预紧力的计算方法。
  15. Shell side flow pattern, flow resistence and heat transfer of shell and tube type exchangers with different shell side structures were systematically studied by experiments.
    对不同壳程结构的管壳式热交换器壳侧流动的流型、流阻及其传热特性进行了系统的实验研究。
  16. A study is made on the shell side two phase flow characteristic of a TEMA E shell and tube heat exchanger without bypass and leakage at the ordinary pressure and temperature.
    对常温常压下无旁路及泄漏的TEMA&E型管壳式换热器壳侧气水两相流动特性进行了研究。
  17. Study on shell side heat transfer and pressure drop characteristics of helical baffles heat exchanger
    螺旋隔板换热器壳侧传热与流阻性能研究
  18. The fluid dynamics of the flow channel within the space of shell side and the flow channel between the boundary of the tube bundle and the wall of the shell for the shell and tube heat exchangers with longitudinal flow in shell side were analyzed.
    对壳程流体纵向冲刷型管壳式换热器做了壳程管隙间流道及管束边缘与壳壁间流道的流体力学分析。
  19. Under the condition of gravity control, experimental study are carried out of heat transfer in condensers with different internal supporting structures and pipe bundle combinations, and characteristic curves of condensation heat transfer are obtained for water vapor in the shell side of condensers.
    在重力控制条件下,对不同内部支承结构与管束组合的冷凝器进行了传热实验研究,得到了水蒸气在冷凝器壳侧的冷凝传热特性曲线。
  20. Shell Side Two Phase Flow Characteristic of Shell and Tube Heat Exchanger Without Bypass and Leakage
    无旁路和泄漏的管壳式换热器壳侧气液两相流动特性
  21. The results showed that compared to conventional smooth segment baffle heat exchanger, the plate heat exchanger ( PHE) can effectively strengthen the film heat transfer coefficient of the shell side.
    研究结果表明,与传统的光滑管弓形隔板换热器相比,板式换热器能非常有效地强化空气侧的膜传热系数。
  22. Numerical simulation of the shell side flow in rod baffle heat exchangers and analysis of field coordination
    折流杆换热器壳程流场和温度场的数值模拟及场协同分析
  23. The existing problems of shell side structure for domestic current tubular fixed bed reactor are discussed and evaluated. The improvement of shell side structure by adopting outside flow deflector type inlet and outlet structure and adopting baffle rod to support reaction tube are proposed.
    探讨和评介了国内现行列管式固定床反应器的壳程结构存在的问题,提出壳程采用外导流筒式进、出口结构和采用折流杆支撑反应管的结构改进措施。
  24. Influence of the Supporting Structure of the Tube Bundles of a Heat Exchanger on the Performance of the Shell Side
    换热器管束支撑结构对壳程性能的影响
  25. Study on two-phase flow heat exchange for annular flow in shell side and the model
    TEMA-F型换热器壳侧环状流时两相流换热的实验研究与模型
  26. A Study on the Local Void Fraction at the Shell Side of No-Leak Shell and Tube Heat Exchangers
    无泄漏的管壳式换热器壳侧局部含气率的研究
  27. Experimental study is conducted to investigate the performance of heat transfer enhancement and flow resistance of air longitudinal flow over smooth tube and Petal fin formed tube in shell side of heat exchanger.
    以空气为介质,以纵向流动方式冲刷光滑管与花瓣状翅片管进行管壳式换热器壳程的传热强化与流阻性能实验研究。
  28. Studied the effects of the flow and heat transfer relation on the changes of structure parameters, the nondimensional criterion equations of heat transfer and pressure drop about the heat exchanger shell side are conducted.
    研究了新型换热器结构参数的变化对传热和流动的影响,得到该换热器壳侧传热和流动阻力的无因次准数关系式。
  29. The effects of different helical angles and pitches on the pressure drop and heat transfer coefficient of fluid in the shell side were studied using the approved numerical calculation model.
    应用验证后的数值计算模型,研究了不同螺旋角度和螺距对壳程流体换热性能和流动阻力的影响。
  30. As a shell-and-tube heat exchanger condenser is important to power plant, steam and non-condensable gases is existed in shell side of condenser.
    作为管壳式换热器的凝汽器在电厂中有其重要的作用,而凝汽器壳侧是由凝结和不凝结气体组成。