1) anodically protected shell and tube heat exchanger
阳极保护管壳式换热器
3) tubular heat exchanger
管壳式换热器
1.
Loads analysis of anchor bolts of a horizontal tubular heat exchanger;
卧式管壳式换热器地脚螺栓受力分析
2.
The Estimate of Heat Exchange Tubes Number in the Tubular Heat Exchanger;
管壳式换热器换热管根数的估算
3.
Thermoeconomic design of tubular heat exchanger;
管壳式换热器的经济学优化设计
4) shell and tube heat exchanger
管壳式换热器
1.
The Direction and Development of shell and tube heat exchanger;
管壳式换热器的研究进展与方向
2.
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
3.
Evaluation methods to heat transfer enhancement performance in shell of shell and tube heat exchanger;
管壳式换热器壳程强化传热评价方法分析
5) shell-and-tube heat exchanger
管壳式换热器
1.
Investigation in baffle-rod support on shell-and-tube heat exchanger;
管壳式换热器杆式支撑结构的研究与应用
2.
Analysis of the transient heat transfer performance of shell-and-tube heat exchangers;
管壳式换热器瞬态换热性能分析
3.
The Existing Problems in Design and Operation of Shell-and-Tube Heat Exchanger;
管壳式换热器设计和运行中存在的问题分析
6) tube-shell heat exchanger
管壳式换热器
1.
Numerical simulation of heat transfer enhancement by strip-coil-baffles in tube-bundle for a tube-shell heat exchanger;
螺旋折流片强化管壳式换热器内管束传热数值模拟(英文)
2.
An experimental comparative investigation on the influence of centrifugal buoyancy on the heat transfer enhancement of swirling flow was carried out via exchanging hot and cool water in shell-side and tube-side respectively in a swirling flow tube-shell heat exchanger,in which heat transfer was enhanced by spiral fluted tubes and rod baffles.
故在有旋流存在的管壳式换热器中,离心浮力对换热器传热性能的影响不可忽视。
3.
A four-tube mathematic-physical model with two coil-strip sleeved tubes and two bare ones oppositely placed at each corner of a square was established for quadrilateral tube arrangement in a coil-strip-baffled tube-shell heat exchanger.
针对螺旋折流片管壳式换热器的正方形布管方式,建立了相间套螺旋折流片的四管数学物理模型,利用FLUENT软件对该模型的流动与传热情况进行了数值模拟;并与光滑通道中及单管螺旋折流片模型的流动和传热结果进行了对比。
补充资料:阳极保护管壳式换热器
分子式:
CAS号:
性质:采用阳极保护技术的管壳式换热器。通过向管壳式换热器施加阳极电流,使其处于钝化状态而免受换热介质的腐蚀。换热器由铬镍不锈钢等可钝化的金属制作,设有一根或数根与壳体绝缘的阴极以及供控制、监测用的辅助电极,采用带自控系统的低压直流电源(通常为恒电位仪)维持换热器表面电位处于钝化电位,使设备得到保护。主要用于硫酸生产中干燥塔和吸收塔循环酸的冷却。其特点是:耐腐蚀,寿命长,传热系数高,不污染环境,可回收低温位余热。
CAS号:
性质:采用阳极保护技术的管壳式换热器。通过向管壳式换热器施加阳极电流,使其处于钝化状态而免受换热介质的腐蚀。换热器由铬镍不锈钢等可钝化的金属制作,设有一根或数根与壳体绝缘的阴极以及供控制、监测用的辅助电极,采用带自控系统的低压直流电源(通常为恒电位仪)维持换热器表面电位处于钝化电位,使设备得到保护。主要用于硫酸生产中干燥塔和吸收塔循环酸的冷却。其特点是:耐腐蚀,寿命长,传热系数高,不污染环境,可回收低温位余热。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条