
Wide-Gap Пластинчатый теплообменник
Plate Heat Exchangers
In plate теплообменники, two fluids move in counterflow or crossflow within impermeable plate channels. Turbulence on the plate surfaces increases the heat transfer coefficient while delivering high capacity in compact dimensions. Gasketed or welded design options are selected according to fluid compatibility and operating давление.
About the Wide-Gap Пластинчатый теплообменник
Operating Principle and Design Approach
In plate теплообменники, two fluids move in counterflow or crossflow within impermeable plate channels. Turbulence on the plate surfaces increases the heat transfer coefficient while delivering high capacity in compact dimensions. Gasketed or welded design options are selected according to fluid compatibility and operating давление.
Tanpera plate теплообменник решения are sized by engineering calculation based on capacity, перепад давления, material compatibility, and обслуживание accessibility. Thanks to the modular plate pack, capacity can be increased or reduced in a controlled manner on site.
Energy Эффективность and Operating Advantages
When high heat transfer эффективность, a low approach температура difference, and optimized channel geometry come together, overall система energy consumption decreases.
Tanpera offers an end-to-end решение with проект-based selection, manufacturing, and after-sales техническая поддержка.
Key Features
- Capacity can be increased in a controlled manner on site with the modular plate pack.
- Delivers high heat transfer эффективность and a compact монтаж footprint.
- Wide application range in ОВиК, промышленные процесс, and energy применения.
Монтаж and Пусконаладка
During пусконаладка, давление testing, flow adjustment, and температура control must be performed. The Tanpera technical team provides field поддержка and training.
Послепродажное обслуживание
Система эффективность is preserved over the long term through periodic inspection and производительность measurement.
Часто задаваемые вопросы
A Wide-Gap Пластинчатый теплообменник is a compact теплообменник in which two different fluids exchange heat in counterflow or crossflow within channels between thin metal plates. Hot and cold fluids create turbulence on the plate surfaces, delivering a high heat transfer coefficient; gasketed or semi-welded designs are selected according to проект давление and fluid compatibility. Thanks to the modular plate pack, capacity can be increased or reduced in a controlled manner on site.
Compared with shell-and-tube and spiral теплообменники, plate теплообменники deliver high heat transfer capacity in much more compact dimensions. Plate spacing and channel geometry can be changed; the plate pack can be disassembled and cleaned for обслуживание. Spiral or tubular types are preferred for high-viscosity or particle-laden fluids, while plate теплообменники stand out for энергоэффективность and space savings in clean процесс and ОВиК circuits.
Plates are typically manufactured from AISI 304 or AISI 316 stainless steel; for aggressive fluids, titanium or special alloys are used. Gasket materials are selected as EPDM, NBR, or Viton according to fluid температура and chemistry. Frame and connection components are produced from carbon steel or stainless materials suitable for the operating давление; all material selection is documented according to the проект specification.
They are widely used in district heating and cooling plants, food and beverage pasteurization lines, chemical and petrochemical процессes, energy recovery применения, marine, and ОВиК проекты. The application range extends from здание heating–cooling circuits to промышленные процесс heating.
Thanks to a high heat transfer surface and a low approach температура difference, less energy is consumed in the система; fuel and electricity costs drop significantly, especially in heat recovery circuits. Optimized channel geometry balances перепад давления while reducing pump and compressor load. Эффективность is maintained for years with regular очистка and correct расчёт.
Required capacity is calculated from fluid type, расход, inlet–outlet температураs, operating давление, and application. The Tanpera engineering team uses these data to determine plate type, plate count, and channel arrangement and recommends the most suitable configuration. Процесс data you submit via the quote form or to the engineering team form the basis for correct расчёт.
For clean fluids, an annual general inspection may be sufficient; for системы with scale, sediment, or biofilm risk, plate очистка every 6–12 months is recommended. Gasket and clamping bar condition should be checked at every сервис; early intervention is advised when производительность drops or перепад давления increases. Tanpera supplies spare plates, gaskets, and сервис поддержка.
You can download the English брошюра and user manual as PDF from the Documents tab on the продукт page. Up-to-date technical documents are published regularly in this area.
You can submit your проект details via the Quote Form on the продукт page or contact our sales team at sales@tanpera.com. Our engineering team will get in touch for расчёт and pricing based on your проект data.






