Product Description
Customized | Application | Cooler, Condenser, Heat Exchangers,evaporator | |
Principle | Micro-channel Power Plants Parallel Condenser | Style | Corrugated/louvered/flat Fin Type |
Fins materials | Copper/aluminum/stainless steel | Full Customization | Customized |
Endplate | Galvanized/aluminum/Stainless steel | Specification | Customized |
Trademark | BENRUN | Origin | China |
Transport Package | Customized | Production Capacity | 100000pieces/Years |
MOQ | 10pcs ( sample is ok ) | Delivery time | 5-7 days for samples, 15-20 days for bulk production. |
Packaging Details
| Foam packed in inner machine,carton pack outside
|
Port
| Ningbo/ Shanghai |
A micro-channel power plants parallel condenser consists of a configuration of parallel micro-channel tubes designed to facilitate efficient heat exchange between the working fluid (such as steam) and a cooling medium (usually water). As the hot vapor or gas flows through the micro-channels, heat is transferred to the cooling water passing over the exterior surface of the tubes. This causes the vapor to condense into a liquid state, releasing heat energy. The condensed fluid is then collected and returned to the power generation cycle. The use of micro-channels increases the heat transfer surface area, enhancing condensation efficiency.
1. Enhanced Heat Transfer:Micro-channel technology significantly increases the heat transfer efficiency compared to traditional condenser designs, leading to improved power plant performance.
2. Compact Design:Micro-channel condensers are more compact compared to conventional designs, allowing for space-saving installations in power plants.
3. Energy Efficiency:The enhanced heat transfer capabilities of micro-channel condensers contribute to improved energy efficiency and overall power plant performance.
4. Reduced Water Consumption:Micro-channel condensers often require less cooling water compared to traditional designs, resulting in reduced water consumption and environmental impact.
The fin heat exchanger was one of the earliest and most successful discoveries in the process of improving tubular heat transfer. Please contact us to get Mould Specification for more details.
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