Our H-type finned tube heat exchanger elements are designed to deliver exceptional heat transfer efficiency. With their outstanding self-cleaning properties and proficiency in flue gas waste heat recovery, they are ideal for boiler renovations. The convective heat transfer coefficient is directly related to fin pitch, while inversely related to fin height and width. Their integrated heat transfer capacity hinges on fin efficiency, convective heat transfer coefficient, and finned ratio. Be mindful that pressure drop increases with fin height and width.
To boost heat exchange efficiency and expand surface heat transfer capabilities, our H-type finned tubes have become a popular choice in boilers and waste heat recovery applications. Originating from rectangle finned tubes, their unique groove structure imparts exceptional anti-wear and anti-fouling performance, making them a robust and reliable option for any heat exchanger system.
We customize our products to meet specific customer requirements and situational needs. Our H-fin tubes are designed and manufactured for maximum safety, reliability, and efficiency. With an independent quality assurance system, our high heat transfer efficiency H-fin tubes minimize flue gas resistance and are engineered for compact spaces.
· For oversized or overweight cargos, we utilize frame boxes to facilitate easy handling.
· For standard goods, we prefer the use of ordinary containers.
· Once loaded, we ensure goods are thoroughly reinforced for safe transport.
Boasting 38 years of expertise in industry research, development, and manufacturing, we have ample production capacity to meet diverse needs.
Quality Control
1. We provide impact test and strength calculation reports, including detailed material information.
2. Our 100% non-destructive testing (NDT) reports cover steel plates, tubes, and electrodes.
3. We conduct X-ray, γ-ray, and liquid penetrant inspections on welding seams to ensure exceptional quality.
4. Hydraulic test reports guarantee standard working pressure and safety.