전화: +8615690122018 E-mail (이메일): [email protected]


Types of Finned Tubes Used in Waste Heat Boilers - DATANG 핀 튜브 열교환기: 고객의 요구에 맞는 효율적인 열 전달 솔루션.

Types of Finned Tubes Used in Waste Heat Boilers

Finned Tubes in Waste Heat Boilers: Types, Materials, and Design Optimization

Waste heat boilers (WHBs) recover thermal energy from high-temperature industrial exhaust gases (예), metallurgical furnaces, chemical tail gases, incinerators) to generate steam or hot water. Finned tubes are crucial heat exchange elements, significantly impacting thermal efficiency and operational reliability. Their design addresses unique challenges like high thermal resistance on the flue gas side, corrosion, fouling, 및 열 응력.

나는. Core Requirements for Finned Tubes in WHBs

  1. High Thermal Efficiency
    • Extended fin surfaces increase heat transfer area by 3–5× compared to bare tubes15, enhancing turbulence for gas-side heat transfer.
  2. High-Temperature & 내식성
    • Must withstand flue gas temperatures of 300–1200°C and corrosive components (SO₂, NOₓ, HCl, alkali salts).
  3. Slagging and Erosion Resistance
    • Critical for high-dust environments (예), coal/biomass combustion); optimized fin spacing prevents ash accumulation.
  4. Structural Integrity
    • Robust welding/forming techniques ensure resistance to thermal cycling stresses during startup/shutdown.

2 세. Common Types of Finned Tubes

1. High-Frequency Welded Spiral Finned Tubes

  • Process‌: Fins bonded to the base tube via high-frequency induction heating and pressure welding (>95% weld adhesion rate).
  • Advantages‌: Excellent heat conduction (low contact resistance); customizable fin pitch for dust control.
  • Applications‌: Medium-high temperature gases (≤800°C) in steel (blast furnace gas) or chemical plants.

2. Integral Extruded Finned Tubes

  • Process‌: Base tube (Cu, Al, steel) mechanically rolled to form seamless fins, eliminating weld weaknesses.
  • Advantages‌: Smooth surface reduces ash adhesion; corrosion-resistant materials (예), stainless steel for HCl/SO₂ environments).
  • Applications‌: Low-temperature/corrosive gases (≤400°C), 예), waste incineration flue gas.

Table 1: Key Parameters of Finned Tubes in WHBs

핀 높이 (밀리미터) Fin Pitch (밀리미터) 재료 Max. Temp. Key Applications
Welded Spiral 12–25 8–20 Carbon/Stainless Steel ≤800°C Steel mills, chemical plants
Integral Extruded 8–15 4–12 Al/Cu/Stainless Steel ≤400°C Waste incineration, acid gases

3세. 재료 선택 & Design Considerations

  1. 재료 선택

    • 탄소강‌: Cost-effective for non-corrosive gases (<450°C).
    • 스테인리스 (304/316L)‌: For acidic/high-chloride environments.
    • 알루미늄‌: Low-temperature, low-corrosion applications.
  2. Anti-Fouling Design

    • Wider fin spacing (≥12 mm) for high-dust gases; staggered tube arrangement reduces ash accumulation.
    • Regular sootblowing mechanisms (steam/air) maintain efficiency.
  3. Thermal Stress Management

    • Expansion joints/U-tube bundles accommodate differential thermal expansion.

정맥. Performance Impact

  • Energy Savings‌: Low fluid resistance in large-diameter finned tubes reduces pump/fan power by 30–50%.
  • Efficiency Gain‌: Finned tubes boost WHB thermal efficiency by 25–40% compared to bare-tube designs.

결론

Finned tubes are vital for optimizing WHB performance. High-frequency welded types dominate high-temperature scenarios, while integral extruded tubes excel in corrosive/low-temp environments. Material resilience, fouling control, and thermal adaptability determine longevity and efficiency, directly impacting industrial energy recovery.

 

이전:

다음:

답을 남겨주세요

저작권 © 2024 www.dtfinnedtube.com 판권 소유.

전화 +8615690122018

링크드인 링크드인

스카이프 살다:[email protected]

왓츠앱 +8615690122018

위챗 QR 코드 위챗

큐큐(QQ) 939249279

E-mail (이메일) [email protected]

맨 위로 이동 맨 위로 이동

위챗

WeChat QR Code

WeChat으로 QR 코드 스캔

메시지를 남기세요