• CN:11-2187/TH
  • ISSN:0577-6686

›› 2012, Vol. 48 ›› Issue (4): 146-154.

• 论文 • 上一篇    下一篇

三分仓回转再生式空气预热器漏风设计计算模型

刘福国;郝卫东;姜波   

  1. 山东电力研究院
  • 发布日期:2012-02-20

Modeling for Leakages Calculation in Design of Rotary Regenerative Preheater

LIU Fuguo;HAO Weidong;JIANG Bo   

  1. Shandong Electric Power Research Institute
  • Published:2012-02-20

摘要: 由于采用旋转再生的热量传递方式,回转式空气预热器在运行中压力泄漏和携带泄漏难以避免,三分仓预热器的泄漏发生在多个部位,泄漏气流数目达18支,轴向和周向压力泄漏相互作用,形成复杂的气体流动网络。建立三分仓回转式空气预热器全面的漏风设计计算模型,在已知预热器进出口烟气和空气压力、温度以及出口空气流量、进口烟气流量的情况下,采用给定的密封间隙数据,通过求解描述泄漏和混合过程的方程组,确定所有泄漏气流的方向和流量,进而得到流过传热元件的实际气体流量等参数。利用一台600 MW锅炉三分仓回转式预热器的实际数据,模拟计算不同密封间隙时的气体泄漏,结果表明,一次风泄漏量约占空气泄漏量的75%;实际流过传热元件的一次风流量占预热器入口一次风流量的72%~86%;密封间隙变化对一次风系统的影响远大于二次风;忽略烟气携带泄漏会导致预热器漏风率的测量值比实际值低0.85%左右。

关键词: 回转式预热器, 密封, 三分仓, 泄漏, 再生换热

Abstract: Pressure and carryover leakages are inherent in operation of rotary air preheater due to regenerative heat transfer mode. 18 leakage flows take place in multiple sites, including peripheral and axial pressure leakages interacted with each other, which formulate a complex network of gas flow in tri-sectional rotary air preheater. The objective of this paper is to provide a comprehensive modeling for leakages calculation in the design of the preheater. It is based on the leakage mass flow rates governed by the matrix rotation and pressure drops across the seals, together with mass and energy balance equations in mixing processes. Air and flue gas temperature and pressure inlet/outlet the preheater, primary and secondary air mass flow rates outlet the preheater, flue gas mass flow rates inlet the preheater, as well as seal clearance are considered as known in the model, the leakage mass flow rates and directions, and actual gas flow rates through the matrix are determined by solving pressure leakage and mixing equations. For a tri-sectional rotary air preheater of a 600 MW boiler, pressure and carryover leakages are simulated in various seal settings, the results clearly show that primary air leakage accounts for about 75% of the amount of air leakage, the actual primary flow through the matrix accounts for 72% to 86% of the inlet flow, changes in seal settings have more impact on primary air system than secondary air system, ignore of flue gas carryover leakage, done as in National standards, can cause the measured air leakage rate 0.85% lower than the actual value.

Key words: Leakages, Regenerative heat transfer, Rotary air preheaters, Sealing, Tri-sectional

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