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Coupled characterization and experimental verification of heat transfer and air leakage in a quad-sectional rotary air preheater

机译:耦合表征及实验验证在四剖形旋转空气预热器中的传热和空气泄漏

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摘要

Air leakage has a substantial impact on the efficiency of rotary air preheater, and is closely related to their temperature distribution. In this paper, for a quad-sectional rotary air preheater, the coupled model of thermodynamics and air leakage is proposed and verified by the experimental results of a double reheat 1000 MW power generator unit. The air leakage of each chamber, the temperature distribution of the fluid and the matrix can be obtained by using the three-dimensional finite-difference method. On the basis of previous research, the indirect air leakage is considered in the coupled model, as well as the interaction between the heat transfer and the air leakage. The simulation results show that the total air leakage of the quad-sectional air preheater is 33.1% less than that under the tri-sectional preheater condition. Additionally, compared with the experimental results, the difference values of the air leakage rates and the maximum duct outlet temperature are 0.21% and 2.1 degrees C, respectively, which manifest the model accuracy. The results indicate that, in comparison to previous research methods, this model can accurately obtain the temperature distribution of air preheater.
机译:空气泄漏对旋转空气预热器的效率产生了重大影响,并且与其温度分布密切相关。在本文中,对于四截面旋转空气预热器,通过双重再加热1000 MW发电机单元的实验结果提出和验证了热力学和空气泄漏的耦合模型。通过使用三维有限差分方法,可以获得每个腔室的泄漏,流体的温度分布和基质的泄漏。在先前的研究的基础上,在耦合模型中考虑了间接空气泄漏,以及传热与空气泄漏之间的相互作用。仿真结果表明,四段空气预热器的总空气泄漏比三分段预热器条件下的33.1%小33.1%。另外,与实验结果相比,泄漏速率的差值和最大管道出口温度分别为0.21%和2.1摄氏度,这表明了模型精度。结果表明,与先前的研究方法相比,该模型可以准确地获得空气预热器的温度分布。

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