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Theoretical development of a thermal model for the reheater of a power plant boiler

机译:电站锅炉再热器热模型的理论开发

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摘要

A three-dimensional numerical model for simulating flow and heat transfer in the reheater of a boiler is presented. The aim is to describe, as well as possible, the geometry of the reheater and to be able to perform different mass flows of steam along each of the tube serpentines. The model thus makes it possible to calculate the temperature of the tube surfaces along the reheater. The porosity concept is employed, along with empirical correlations for the convective heat transfer coefficient and the radiation heat transfer coefficients. The radiation equations consider most of the radiative effects of the gas: ash content, triatomic gases, type of fuel and temperatures, tube layout and distances and temperatures of other radiative surfaces. The model is proposed with a view to using the measured values of velocities, temperatures and gas composition in the reheater as boundary conditions. The equations are solved using a general purpose computational fluid dynamics (CFD) code in conjunction with specific calculations for the source terms. (c) 2006 Elsevier Ltd. All rights reserved.
机译:提出了模拟锅炉再热器中流动和传热的三维数值模型。目的是尽可能地描述再热器的几何形状,并且能够沿着每个蛇形管执行不同的蒸汽质量流。因此,该模型可以计算沿再热器的管子表面的温度。采用了孔隙率概念,以及对流传热系数和辐射传热系数的经验相关性。辐射方程式考虑了气体的大多数辐射效应:灰分,三原子气体,燃料类型和温度,管子布局以及其他辐射表面的距离和温度。提出该模型是为了将再热器中的速度,温度和气体成分的测量值用作边界条件。使用通用计算流体动力学(CFD)代码结合源项的特定计算来求解方程。 (c)2006 Elsevier Ltd.保留所有权利。

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