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SIMULATION OF HEAT TRANSFER IN COMBUSTION CHAMBER WATERWALL TUBES OF SUPERCRITICAL STEAM BOILERS

机译:超临界蒸汽锅炉燃烧室水冷壁传热的模拟

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The paper presents the results of numerical computations performed for the furnace chamber waterwalls of a supercritical boiler with a steam output of 2400?103 kg/h. A model of distributed parameters is proposed for the waterwall operation simulation. It is based on the solution of equations describing the mass, momentum and energy conservation laws. The aim of the calculations was to determine the distribution of enthalpy, mass flow and fluid pressure in tubes. The balance equations can be brought to a form where on the left-hand side space derivatives, and on the right-hand side – time derivatives are obtained. The time derivatives on the right-hand side were replaced with backward difference quotients. This system of ordinary differential equations was solved using the Runge-Kutta method. The calculation also takes account of the variable thermal load of the chamber along its height. This thermal load distribution is known from the calculations of the heat exchange in the combustion chamber. The calculations were carried out with the zone method.
机译:本文介绍了对蒸汽输出量为2400-103 kg / h的超临界锅炉的炉膛水冷壁进行数值计算的结果。提出了用于水冷壁运行模拟的分布式参数模型。它基于描述质量,动量和能量守恒定律的方程式的解。计算的目的是确定管中焓,质量流量和流体压力的分布。可以将平衡方程式化为以下形式:在左侧空间导数,在右侧-时间导数。右侧的时间导数被后向商差所取代。使用Runge-Kutta方法求解了该常微分方程组。该计算还考虑了沿腔室高度的可变热负荷。从燃烧室中的热交换的计算中知道这种热负荷分布。计算采用区域法。

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