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Experimental Studies on the Distribution of Air Flows in Air Cooled Steam Condensers

机译:空气冷却蒸汽冷凝器中空气流分布的实验研究

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Abstract The uniformity degree of the air distribution over the heat-exchange surface of an air cooled condenser (ACC) plays an important role since it determines the efficiency of this surface’s usage. In this paper, this factor at a special stand, where all the main processes of an air flow were simulated, is studied. The typical design of the A-framed ACC was chosen as the basis for the study. Two ACC models differing from one another by the presence of a diffuser after the fan were studied. Each of the models was tested in two versions: with a low-speed electric motor and a high-speed electric motor with a gearbox. In the ACC models, heat transfer surfaces were simulated by a set of flat metal grids with a uniform distribution of square cells. The aerodynamic drag of a set of grids was preliminarily selected so that the Euler criteria were equal for the full-scale object and model. During the tests, the air velocities in front of and behind the grids were measured by traversing, and the velocity fields (isotachs) of the cooling air in these sections were plotted. A condenser with a low-speed electric motor provides the most uniform distribution of cooling air over the heat-exchange surface, while condensers with a high-speed electric motor and gearbox and with a diffuser have significantly greater nonuniformity in the air supply. During the “suction” operation, the flow distribution is more uniform but worse than that for the version with a low-speed electric motor. The effect of the nonuniform velocity field of cooling air on the heat transfer of ACC is estimated. The real condenser module was calculated for various flow and velocity distributions along the tube length. Losses of heat removal due to the nonuniformity of the air flow of the considered circuits can be estimated within 1–3% at a ±50% deviation of the flow rate from the average value.
机译:摘要空气冷凝器(ACC)的热交换表面上的空气分布的均匀程度起着重要作用,因为它决定了这种表面使用的效率。在本文中,研究了这种特殊展台的因素,其中模拟了空气流的所有主要过程。选择A-Frame ACC的典型设计作为研究的基础。在研究风扇后,通过存在扩散器的两个ACC模型彼此不同。每种型号都在两种版本中进行了测试:用低速电动机和带齿轮箱的高速电动机。在ACC模型中,通过一组扁平金属栅格模拟传热表面,具有均匀的方形电池分布。初步选择了一组网格的空气动力学阻力,使得全尺度对象和模型等于欧拉标准。在测试期间,通过横穿栅格和后面的空气速度,并且绘制这些部分中的冷却空气的速度场(Isotach)被绘制。具有低速电动机的冷凝器在热交换表面上提供了冷却空气的最均匀分布,而具有高速电动机和齿轮箱和漫射器的冷凝器在空气供应中具有显着更大的不均匀性。在“抽吸”操作期间,流量分布更均匀但比具有低速电动机的版本更均匀。估计冷却空气的非均匀速度场对ACC的传热的影响。真实的冷凝器模块用于沿管长度的各种流动和速度分布计算。由于所考虑的电路的空气流量的不均匀性导致的热除去损失可以在1-3%内估计,从平均值的流速的±50%偏差。

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