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A numerical investigation of vapor flow in large air-cooled condensers

机译:大型风冷冷凝器中蒸汽流动的数值研究

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HighlightsA novel ACC vapor flow numerical simulation method is presented.Tube inlet loss coefficient distributions determine the flow distribution in the ACC.The subsequent demands on dephlegmator performance are likely higher than expected.AbstractA numerical simulation method – using a combination of computational fluid dynamics (CFD), numerical and analytical methods – for investigating the nature of the vapor flow distribution in the primary condensers of a large ACC is presented. A definite trend in inlet loss coefficient distribution through the heat exchanger bundles is identified. The vapor flow distribution is found to be influenced by the inlet loss coefficients to such an extent that the flow distribution appears to not conform to the expected pattern typical of parallel or reverse flow manifolds. This non-uniform axial distribution of vapor amongst the primary condenser tubes places an additional demand on the dephlegmator that cannot be overlooked. This verified simulation method can be applied during the design phase of an ACC to improve the steam-side performance of these systems.]]>
机译:<![cdata [ 亮点 提出了一种新的ACC蒸汽流量数值模拟方法。 管入口损耗系数分布决定流量分布在ACC中。 随后对偏光性能的需求可能高于预期。 抽象 数值模拟方法 - 使用计算流体动力学(CFD)的组合,呈现数值和分析方法 - 用于研究大ACC的初级冷凝器中的蒸汽流动分布的性质。鉴定了通过热交换器束的入口损耗系数分布的明确趋势。发现蒸汽流量分布受入口损耗系数的影响,使得流量分布看起来不符合平行或逆流歧管的典型预期图案。初级冷凝器管中的这种非均匀轴向分布在初级冷凝器管中的额外需求额外的要求无法被忽视。该验证的仿真方法可以在ACC的设计阶段应用,以提高这些系统的蒸汽侧性能。 ]]>

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