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首页> 外文期刊>Journal of Thermal Science and Engineering Applications: Transactions of the ASME >Modeling Strategy for the Analysis of Forced Draft Air-Cooled Condensers Using Rotational Fan Models
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Modeling Strategy for the Analysis of Forced Draft Air-Cooled Condensers Using Rotational Fan Models

机译:使用旋转风扇模型分析强制风冷冷凝器分析的建模策略

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摘要

Air-cooled condenser (ACC) design methodologies use empirical correlations that are unable to account for the complex flow phenomena associated with ACCs. Numerical models are seen as an alternative evaluation tool. This paper details the development of a modeling strategy for an ACC in the computational fluid dynamics (CFD) code of Open-FOAM. The axial flow fan is modeled using the extended actuator disk model (EADM) and validated using the B2a-fan. A good agreement between experimental and numerical results are noted for the volumetric flow rates expected in the ACC operating range. The A-frame heat exchanger is also validated using the empirical data. The ACC operating point is numerically and analytically determined. An overprediction of the numerical results to the analytical solution is attributed to the presence of kinetic energy recovery and validated using experimental results. A numerical recovery coefficient of 0.527 is measured and correlates well with the experimentally determined coefficient of 0.553.
机译:风冷的冷凝器(ACC)设计方法使用无法考虑与ACCs相关的复杂流现象的经验相关性。数值模型被视为替代评估工具。本文详细介绍了开放式泡沫计算流体动力学(CFD)代码中ACC的建模策略的开发。轴流式风扇使用扩展的执行器盘模型(EADM)进行建模并使用B2A-FAN进行验证。对于预期的ACC操作范围期望的体积流速,注意到实验和数值结果之间的良好一致性。使用经验数据还验证A帧热交换器。 ACC操作点在数值和分析确定。对分析解决方案的数值结果的过度预测归因于存在动能回收并使用实验结果验证。测量0.527的数值回收系数,并在实验确定的0.553系数良好地相关。

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