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Modeling the performance of the indirect dry cooling system in a thermal power generating unit under variable ambient conditions

机译:在可变的环境条件下对火力发电单元中的间接干式冷却系统的性能进行建模

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In order to evaluate the impact of ambient conditions on the performance of indirect dry cooling system quantitatively, an analytical model was established which combined the numerical simulation of thermo-flow performance of natural draft dry cooling tower and the thermodynamic analysis of water steam system in a 660 MW thermal power generating unit. The model was verified by experimental results and practical operating data, respectively. Temperature and flow fields of cooling air, as well as the back pressure of turbine were obtained under various natural crosswind and ambient temperature conditions. Standard coal consumption rates were acquired accordingly. The results indicated that the back pressure and standard coal consumption rate increased with the ambient temperature and wind speed. The most additional 27.72 g/kWh of standard coal consumption rate can be caused by the natural crosswind and high ambient temperature for the investigated power generating unit. A sensitivity analysis was conducted and the results showed that the value of the standardized coefficients for natural crosswind speed and ambient temperature were 0.446 and 0.888, respectively. Therefore, though the natural crosswind could deteriorate the flow field of ambient air, the ambient temperature had a greater impact on the standard coal consumption rate. (C) 2018 Elsevier Ltd. All rights reserved.
机译:为了定量评估环境条件对间接干式冷却系统性能的影响,建立了一个分析模型,该模型将自然通风干式冷却塔的热流性能数值模拟与水蒸汽系统的热力学分析相结合。 660 MW火力发电机组。分别通过实验结果和实际操作数据验证了该模型。在各种自然侧风和环境温度条件下,获得了冷却空气的温度和流场以及涡轮的背压。相应地获得了标准煤消耗率。结果表明,背压和标准煤耗率随着环境温度和风速的增加而增加。额外的27.72 g / kWh标准煤耗率可能是由于自然侧风和所研究发电机组的高环境温度引起的。进行了敏感性分析,结果表明,自然侧风速度和环境温度的标准系数分别为0.446和0.888。因此,尽管自然的侧风会破坏周围空气的流场,但周围温度对标准煤耗率的影响更大。 (C)2018 Elsevier Ltd.保留所有权利。

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