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Rotational speed adjustment of axial flow fans to maximize net power output for direct dry cooling power generating units

机译:调节轴流风扇的转速,以最大程度地增加直接干冷发电机组的净功率输出

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摘要

The power consumption of axial flow fans may account for more than 1% of the rated power output of the power generating unit, so it is of benefit to the energy efficiency of the power generating unit to propose an operation adjustment approach to axial flow fans. On the basis of representative 2 X 600 MW direct dry cooling generating units, a computational model of air-side flow and heat transfer of an air-cooled condenser (ACC) combined with exhaust steam condensation is developed, by which the airflow rate, inlet air temperature of ACCs, the power consumption of axial flow fans, turbine backpressure, and net power output of power generating units at various wind speeds and in various wind directions are obtained. The results show that the net power output in the presence of winds always decreases when the rational speeds of the first upwind row axial flow fans increase from the rated speed of 79 rpm by 10% to 86.9 rpm. However, the net power output will increase in various wind directions if the rational speeds of all the fans except the upwind first row fans increase to 86.9 rpm. This can contribute to the optimal operation of the ACC by rotational speed adjustment of axial flow fans.
机译:轴流风机的功率消耗可能占发电机组额定输出功率的1%以上,因此提出一种轴流风机运行调整方法有利于发电机组的能效。在具有代表性的2 X 600 MW直接干冷发电机组的基础上,建立了空冷冷凝器(ACC)结合废气冷凝的空气侧流和传热的计算模型,通过该模型,空气流量,入口获得了ACC的空气温度,轴流风扇的功率消耗,涡轮机背压以及各种风速和各种风向的发电单元的净功率输出。结果表明,当第一迎风排轴流风机的合理速度从79 rpm的额定速度增加10%到86.9 rpm时,存在风的净功率输出始终会降低。但是,如果除迎风第一排风扇以外的所有风扇的合理速度提高到86.9 rpm,净输出功率将在各个风向增加。通过调节轴流风扇的转速,可以有助于ACC的最佳运行。

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