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A NOVEL VARIABLE SPEED CONSTANT FREQUENCY GENERATION SYSTEM FOR STEAM TURBINE AND BOILER FEED PUMP

机译:一种新型汽轮机和锅炉供给泵的变速恒频发电系统

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The steam-driven mode of boiler feed pump usually controls speed by adjusting the opening of the intake valve of the steam turbine. This method will result in valve loss, especially in the condition of light load. In this paper, a new steam-driven BFP system with a motor which is driven by full-power converter is proposed. Steam turbine, pump and motor are coaxially connected. With the valve in a wide-open position, speed is controlled by adjusting the electromagnetic torque of the motor for generating, thus the valve loss can be reduced. Based on flow characteristics of valves and speed-torque characteristics of turbines and pumps, this paper proves that the proposed system can reduce losses, save energy and improve efficiency when compared with traditional driven mode. Then model of this power generation system is established. In view of requirements under specific working condition, control strategy for working mode switching between intake valve and converter is studied, which is capable of maintaining flexibility of this BFP generation system in different conditions. Finally, a practical case is studied to prove the feature of energy saving and feasibility and effectiveness of the system are validated by simulation.
机译:锅炉供给泵的蒸汽驱动模式通常通过调节蒸汽涡轮机的进气阀的开口来控制速度。该方法将导致阀门损耗,尤其是在轻负载的条件下。本文提出了一种具有由全功率转换器驱动的电动机的新型蒸汽驱动的BFP系统。蒸汽轮机,泵和电动机同轴连接。利用阀门处于宽开口位置,通过调节电动机的电磁扭矩来控制速度,从而可以降低阀损​​。基于阀门和泵的阀门和速度扭矩特性的流动特性,本文证明了与传统驱动模式相比,该系统可以减少损失,节省能源,提高效率。然后建立了该发电系统的模型。考虑到在特定工作条件下的要求,研究了进气阀与转换器之间的工作模式切换的控制策略,能够在不同条件下保持该BFP生成系统的灵活性。最后,研究了实际情况,以证明通过模拟验证系统的节能和可行性和有效性的特征。

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