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ECONOMIC ANALYSIS FOR NOZZLE GOVERNING WITH OVERLOAD VALVE REGULATION TECHNOLOGY

机译:超负荷阀调节技术控制喷嘴的经济分析

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With the implementation of low-carbon economy policy, clean energy (such as wind and solar energy) has been developing rapidly, and the percentage is increasing year by year; On the other hand, with a steadily growing percentage of residential electricity consumption and commercial electricity consumption, resulting in large electricity load difference between peak and valley, the load related requirements of modern steam power plants are noticeably changing. Whereas the past units being designed in base load now have to take part in peak load, and usually in a low load operation, unable to play its advantages of high efficiency in design load. In the article the current three main governing methods (i.e. nozzle governing, throttling governing and bypass governing) for steam turbine will be discussed and evaluated under economical criteria focused on the above described challenges for future power generating technologies. A new governing method is Nozzle governing with Overload Valve Regulation, which keeps the advantage that main steam pressure of the Nozzle governing steam turbine is higher under partial load conditions, and weakens the influence of the low efficiency of governing stage on high pressure turbine, effectively improves the efficiency of steam turbine unit under partial load conditions. In the turbine adopted the new governing method of Nozzle governing with Overload Valve Regulation, the first stage is governing stage, divided into several groups. Main steam from boiler goes through the main stop valve and main steam control valve in sequence, and then turns to the governing stage. When the load is below 85%THA, main steam control valve I、 II and III are fully opened, main steam control valve IV is fully closed, and the unit is in sliding pressure operation. When the load is 85%THA, the main steam pressure can reach the rated pressure. With the load increasing, main steam control valve IV starts to open, but the main steam pressure maintains the rated pressure, adjusted to THA when main steam control valve IV is fully opened and the flowrate of governing stage reaches the maximum. In the load more than THA condition, the bypass valve starts to open, the main steam goes through the bypass steam room into the certain stage (as fourth), to meet the requirements of the super load, adjusted to VWO (about 108%THA) when the bypass valve is fully opened. Through the detailed description about the scheme set and calculation analysis about economy benefit of the new regulation technology of Nozzle governing with Overload Valve Regulation, it shows that with the annual load range of 40%THA-85%THA, the economy of turbine adopted the new regulation technology is better than bypass governing by about 21.6 kJ/kW.h.(CSPE)
机译:随着低碳经济政策的实施,清洁能源(如风和太阳能)迅速发展,百分比年增长一年;另一方面,随着稳步增长的住宅用电量和商业用电量的百分比,导致峰值和谷之间的电力负荷差异,现代蒸汽发电厂的负荷相关要求显着变化。然而,在基础负载中设计的过去的单位现在必须参加峰值负荷,并且通常处于低负载操作,无法在设计负载中发挥其高效率的优点。在制品中,将在蒸汽涡轮机中讨论并在经济标准下讨论和评估蒸汽轮机的三个主要控制方法(即喷嘴,管制和旁路),其专注于上述挑战用于未来发电技术的经济标准。一种新的控制方法是具有过载阀调节的喷嘴,这使得管液涡轮机的主蒸汽压力在局部负荷条件下更高的优点,有效地削弱了控制高压涡轮机的低效率的影响在局部负荷条件下提高汽轮机单元的效率。在涡轮机中采用过载阀调节的喷嘴新的控制方法,第一级是控制阶段,分为几组。来自锅炉的主蒸汽依次穿过主挡阀和主蒸汽控制阀,然后转向控制阶段。当负载低于85%THA时,主蒸汽控制阀I,II和III完全打开,主蒸汽控制阀IV完全关闭,并且该装置处于滑动压力操作。当负载为85%tha时,主蒸汽压力可以达到额定压力。随着负载增加,主蒸汽控制阀IV开始打开,但主蒸汽压力保持额定压力,当主蒸汽控制阀IV完全打开并且控制阶段的流量达到最大值时,调整到THA。在负载超过tha条件下,旁通阀开始打开,主蒸汽通过旁路蒸汽室进入某个阶段(如第四),以满足超级负荷的要求,调整为VWO(约108%tha )当旁通阀完全打开时。通过关于方案集的详细说明和关于经济利用的经济效益的喷嘴控制的新调节技术,它表明,随着40%的40%-85%Tha,涡轮机的经济采用了新的调节技术优于绕过约21.6 kJ / kW.h的旁路。(cspe)

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