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The Experience in Operation and an Efficiency Analysis for the Use of a Backpressure Steam Turbine Generator Unit in a Boiler House

机译:运行经验和锅炉房中使用背压汽轮机发生器单元的效率分析

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Turbine generators can be used for utilization of the potential of steam lost in pressure-reducing and cooling units of operating boiler houses. This approach brings about an independent source of power the price of which can be much lower than the established tariff. The features in reconstruction of a boiler house in the city of Bratsk, Irkutsk oblast, carried out in 2012 are examined. Steam generated in a KE-50-14-225 boiler is routed to a 0.3–0.5 MPa common header for use in deaerators and steam-water heaters. Considering an increase in the electricity tariffs, a decision was made to install a 500-kW backpressure turbine generator in the boiler house in parallel with the pressure-reducing unit to generate auxiliary power. The criteria for selecting the number and power of turbine generator units depending on the required steam generation, operating conditions of the consumer, the level of electric loads of the boiler house, and the existing heat supply system are shown. The specifics in operation of the turbine generator unit are examined. To ensure safe and reliable operation of the unit, it is advisable to increase the number of monitored parameters through extension of the normal instrumentation system. The discounted payback period for the reconstruction cost and additional costs for installation of a second turbine generator unit are estimated. The boiler house regimes, a change in the prices for fuel and electricity, and the operator’s labor cost are considered. After installation of the turbine generator, the specific fuel consumption for electricity generation amounts to 180 g.c.e /(kW h). In 2017, the electricity generation cost was 1.23 rubles/(kW h) with the average tariff of 2.13 rubles/(kW h). The discounted payback period for the performed reconstruction does not exceed 6 years, and that for further reconstruction is 8 years.
机译:涡轮发电机可用于利用在经营锅炉房屋的减压和冷却装置中丢失的蒸汽潜力。这种方法带来了独立的电源来源,价格远低于既定的关税。研究了2012年在2012年开展的伊尔库茨克州城市布拉茨克市锅炉房屋的重建功能。在KE-50-14-225锅炉中产生的蒸汽被路由到0.3-0.5MPa的常用头用于脱气器和蒸汽热加热器。考虑到电力关税的增加,在锅炉房中安装了一个决定,与减压装置并联安装在锅炉房屋中以产生辅助电源。示出了根据所需的蒸汽产生,消费者的操作条件,锅炉房屋的电荷水平和现有的供热系统的选择,选择涡轮发电机单元数量和功率的标准。检查涡轮发电机单元的操作细节。为确保单位的安全可靠运行,建议通过普通仪表系统扩展来增加受监控参数的数量。估计重建成本的折扣投资回收期和安装第二涡轮发电机单元的额外费用。锅炉屋制度,燃料和电力价格的变化,审议了运营商的劳动力成本。在安装涡轮发电机之后,发电量的特定燃料消耗量为180 G.E /(kW h)。 2017年,发电成本为1.23卢布/(千瓦H),平均关税为2.13卢布/(kW h)。所表演重建的折扣投资回收期不超过6年,并且进一步重建是8年。

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