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首页> 外文期刊>The Journal of Supercritical Fluids >Oxide scale growth and presumed exfoliation in a 700 °C or higher steam condition: A simulation study for future operations of ultra-supercritical power plants
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Oxide scale growth and presumed exfoliation in a 700 °C or higher steam condition: A simulation study for future operations of ultra-supercritical power plants

机译:在700°C或更高的蒸汽条件下氧化皮的生长和假定的剥落:超超临界电厂未来运行的模拟研究

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摘要

The world is facing the challenge of providing abundant and affordable electricity to meet the need of a growing global population, while lowering and controlling CO2 emissions. Both of these goals can be met through improving the efficiency of the boiler through increasing the operating pressure and temperature, although increasing steam temperature has been reported to be more economical than raising steam pressure. However, higher temperatures may lead to increased boiler tube failure through steam-side oxidation and fireside corrosion mechanisms. Ni-based alloys are candidate materials for these aggressive conditions. The study reported here is evaluating steam-side oxide growth in a given length of superheater and reheater tubes of ultra-supercritical boilers operating at 700 °C or higher/35 MPa steam condition under different presumed service conditions. A simple and inexpensive procedure to estimate the oxide scale growth and the metal temperature increase in a boiler tube over a period of time is proposed. Verification of the findings with the actual data from the power plants is provided. The oxide scale growth rates of nickel-based alloys at steam temperatures up to 750 °C seemed to be tolerable in service based on the procedures demonstrated here.
机译:世界正面临着提供充足且价格可承受的电力以满足不断增长的全球人口的需求,同时降低和控制CO2排放的挑战。通过增加工作压力和温度来提高锅炉的效率可以实现这两个目标,尽管据报道,提高蒸汽温度比提高蒸汽压力更为经济。但是,较高的温度可能通过蒸汽侧氧化和炉边腐蚀机制导致锅炉管故障增加。镍基合金是这些侵蚀性条件的候选材料。此处报道的研究正在评估在不同的假定服务条件下,在700°C或更高/ 35 MPa蒸汽条件下运行的超超临界锅炉的给定长度的过热器和再热器管中,蒸汽侧氧化物的生长情况。提出了一种简单而廉价的方法来估算锅炉管在一段时间内的氧化皮增长和金属温度升高。提供了来自电厂的实际数据对结果的验证。根据此处演示的步骤,在蒸汽温度高达750°C的条件下,镍基合金的氧化皮生长速率似乎可以接受。

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