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Review of the Coal-Fired, Over-Supercritical and Ultra-Supercritical Steam Power Plants

机译:燃煤,超超临界和超超临界蒸汽发电厂的回顾

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The article presents a review of developments of modern high-capacity coal-fired over-supercritical (OSC) and ultra-supercritical (USC) steam power plants and their implementation. The basic engineering solutions are reported that ensure the reliability, economic performance, and low atmospheric pollution levels. The net efficiency of the power plants is increased by optimizing the heat balance, improving the primary and auxiliary equipment, and, which is the main thing, by increasing the throttle conditions. As a result of the enhanced efficiency, emissions of hazardous substances into the atmosphere, including carbon dioxide, the "greenhouse" gas, are reduced. To date, the exhaust steam conditions in the world power industry are p_0 ≈ 30 M Pa and t_0 = 610/620℃. The efficiency of such power plants reaches 47%. The OSC plants are being operated in Germany, Denmark, Japan, China, and Korea; pilot plants are being developed in Russia. Currently, a project of a power plant for the ultra-supercritical steam conditions p_0 ≈ 35 M Pa and t_0 = 700/720℃ with efficiency of approximately 50% is being studied in the EU within the framework of the Thermie AD700 program, project AD 700PF. Investigations in this field have also been launched in the United States, Japan, and China. Engineering solutions are also being sought in Russia by the All-Russia Thermal Engineering Research Institute (VTI) and the Moscow Power Engineering Institute. The stated steam parameter level necessitates application of new materials, namely, nickel-base alloys. Taking into consideration high costs of nickel-base alloys and the absence in Russia of technologies for their production and manufacture of products from these materials for steam-turbine power plants, the development of power plants for steam parameters of 32 MPa and 650/650℃ should be considered to be the first stage in creating the USC plants as, to achieve the above parameters, no expensive alloys are require. To develop and construct OSC and USC head power plants, joint efforts of the government, experts in power industry and metallurgy, scientific institutions, and equipment manufacturers are required.
机译:本文介绍了现代大容量燃煤超超临界(OSC)和超超临界(USC)蒸汽发电厂的发展及其实施情况。据报道,基本工程解决方案可确保可靠性,经济性能和低大气污染水平。通过优化热量平衡,改善主辅设备,以及通过增加节流条件来提高发电厂的净效率。由于效率的提高,减少了向大气中排放的有害物质,包括二氧化碳,“温室气体”。迄今为止,世界电力行业的排气条件为p_0≈30 M Pa,t_0 = 610/620℃。这种发电厂的效率达到47%。 OSC工厂正在德国,丹麦,日本,中国和韩国运营;俄罗斯正在开发试验工厂。目前,欧盟正在Thermie AD700计划的框架内研究一个电厂的项目,该项目用于超超临界蒸汽条件p_0≈35 M Pa和t_0 = 700/720℃,效率约为50%。 700PF。在美国,日本和中国也已开始对此领域的调查。俄罗斯全热工程研究所(VTI)和莫斯科电力工程研究所也在寻求工程解决方案。规定的蒸汽参数水平需要应用新材料,即镍基合金。考虑到镍基合金的高成本,以及在俄罗斯缺乏使用这些材料生产和制造用于汽轮机电厂的产品的技术,因此开发了蒸汽参数为32 MPa和650/650℃的电厂应该将其视为创建USC工厂的第一步,因为要实现上述参数,不需要昂贵的合金。要开发和建设OSC和USC主电厂,需要政府,电力行业和冶金专家,科研机构以及设备制造商的共同努力。

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