Abstract
Abstract
The article describes a method for providing additional peak power of a power-unit with help of an additional energy circuit involving a peak turbine and a hydrogen–oxygen system for energy storage and generation. This method is described on the example of K-300-240 turbine power unit. The proposed technical solutions result in the nominal, most economical mode of a power-unit operation during a day. Consequently, the specific fuel consumption is decreased, and reliability of equipment operation is increased. We have developed the technology for high-pressure gases generating that is realized in the membrane-less electrolysers. Thus, there is no need in the use of expensive and energy-intensive compressor equipment for the energy storage systems. That means that the cost of power unit modernization is reduced. Taking into account the environmental and economic factors, the use of hydrogen–oxygen systems for energy storage at the power generating enterprises provides a value of the energy return coefficient that is practically the same as for hydro-storage power plant. But capital costs of power unit modernization are significantly lowered and negative impact on the environment is minimal.
Subject
Materials Chemistry,General Energy,Materials Science (miscellaneous)
Reference39 articles.
1. Innovative way of increasing the energy efficiency of heat power engineering equipment in Ukraine;Matsevity;Energy Saving Energy Energy Audit.,2008
2. Evaluation of the system efficiency of nuclear power plants in combination with a hydrogen energy complex;Aminov;Power Eng.,2019
3. Features of steam turbine stages operation in low-flow modes when modeling hydrodynamic processes in the turbine in steamless and motor modes;Arakelyan;Proc. Comput. Sci.,2020
4. Performance analysis of a steam turbine power plant at part load conditions;Karakurt;J. Therm. Eng.,2017
5. Reduction of natural gas consumption and reduction of emissions with combustion products in municipal heat supply;Sigal;Thermophys. Therm. Power Eng.,2019
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献