Assessment and Enhancement of the Energy Supply System Efficiency with Emphasis on the Cogeneration and Renewable as Main Directions for Fuel Saving

S. V. Zharkov
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引用次数: 9

Abstract

The paper presents methods for assessing economic, resource and environmental efficiency of cogeneration plants (CPs) and energy supply systems as a whole and ways of its improvement, the main of which are the development of cogeneration and renewable energy sources (RES). The problem of allocating fuel and financial costs at the combined production in accordance with the criterion of equal profitability of supplied energy products is solved. The methods allow determining specific indicators of supplied energy products. The technology of introducing RES-based power plants to the energy supply systems by means of using unstabilized RES-based power for direct fuel substitution in thermal cycles of gas-turbine (combined cycle) and steam-turbine plants (the wind is viewed as the most promising type of RES). Connection of wind power plants to an electric grid through thermal power plants allows us to avoid solving the problems of maintaining power quality and operating reserve of the wind power plants capacity in the power system and also to use wind energy at the plants of combined heat and high-quality electric power production, small ones included. The technology can promote smooth transition to hydrogen energy. It is shown that the cogeneration saves more than 20% of fuel, and its combination with wind power station – more than 50%.
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以热电联产和可再生能源为主要节能方向的能源供应系统效率评估与提高
本文介绍了评价热电联产电厂和整个能源供应系统的经济、资源和环境效率的方法及其改进途径,其中主要是发展热电联产和可再生能源。根据供能产品利润相等的准则,解决了联合生产时燃料成本和财务成本的分配问题。该方法允许确定所供应能源产品的具体指标。在燃气轮机(联合循环)和蒸汽轮机(风力被认为是最有前途的可再生能源类型)的热循环中,通过使用不稳定的可再生能源发电直接替代燃料,将可再生能源电厂引入能源供应系统的技术。将风电场通过火电厂接入电网,可以避免解决电力系统中风电场容量的电能质量维持和运行储备问题,也可以在热电联产和高质量电力生产的电厂(包括小型电厂)使用风能。该技术可以促进向氢能源的平稳过渡。结果表明,热电联产可节油20%以上,与风力发电站联合使用可节油50%以上。
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