Features of Replacement of the ТГМП-314 Boiler Heating Installation

T. Rymar, M. Zayats
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Abstract

Thermal power stations play the main role not only in carrying the base load, but also in ensuring the coverage of peak and semi-peak loads of electricity consumption. Improving the operational maintenance of energy equipment gives a greater economic effect, since the costs of modernization of regenerative air heaters, which improve their density and thermal efficiency, are repaid in a short time. The efficiency and cost-effectiveness of the operation of regenerative air heaters was increased by the reconstruction of the heating installation. The results of the reconstruction of the design heaters of the TГМП-314 boilers with sections of sanitary-technical heaters КФСО -II and КФБО -II with replacement by sections of energy heaters (СО-110) are presented. The improved heating installation is installed in front of each regenerative air heater of the ТГМП-314 boiler and is made of two walls placed sequentially according to the air movement, in each of which 12 sections of reconstructed CO-110 heaters with a downward movement of the heating steam flow are installed. An important advantage of the proposed sequential installation of radiators is an increase in the uniformity of the temperature field in the box in front of the regenerative air heater due to two-stage air heating. Sequential installation of radiator walls increases the heat transfer coefficient approximately 1.6 times compared to parallel connection, which makes it possible to double the air speed in the radiators for the same number of sections. The possibility of formation of stagnant zones of sections of CO-110 heaters is excluded. In this case, it is recommended to reconstruct single-pass radiators with the installation of a pipe board and heating steam condensate removal chambers. The high efficiency of the improved heating installation made it possible to carry out all boiler ignitions with the possibility of supplying flue gases immediately through the RAH.
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ТГМП-314锅炉供热装置的更换特点
火电站的主要作用不仅在于承载基本负荷,还在于保证用电峰、半峰负荷的覆盖。改进能源设备的运行维护具有更大的经济效果,因为再生式空气加热器的现代化成本可以在短时间内得到回报,从而提高其密度和热效率。加热装置的改造提高了蓄热式空气加热器的运行效率和成本效益。介绍了用卫生技术加热器КФСО -II段和КФБО -II段代替能源加热器(СО-110)段对TГМП-314锅炉设计加热器进行改造的结果。改进后的加热装置安装在ТГМП-314锅炉各蓄热式空气加热器前方,由按气流顺序放置的两面墙组成,每面墙上安装12段加热蒸汽流向下运动的改造CO-110加热器。提出的顺序安装散热器的一个重要优点是由于两级空气加热,增加了蓄热式空气加热器前箱体内温度场的均匀性。与平行连接相比,连续安装的散热器壁增加了约1.6倍的传热系数,这使得相同数量的部分可以将散热器中的空气速度提高一倍。排除了CO-110加热器部分形成停滞区的可能性。此时,建议对单通散热器进行改造,加装管板和加热冷凝水清除室。改进后的加热装置的高效率使所有锅炉点火都有可能立即通过RAH供应烟道气。
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