首页> 外文期刊>E3S Web of Conferences >Specifics in the operating modes of thermosyphon air heater of steam generators №1 and №2 in TPP 'Republika' at fuel switch from coal to natural gas
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Specifics in the operating modes of thermosyphon air heater of steam generators №1 and №2 in TPP 'Republika' at fuel switch from coal to natural gas

机译:TPP“ Republika”中蒸汽发生器№1和№2的热虹吸式空气加热器的工作模式的详细信息,包括从煤炭到天然气的燃料转换

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A fuel switch is motivated both by the necessity of increasing energy efficiency and the compliance with the ever-stricter regulations regarding the release of harmful emissions in the environment. In this paper a thorough financial and energy analysis on the fuel switch from coal to natural gas is carried out, in particular with respect to waste heat recovery systems (two phase thermosyphons). As a result of the calculation of the heat transfer coefficients for both fuels, it is established that the system running on natural gas has a lower value, due to the lower air velocity, caused in turn by the lower requirement for excess air. The heat transfer coefficients of the evaporation and condensation zones respectively are established h_(fgas)=104.9 И h_(air)=84.9 (W/m~(2).K) for coal and hfgas И h_(air)=84.7 (W/m~(2).K) respectively for gas. A numerical study is also carried out and a methodology for the analysis of the efficiency of two phase thermosyphons with complex geometry is presented.
机译:既需要提高能源效率,又要遵守有关环境中有害排放物的日益严格的法规,从而推动了燃油开关的发展。在本文中,对从煤到天然气的燃料转换进行了详尽的财务和能源分析,尤其是在废热回收系统(两相热虹吸管)方面。通过计算两种燃料的传热系数,可以确定以天然气运行的系统具有较低的值,这是由于较低的空气速度,而较低的空气速度又是由对过量空气的较低需求引起的。分别确定了蒸发区和冷凝区的传热系数h_(fgas)= 104.9Иh_(空气)= 84.9(W / m〜(2).K)对于煤和hfgasИh_(空气)= 84.7(W /m~(2).K)分别表示气体。还进行了数值研究,并提出了一种用于分析具有复杂几何形状的两相热虹吸管效率的方法。

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