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Increase of thermal efficiency of cogeneration plant by waste heat utilisation with absorption heat pump

机译:吸收式热泵利用余热利用提高热电联产厂的热效率

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The very rapid growth of share of electricity generation from renewable sources is observed recent years. However, even if that share reaches about 50% in 2050, almost 50% of electricity will still be generated based on fossil fuels combustion rather than on nuclear energy. That means, energy generated from coal will still be important for the next decades. The largest sources of energy loses within the steam power plant is the steam cooling system. The energy dissipated to the atmosphere in that system is very difficult to be utilized mainly due to the relatively low temperature, and its direct utilization without additional equipment is rather impossible. The large amount of energy lost to the environment leads to low overall thermal efficiency of the plant, therefore, utilization of this energy should be of primary importance. The paper shows concept of increasing efficiency of cogeneration plant thermal cycle by utilisation of waste heat from flue gas with absorption heat pump, for the purpose of system heat generation. Calculations of combined system of power plant fuelled with biomass fuel with implemented waste heat utilisation system were performed for one heating season and different moisture content in the fuel. Results show, that owing to waste heat utilization instead of conventional heat exchanger, additional electricity generation during the heating season at even 46864 MWh may be achieved which is over 18% more for the moisture content in the biomass fuel at 0.5 kg/kg, the same ambient conditions and heat generation.
机译:近年来,可再生能源发电所占份额迅速增长。但是,即使到2050年这一比例达到约50%,仍将有近50%的电力是基于化石燃料燃烧而不是核能发电。这意味着,在接下来的几十年中,煤炭产生的能源将仍然很重要。蒸汽发电厂内损失的最大能源是蒸汽冷却系统。该系统中散发到大气中的能量很难利用,这主要是因为温度相对较低,并且在没有附加设备的情况下直接利用它几乎是不可能的。大量能量损失到环境中会导致设备的整体热效率低下,因此,利用这种能量应该是最重要的。本文展示了通过利用吸收式热泵利用烟道气产生的余热来提高系统热能的效率,从而提高热电联产设备热循环效率的概念。针对一个加热季节和燃料中不同的水分含量,对采用生物质燃料的电厂联合实施的余热利用系统进行了联合系统的计算。结果表明,由于利用废热而不是传统的热交换器,在加热季节甚至可以实现46864 MWh的额外发电量,对于0.5 kg / kg的生物质燃料中的水分含量,其发电量可提高18%以上。相同的环境条件和热量产生。

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