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Incorporation of a hybrid cooling system in water cooled power stations to reduce water and energy consumptions

机译:在水冷电站中加入混合冷却系统,以减少水和能源消耗

摘要

Water shortage is a major problem facing the power industry in many nations around the world. The largest consumer of water in most power plants is the wet cooling tower. To assist water and energy saving for thermal power stations using conventional evaporative wet cooling towers, a hybrid cooling system is proposed in this paper. The hybrid cooling system may consists of all or some of an air pre-cooler, heat pump, heat exchangers, and adsorption chillers together with the existing cooling tower. The hybrid cooling system described in the paper, consisting of a metal hydride heat pump operating in conjunction with the existing wet cooling tower, is capable of achieving water saving by reducing the temperature of warm water entering the cooling tower. Cooler inlet water temperatures effectively reduce the cooling load on existing towers. This will ultimately reduce the amount of water lost to the air by evaporation whilst still achieving the same cooling output. At the same time, the low grade waste energy upgraded by the metal hydride heat pump, in the process of cooling the water, can be used to replace the bleed of steam for the lower stage feed heaters which will increase overall cycle efficiency.
机译:缺水是世界许多国家电力行业面临的主要问题。在大多数发电厂中,最大的用水量是湿式冷却塔。为了帮助使用传统的蒸发湿式冷却塔的火力发电厂节省水和能源,本文提出了一种混合冷却系统。混合冷却系统可能包括空气预冷器,热泵,热交换器和吸附式冷却器的全部或部分,以及现有的冷却塔。本文所述的混合冷却系统由与现有湿式冷却塔结合运行的金属氢化物热泵组成,能够通过降低进入冷却塔的温水的温度来实现节水。较低的进水温度可有效降低现有塔的冷却负荷。这最终将减少由于蒸发而损失到空气中的水量,同时仍然实现相同的冷却输出。同时,在冷却水的过程中,由金属氢化物热泵提升的低品位废能可用于代替低级进料加热器的蒸汽放气,这将提高整体循环效率。

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