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Novel flue gas waste heat recovery system equipped with enthalpy wheel

机译:配备焓轮的新型烟气余热回收系统

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Waste heat recovery from flue gas is an efficient way to increase the thermal efficiency of a gas-fired boiler. This paper proposes a novel flue gas waste heat recovery system, which comprises a condensing heat exchanger and an enthalpy wheel. The flue gas firstly flows through the condensing heat exchanger for heating boiler water, and then flows through the enthalpy wheel. The wheel, covered with desiccant material, acts as a medium for further heat and moisture transfer from the flue gas to the oxidizing air, resulting in an increase in the dew point temperature of the flue gas. Experimental results show that the average boiler efficiency reaches 106% and the average total recovery efficiency reaches 88%. The dew point temperature of the flue gas discharged from the boiler increases to around 60 degrees C, higher than that of conventional flue gas (around 55 degrees C). Consequently, more latent heat is recovered in the condensing heat exchanger by virtue of the proposed system. A mathematical model is established for further analysis based on the experimental results. The rotation speed of the enthalpy wheel and backwater temperature are key factors influencing the system performance.
机译:从烟气中回收废热是提高燃气锅炉热效率的有效途径。本文提出了一种新型的烟气余热回收系统,该系统包括冷凝热交换器和焓轮。烟气首先流经冷凝热交换器以加热锅炉水,然后流经焓轮。覆盖有干燥剂材料的轮子充当介质,用于进一步将热量和水分从烟道气传递到氧化空气,从而导致烟道气的露点温度升高。实验结果表明,平均锅炉效率达到106%,平均总回收效率达到88%。从锅炉排出的烟气的露点温度升高到约60摄氏度,高于常规烟气的露点温度(约55摄氏度)。因此,借助于所提出的系统,在冷凝热交换器中回收了更多的潜热。建立了数学模型,可根据实验结果进行进一步分析。焓轮的转速和回水温度是影响系统性能的关键因素。

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