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Evaluation of retrofitting a conventional natural gas fired boiler into a condensing boiler

机译:评估将传统的天然气锅炉改造成冷凝锅炉的评估

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摘要

The exit flue gas temperature of a conventional gas fired boiler is usually high and a great amount of heat energy is lost to the environment. If both sensible heat and latent heat can be recovered by adding a condensing heat exchanger, the efficiency of the boiler can be increased by as much as 10%. In this paper, based on combustion and heat transfer calculations, the recoverable heat and the efficiency improvement potential of different heat recovery schemes at various exit flue gas temperatures are presented by performing design calculations. The payback period method has been used to analyze the feasibility of retrofitting a conventional gas fired boiler into a condensing boiler in a heating system in detail. The results show that the most economical exit flue gas temperature is 40-55℃ when a conventional natural gas fired boiler is retrofitted into a condensing boiler simply by adding a condensing heat exchanger. It is feasible to use the return water of a heating system as the cooling medium of the condensing heat exchanger because the return temperature varies with the ambient temperature and is lower than the dew point of the water vapor in the flue gas in most periods of a heating season in some regions, which has been verified by retrofitted case.
机译:常规燃气锅炉的出口烟气温度通常很高,并且大量的热能损失到环境中。如果通过添加冷凝式热交换器可以同时回收显热和潜热,则锅炉的效率可以提高多达10%。本文基于燃烧和传热计算,通过设计计算,给出了在不同出口烟气温度下,不同热回收方案的可回收热量和效率提高潜力。投资回收期方法已用于详细分析将常规燃气锅炉改装为供热系统中的冷凝锅炉的可行性。结果表明,仅通过增加冷凝热交换器将传统的天然气锅炉改造成冷凝锅炉,最经济的出口烟气温度为40-55℃。将加热系统的回水用作冷凝式热交换器的冷却介质是可行的,因为回水温度会随环境温度而变化,并且在大多数情况下低于烟气中水蒸气的露点。一些地区的供暖季节已经过改装案例的验证。

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