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A Novel Furnace Design Utilizing a Low Temperature Plastic Condensing Heat Exchanger

机译:利用低温塑料冷凝式换热器的新型炉设计

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摘要

The initial phase of a research and development program for the Consumers' Gas Co. and the Federal Department of Energy, Mines and Resources to design a condensing heat exchanger/gas fired residential air furnace has been com­pleted. Progress to date has resulted in a novel design utilizing a relatively low temperature plastic material for the last stage heat exchanger. To utilize this low temperature plastic, a method of reducing the temperature of the flue gas entering the final heat exchanger was devised using a unique flue gas recirculation process. Heat transfer calculations and pressure drop prediction methods have indicated that the design is sound and can easily be accommodated in a residential furnace with only moderate increase in cost and space requirements. The existing design is also well suited to incorporation as a retrofit package and this is also being pursued. Based on the calculated performance, a condensing heat exchanger was sized, fabricated and installed on a con­ventional 80,000 BTU/hr input gas fired residential fur­nace. The initial experimental tests have given very en­couraging results. Based on a final flue gas exit temp­erature of 85F with an excess air condition of 25%, these initial tests yielded a furnace efficiency of approximate­ly 97%. Although combustion air preheat has not been em­ployed in these initial tests, this feature is planned as part of the prototype design.
机译:消费者燃气公司和联邦能源,矿业和资源部设计冷凝式热交换器/燃气家用空气炉的研究与开发计划的初始阶段已经完成。迄今为止的进展导致了一种新颖的设计,该设计将相对低温的塑料用于最后一级的热交换器。为了利用这种低温塑料,设计了一种使用独特的烟气再循环工艺降低进入最终热交换器的烟气温度的方法。传热计算和压降预测方法表明,该设计是合理的,并且可以轻松地容纳在住宅炉中,而成本和空间需求仅适度增加。现有设计也非常适合作为翻新包装的一部分,因此也正在寻求这种设计。根据计算出的性能,对冷凝式换热器进行尺寸,制造和安装,然后将其安装在传统的每小时输入80,000 BTU的燃气家用炉上。最初的实验测试给出了令人鼓舞的结果。根据最终烟气出口温度为85°F,空气过剩率为25%,这些初始测试得出的炉效率约为97%。尽管在这些初始测试中未使用助燃空气预热,但此功能已计划作为原型设计的一部分。

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