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The Experimental Investigation of Double Pipe Heat Exchangers Prepared from Two Techniques

机译:两种技术制备双管热交换器的实验研究

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Heat exchangers are the equipment used in variety of industries at all levels related to heat and thermal systems.Using heat exchangers at maximum efficiency are to reduce the amount of energy lost that impacts on environment and manufacturing cost in the industry.This research focused on comparing performances of two heat exchangers;two double-pipe heat exchangers were fabricated domestically with two different welding techniques(flare and Argon welding techniques).Both heat exchangers were tested on the same experimental setup and investigated for their thermal efficiency.Their working fluid was water,hot water and cold water flowed inside the heat exchangers were arranged as parallel(co-current)and counter flow configurations.Thermal efficiency when hot water and cold water flow rates varied in the range from 0.5 to 2 liters per minute,were also investigated.The results showed that the second heat exchanger fabricated with the Argon-welding technique showed the better thermal performance than that of the first heat exchanger fabricated with the flare technique.The thermal performances of the second heat exchanger were varied from 92% to 99% while the performances of another heat exchanger were varied from 32% to 38%.Therefore,the heat exchanger manufacturing played an important role to the heat exchanger performance.The same heat exchanger design but different fabricating technique caused lost in heat transfer process which affected the thermal performance and operating cost of the industry.
机译:热交换器用在各种以与在最高效率的热量和热systems.Using热交换器各级行业所使用的设备是减少能量损失,在industry.This对环境和生产成本影响的研究集中在比较量两个热交换器的演出;两个双管热交换器用两种不同的焊接技术(眩光和氩焊技术)制造的国内。无论热交换器分别在相同的实验装置和测试研究了它们的热efficiency.Their工作流体为水,热水和冷水热交换器被布置为平行的内部流动(顺流)和反向流动configurations.Thermal效率时热水和在从每分钟0.5至2升的范围内变化冷水流量,进行了研究表明所述第二热交换器与所述氩焊接技术制造。结果显示的更好的热perfor曼斯比第一热交换器与火炬第二热交换器的technique.The热性能从92%变化至99%,而另一种热交换器的性能进行了从32%。因此改变,以38%时,耐热制造器制造发挥了重要作用到热交换器performance.The相同热交换器的设计,但不同的制造技术导致这影响了热性能和行业的操作成本的热传递过程中损失。

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