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Experimental and numerical analysis of diesel engine exhaust heat recovery using triple tube heat exchanger

机译:三管换热器柴油机排气回收实验与数值分析

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In this study, a 2000 mm long triple tube heat exchanger was designed and manufactured in this work with three intermediate tubes having annulus space of 26, 32, and 36 mm, respectively. Experimental investigations were carried out in the system to assess the percentage of energy savings. On the Diesel engine experiments were conducted by varying the load conditions at 25%, 50%, 75%, and 100%, respectively. Motor speed was varied at 900, 1200, and 1500 rpm, respectively, for each load condition. Also incorporated during the study were counter current, co-current with counter current, counter current with co-current, and co-current fluid flow patterns. It is found that, while increasing the load and speed, the heat transfer rate of the heat exchanger increased. It is also observed that, the fluid counter current flow pattern gave better performance compared to other flow pattern types. The effects of the operating parameters on the heat ex-changer's performance are represented by the Nusselt number and effectiveness. The results of the experiments were also compared with the thermal energy storage performance of the double tube heat exchanger. It is found that, compared to double tube heat exchanger, 20% of fuel energy was saved by using triple tube heat exchanger as waste heat recovery system.
机译:在该研究中,在这项工作中设计和制造了2000mM长的三管热交换器,其三个中间管分别具有26,32和36mm的环形空间。在系统中进行了实验研究,以评估节能的百分比。在柴油发动机实验中,通过分别为25%,50%,75%和100%的载荷条件进行。对于每个负载条件,电机速度分别在900,1200和1500 rpm处变化。在研究期间也结合在一起是对应电流,具有计数器电流,对应电流的计数器电流,以及共流流体流动模式。结果发现,在增加负载和速度的同时,热交换器的传热速率增加。还观察到,与其他流动图案类型相比,流体计数器电流流动模式具有更好的性能。操作参数对热量开关的性能的影响是由营养数和有效性表示的。还将实验结果与双管热交换器的热能储存性能进行了比较。结果发现,与双管热交换器相比,通过使用三管热交换器作为废热回收系统,节省了20%的燃料能量。

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