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An exhaust heat recovery system utilising thermoelectric generators and heat pipes

机译:利用热电发电机和热管的废热回收系统

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Exhaust heat recovery systems are used to make use of otherwise wasted heat from a car engine. The purpose of exhaust heat recovery systems is to potentially reduce the fuel consumption of the car and consequently reduce CO2 emissions and running costs. The system design described herein utilises thermoelectric generators (TEGs) and heat pipes with its key advantage being it is a passive solid state design. The use of heat pipes allows for more flexible designs as the TEG location is not limited to the exhaust pipe surface. Testing was undertaken on a car with a 3.0 L V6 engine. In all test conditions the power loss due to pressure drop in the exhaust duct was always lower than the electrical power output. Repeat tests were conducted and the results were found to be consistent. When testing the system at different orientations, the bottom heat mode was found to be the best option. After all testing, the maximum power output of the system was 38 W from the eight 62 mm x 62 mm TEGs used. The rate of heat transfer in this case was 1541 W with the resultant TEG efficiency being 2.46%. The calculated potential reduction in CO2 emissions, fuel consumption and fuel costs was 1.57%. (C) 2016 Elsevier Ltd. All rights reserved.
机译:废热回收系统用于利用来自汽车发动机的其他浪费的热量。废热回收系统的目的是潜在地降低汽车的燃料消耗,从而减少二氧化碳排放和运行成本。本文描述的系统设计利用热电发电机(TEG)和热管,其主要优点是它是一种被动固态设计。热管的使用允许更灵活的设计,因为TEG位置不限于排气管表面。在带有3.0L V6发动机的汽车上进行测试。在所有测试条件下,排气管中压降导致的功率损耗总是低于电力输出。进行重复测试,发现结果一致。在不同方向测试系统时,发现底部热模式是最佳选择。在所有测试之后,系统的最大功率输出为38倍,使用八个62 mm x 62 mm tegs。在这种情况下的热传递速率为1541W,结果TEG效率为2.46%。计算潜在的二氧化碳排放量降低,燃料消耗和燃料成本为1.57%。 (c)2016 Elsevier Ltd.保留所有权利。

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