首页> 外文会议>American Society of Mechanical Engineers(ASME) Power Conference 2006; 20060502-04; Atlanta,GA(US) >DESIGN, FABRICATION AND TESTING OF A NOVEL ENERGY-HARVESTING THERMOELECTRIC POWER SUPPLY FOR WIRELESS SENSORS
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DESIGN, FABRICATION AND TESTING OF A NOVEL ENERGY-HARVESTING THERMOELECTRIC POWER SUPPLY FOR WIRELESS SENSORS

机译:无线传感器的新型耗能热电电源的设计,制造和测试

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摘要

A prototype energy-harvesting thermoelectric generator (TEG) was designed and fabricated and it is being tested to provide power for wireless sensors used in the health monitoring (monitoring of temperatures, vibrations, strains, etc) of Navy shipboard machinery. TEGs are rugged, reliable, solid-state devices that convert heat directly into electricity without any moving parts. The TEGs designed in this project utilize the heat transfer between shipboard waste heat sources and ambient air to generate electricity. To satisfy the required small design volume of less than one cubic inch, Hi-Z Technology, Inc. (Hi-Z) is using its innovative Quantum Well (QW) thermoelectric technology that provides a factor of four increase in the conversion efficiency, and a large reduction in the design volume over the currently used bulk bismuth-telluride thermoelectics. QWs are nanostructured multi-layer thin films. These wireless sensors can be used to detect cracks, corrosion, impact damage, and temperature and vibration excursions as part of the Condition Based Maintenance (CBM) of the Navy ship machinery. The CBM of ship machinery can be significantly improved by automating the process with the use of self-powered wireless sensors. These power-harvesting TEGs can be used to replace batteries as electrical power sources and to eliminate tethered wires and cables, thus significantly reducing the installation and maintenance costs. The very first QW TEG module anywhere was just successfully tested (it produced electricity from heat). It remains to package this module with thermal insulation in the housing and heat sink, and to test this entire TEG device in a simulated thermal environment of a Navy gas turbine. Following this test, it is planned to attach this device to the surface of a gas turbine on a Navy ship and to test it in its actual environment, in conjunction with a wireless sensor. This power supply for wireless sensors can also be used in health monitoring of equipment in the nuclear and conventional power plants, process plants, and the monitoring of temperatures, vibrationsrnand pressures of steam lines, etc. Hi-Z has chosen this small power supply as the first practical application of its emerging QW TEG technology. However, this technology can also be used on a much larger scale in, for example, recovering the waste heat from the exhaust of the truck and automobile engines, where the generated electricity can be used to eliminate the alternator and thus reduce the load on the engine, improve overall efficiency and reduce fuel consumption.
机译:设计并制造了原型能量收集热电发电机(TEG),并对其进行了测试,以为海军舰船机械的健康监测(温度,振动,应变等监测)中使用的无线传感器提供电源。 TEG是坚固,可靠的固态设备,无需任何活动部件即可将热量直接转化为电能。该项目设计的TEG利用船上余热源与周围空气之间的热传递来发电。为了满足小于1立方英寸的所需小设计体积,Hi-Z Technology,Inc.(Hi-Z)使用其创新的量子阱(QW)热电技术,将转换效率提高了四倍,并且与目前使用的块状碲化铋热电材料相比,设计体积大大减少。 QW是纳米结构的多层薄膜。这些无线传感器可用于检测裂缝,腐蚀,冲击破坏以及温度和振动偏移,这是海军舰船机械基于状态维护(CBM)的一部分。通过使用自供电无线传感器使过程自动化,可以显着提高船舶机械的CBM。这些能量收集TEG可用于代替电池作为电源,并消除系留的电线和电缆,从而大大降低了安装和维护成本。任何地方的第一个QW TEG模块都已成功测试(它通过热产生电)。仍然需要将该模块与外壳和散热器进行热绝缘包装,并在海军燃气轮机的模拟热环境中测试整个TEG设备。测试完成后,计划将该设备连接到海军舰船上的燃气轮机表面,并结合无线传感器在实际环境中进行测试。这种用于无线传感器的电源还可以用于核电厂和常规电厂,加工厂的设备运行状况监控,以及温度,蒸汽管线的振动和压力监控等。Hi-Z选择了这种小型电源作为新兴的QW TEG技术的首次实际应用。但是,该技术也可以大规模使用,例如,从卡车和汽车发动机的排气中回收废热,其中产生的电能可用于消除交流发电机,从而减轻交流发电机上的负荷。发动机,提高整体效率并减少燃油消耗。

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