首页> 外文会议>Proceedings of the ASME Heat Transfer Division 2003 >EXPERIMENTAL STUDY ON THE POSSIBILITY OF ELECTRIC POWER GENERATION BY USING A THERMOSYPHON SYSTEM
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EXPERIMENTAL STUDY ON THE POSSIBILITY OF ELECTRIC POWER GENERATION BY USING A THERMOSYPHON SYSTEM

机译:热电系统发电可能性的实验研究

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Generally, a thermosyphon is utilized as a heat exchanger. Then, it is an effective equipment for one of the solutions of today's resource conservation and saving energy problems. The thermosyphon is able to transport heat between small temperature gradients without the need for the outside power. The system has three parts, an evaporator zone, adiabatic zone and condensed zone. The efficiently cycle of the thermal hydraulics system observed in the three zones of this thermosyphon is structurally examined for energy-conversion. The authors installed a power generator in the insulation zone of the thermosyphon, and examined the possibility of electric power generation and the heat transfer characteristics of the thermosyphon. The adiabatic zone was made of an acrylic tube. A turbine and a nozzle were set in the adiabatic zone. Water was used as working fluid. As a result, we confirmed that the output of the electric power and the heat transport rate of about 70-90% for this system were obtained.
机译:通常,热虹吸管被用作热交换器。然后,它是解决当今资源节约和节能问题的有效方法之一。热虹吸管能够在较小的温度梯度之间传递热量,而无需外部电源。该系统由三个部分组成:蒸发区,绝热区和冷凝区。在结构上检查了在该热虹吸管的三个区域中观察到的热力液压系统的有效循环,以进行能量转换。作者在热虹吸管的绝热区安装了发电机,并研究了发电的可能性和热虹吸管的传热特性。绝热区由丙烯酸管制成。涡轮和喷嘴设置在绝热区。水被用作工作流体。结果,我们确认对于该系统,获得了大约70-90%的电功率输出和热传递率。

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