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浅析如何提高TEG发电机运行效率以降低设备故障率
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作者 刘鲁生 李长炜 《电子制作》 2017年第1期67-67,69,共2页
本文结合川气东送管道分公司鄂西管理处TEG发电机故障分析及处理实例,明确了TEG发电机故障成因,并针对性的制定了提升其运行效率和降低设备故障率的对策,实践表明,实施效果良好。
关键词 teg发电机 运行效率 设备故障率
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浅谈TEG热发电机结构原理及常见故障处理 被引量:3
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作者 孙勇 《科技与企业》 2014年第10期320-320,322,共2页
随着天然气管道输送技术的发展,TEG热发电机在长输管道上获得越来越广泛的使用。而TEG热发电机的结构和发电原理在国内刊物上鲜有报道,笔者结合运行维护实践,对8550型TEG热发电机的基本结构和发电原理进行分析,并对TEG热发电机运行过程... 随着天然气管道输送技术的发展,TEG热发电机在长输管道上获得越来越广泛的使用。而TEG热发电机的结构和发电原理在国内刊物上鲜有报道,笔者结合运行维护实践,对8550型TEG热发电机的基本结构和发电原理进行分析,并对TEG热发电机运行过程中常见故障及处理方法进行了总结。 展开更多
关键词 teg发电机 结构 发电原理 故障处理
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Study on the performance of TEG with heat transfer enhancement using graphene-water nanofluid for a TEG cooling system 被引量:5
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作者 LI YiHuai WU ZiHua +4 位作者 XIE HuaQing XING JiaoJiao MAO JianHui WANG Yuan Yuan LI Zhen 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2017年第8期1168-1174,共7页
Improvement of the heat transfer effect of cold side of a thermoelectric generator(TEG) is one of the approaches to enhance the performance of the TEG systems.As a new type of heat transfer media,nanofluids can enhanc... Improvement of the heat transfer effect of cold side of a thermoelectric generator(TEG) is one of the approaches to enhance the performance of the TEG systems.As a new type of heat transfer media,nanofluids can enhance the heat transfer performance of working liquid significantly.In this study,the performance of a commercial TEG with graphene-water(GW) nanofluid as coolants in a minichannel heat exchanger is investigated experimentally at low temperatures.The results show that the output power of TEG increases with the flow rate under 950 mL/min.However,the fluid flow rate has no influence on the output power of TEG with higher flow rate(larger than 950 mL/min) when the heat transfer dynamic balance state of the system is reached.The optimal concentration and flow rate of nanofluid are 0.1 wt%and 950 mL/min,respectively.At the optimal conditions,the improved voltage,output power and conversion efficiency with GW nanofluid applied in the cooling system are increased by11.29%,21.55%and 3.5%in comparison with those with only water applied,respectively. 展开更多
关键词 thermoelectric generation graphene-water nanofluid power generation
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