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EAST装置H模时的电子热输运系数
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作者 史可意 张先梅 +1 位作者 薛二兵 虞立敏 《华东理工大学学报(自然科学版)》 CAS CSCD 北大核心 2016年第5期730-736,共7页
研究了在先进实验超导托卡马克(EAST)上,由低杂波(LHW)和离子循环射频(ICRF)加热实现高约束模式(H模)放电的等离子体中的电子热输运情况。通过计算得出,H模相比于L模(低约束模式)电子热输运系数显著下降,特别是在等离子体... 研究了在先进实验超导托卡马克(EAST)上,由低杂波(LHW)和离子循环射频(ICRF)加热实现高约束模式(H模)放电的等离子体中的电子热输运情况。通过计算得出,H模相比于L模(低约束模式)电子热输运系数显著下降,特别是在等离子体边缘地区。在典型炮号(33068#、38300#、40823#)中,归一化温度梯度特征长度(R/LTe)的阈值应该是3-11。这三炮的约束时间与电子热输运系数相关,当电子热输运系数越大时,约束时间越小。 展开更多
关键词 托卡马克 电子热输运系数 归-化温度梯度特征长度
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Magneto-enhanced electro-thermal conversion performance 被引量:1
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作者 Shifang Ma Cuncheng Li +7 位作者 Wenjun Cui Xiahan Sang Ping Wei Wanting Zhu Xiaolei Nie Fu-Hua Sun Wenyu Zhao Qingjie Zhang 《Science China Materials》 SCIE EI CAS CSCD 2021年第11期2835-2845,共11页
Synergistically regulating carrier and phonon transport on the nanoscale is extremely difficult for all thermoelectric(TE)materials without cage structures.Herein BaFe_(12)O_(19)/Bi_(2)Te_(2.5)Se_(0.5)thermoelectromag... Synergistically regulating carrier and phonon transport on the nanoscale is extremely difficult for all thermoelectric(TE)materials without cage structures.Herein BaFe_(12)O_(19)/Bi_(2)Te_(2.5)Se_(0.5)thermoelectromagnetic nanocomposites are designed and synthesized as a benchmarking example to simultaneously tailor the transport properties on the nanoscale.A magneto-trapped carrier effect induced by BaFe_(12)O_(19)hard-magnetic nanoparticles(NPs)is discovered,which can lower the carrier concentration of n-type Bi_(2)Te_(2.5)Se_(0.5)matrix by 16%,and increase the Seebeck coefficient by 16%.Meanwhile,BaFe_(12)O_(19)NPs provide phonon scattering centers and reduce the thermal conductivity by 12%.As a result,the ZT value of the nanocomposites is enhanced by more than 25%in the range of 300-450 K,and the cooling temperature difference increases by 65%near room temperature.This work greatly broadens the commercial application potential of ntype Bi_(2)Te_(2.5)Se_(0.5),and demonstrates magneto-trapped carrier effect as a universal strategy to enhance the electro-thermal conversion performance of TE materials with high carrier concentration. 展开更多
关键词 thermoelectromagnetic nanocomposite thermoelectric material magnetic nanoparticles magneto-trapped carrier effect electro-thermal conversion performance
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