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热声效应及其应用研究进展 被引量:3
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作者 李亚清 史学强 +2 位作者 张玉涛 杨超萍 张静 《西安科技大学学报》 CAS 北大核心 2018年第6期919-930,共12页
热声效应是一种热与声相互转化的现象,涉及复杂的非线性因素,而热声机械无运动部件,有着广阔的应用前景。为加深对热声效应的研究,文中首先介绍了热声理论的研究进展状况,分析了各个理论的局限性及适应性,接着从实验研究及数值模拟两方... 热声效应是一种热与声相互转化的现象,涉及复杂的非线性因素,而热声机械无运动部件,有着广阔的应用前景。为加深对热声效应的研究,文中首先介绍了热声理论的研究进展状况,分析了各个理论的局限性及适应性,接着从实验研究及数值模拟两方面总结了现有的研究方法及其取得的研究成果,之后详细阐述了热致声与声致冷2种效应的应用。最后,基于当前的研究现状,分析了热声理论在研究与应用方面存在的问题与遇到的挑战,讨论了热声转化的发展趋势。结果表明,建立科学的适用于大振幅热声效应的理论方法是发展推广热声效应的难点和重点,而数值模拟与实验研究的有效结合是推进热声理论发展的强有力手段,虽然目前热声机械还只停留在实验室研究,但凭借热声转换的独特优势,热声装置将会是清洁能源、航空航天、消防等行业的重要应用技术。 展开更多
关键词 效应 理论 热声应用 轰燃探测器 数值模拟
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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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