Performance of thin film polyvinylidenefluoride (PVDF) for pyroelectric energy harvesting

被引:0
作者
Zabek, D. [1 ]
Taylor, J. [1 ]
Bowen, C. R. [1 ]
机构
[1] Univ Bath, Fac Engn & Design, Bath BA2 7AY, Avon, England
来源
2014 JOINT IEEE INTERNATIONAL SYMPOSIUM ON THE APPLICATIONS OF FERROELECTRICS, INTERNATIONAL WORKSHOP ON ACOUSTIC TRANSDUCTION MATERIALS AND DEVICES & WORKSHOP ON PIEZORESPONSE FORCE MICROSCOPY (ISAF/IWATMD/PFM) | 2014年
关键词
Pyroelectric energy harvesting; waste heat recovery; thin film PVDF; transient heat analysis; CONVERSION;
D O I
暂无
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Low-grade waste heat and abundantly available thermal energy has the potential to be harvested by the pyroelectric effect. For uniaxial radiative heating we report elliptic temperature profiles in lead zirconium titanate and polyvinylidenefluoride. The geometry, heat diffusion coefficient and pyroelectric coefficient of the material determine the harvesting potential of a pyroelectric generator. At high temperature oscillation frequencies, thin film media performs more effectively than thick media for harvesting.
引用
收藏
页码:248 / 251
页数:4
相关论文
共 14 条
[1]  
Fang J., 2010, HARVESTING NANOSCALE
[2]   Toward energy harvesting using active materials and conversion improvement by nonlinear processing [J].
Guyomar, D ;
Badel, A ;
Lefeuvre, E ;
Richard, C .
IEEE TRANSACTIONS ON ULTRASONICS FERROELECTRICS AND FREQUENCY CONTROL, 2005, 52 (04) :584-595
[3]   Temperature Field Analysis for PZT Pyroelectric Cells for Thermal Energy Harvesting [J].
Hsiao, Chun-Ching ;
Ciou, Jing-Chih ;
Siao, An-Shen ;
Lee, Chi-Yuan .
SENSORS, 2011, 11 (11) :10458-10473
[4]   The pyroelectric energy harvesting capabilities of PMN-PT near the morphotropic phase boundary [J].
Kandilian, Razmig ;
Navid, Ashcon ;
Pilon, Laurent .
SMART MATERIALS AND STRUCTURES, 2011, 20 (05)
[5]   Improving the efficiency of pyroelectric conversion [J].
Kouchachvili, Lia ;
Ikura, Michio .
INTERNATIONAL JOURNAL OF ENERGY RESEARCH, 2008, 32 (04) :328-335
[6]   Pyroelectric waste heat energy harvesting using heat conduction [J].
Lee, Felix Y. ;
Navid, Ashcon ;
Pilon, Laurent .
APPLIED THERMAL ENGINEERING, 2012, 37 :30-37
[7]   Highly Stretchable Piezoelectric-Pyroelectric Hybrid Nanogenerator [J].
Lee, Ju-Hyuck ;
Lee, Keun Young ;
Gupta, Manoj Kumar ;
Kim, Tae Yun ;
Lee, Dae-Yeong ;
Oh, Junho ;
Ryu, Changkook ;
Yoo, Won Jong ;
Kang, Chong-Yun ;
Yoon, Seok-Jin ;
Yoo, Ji-Beom ;
Kim, Sang-Woo .
ADVANCED MATERIALS, 2014, 26 (05) :765-769
[8]   PYROELECTRIC CONVERSION CYCLE OF VINYLIDENE FLUORIDE TRIFLUOROETHYLENE COPOLYMER [J].
OLSEN, RB ;
BRUNO, DA ;
BRISCOE, JM .
JOURNAL OF APPLIED PHYSICS, 1985, 57 (11) :5036-5042
[9]   Pyroelectric energy conversion: Optimization principles [J].
Sebald, Gael ;
Lefeuvre, Elie ;
Guyomar, Daniel .
IEEE TRANSACTIONS ON ULTRASONICS FERROELECTRICS AND FREQUENCY CONTROL, 2008, 55 (03) :538-551
[10]  
Suen M., 2010, P INT MULTICONFERENC