Characterization of Thermal Energy Harvesting Using Pyroelectric Ceramics at Elevated Temperatures
Author:
Affiliation:
1. Department of Mechanical Engineering , University of Texas at El Paso , El Paso , TX 79968 , USA
2. Department of Mechanical Engineering , Universidad Del Turabo , Gurabo , PR 00778 , USA
Abstract
Publisher
Walter de Gruyter GmbH
Subject
Electrochemistry,Electrical and Electronic Engineering,Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment
Link
https://www.degruyter.com/document/doi/10.1515/ehs-2018-0002/pdf
Reference24 articles.
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2. Cook-Chennault, K. A., N. Thambi, and A. M. Sastry. 2008. “Powering MEMS Portable Devices—A Review of Non-Regenerative and Regenerative Power Supply Systems with Special Emphasis on Piezoelectric Energy Harvesting Systems.” Smart Materials and Structures 17 (4): 043001.
3. Cuadras, A., M. Gasulla, and V. Ferrari. 2010. “Thermal Energy Harvesting through Pyroelectricity.” Sensors and Actuators A: Physical 158 (1): 132–139.
4. Fatuzzo, E., H. Kiess, and R. Nitsche. 1966. “Theoretical Efficiency of Pyroelectric Power Converters.” Journal of Applied Physics 37 (2): 510–516.
5. Ferrari, V., A. Ghisla, D. Marioli, and A. Taroni. 2003. “Array of PZT Pyroelectric Thick-Film Sensors for Contactless Measurement of XY Position.” IEEE Sensors Journal 3 (2): 212–217.
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