2016•arXiv (Cornell University)Open access

Near-Field Thermal Energy Conversion by Tunneling to a Waveguide

Poole, Jacob L., Paul Richard Ohodnicki

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Abstract

Energy is a vital resource and hence there is a continuous strive to improve upon existing technologies and to find new ones that address that basic need. The conversion of thermal energy is the primary method of generating electrical energy from a broad range of sources, for example fossil fuels, solar thermal, geothermal, and nuclear energy. A common need in all cases is the ability to efficiently extract the generated electromagnetic and thermal energy and to convert it to electricity. The current methods of thermal energy extraction are based on heat engines, thermoelectric and thermophotovoltaic conversion systems. In this report a method based on the direct extraction of Electromagnetic energy from the thermal near-field through tunneling and subsequent waveguiding, is presented.

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What this paper is about

Energy is a vital resource and hence there is a continuous strive to improve upon existing technologies and to find new ones that address that basic need. The conversion of thermal energy is the primary method of generating electrical energy from a broad range of sources, for example fossil fuels, solar thermal, geothermal, and nuclear energy. A common need in all cases is the ability to efficiently extract the generated electromagnetic and thermal energy and to convert it to electricity. The current methods of thermal energy extraction are based on heat engines, thermoelectric and thermophotovoltaic conversion systems. In this report a method based on the direct extraction of Electromagnetic energy from the thermal near-field through tunneling and subsequent waveguiding, is presented.

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Available abstract

Energy is a vital resource and hence there is a continuous strive to improve upon existing technologies and to find new ones that address that basic need. The conversion of thermal energy is the primary method of generating electrical energy from a broad range of sources, for example fossil fuels, solar thermal, geothermal, and nuclear energy. A common need in all cases is the ability to efficiently extract the generated electromagnetic and thermal energy and to convert it to electricity. The current methods of thermal energy extraction are based on heat engines, thermoelectric and thermophotovoltaic conversion systems. In this report a method based on the direct extraction of Electromagnetic energy from the thermal near-field through tunneling and subsequent waveguiding, is presented.

Key concepts: Thermophotovoltaic, Thermal energy, Energy transformation, Thermal, Geothermal energy, Electric potential energy, Electricity generation, Range (aeronautics)

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