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Analysis of thermal energy harvesting using ferromagnetic materials

机译:使用铁磁材料收集热能的分析

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摘要

This Letter aims at giving a preliminary investigation of the thermal energy harvesting capabilities of a technique using the temperature-dependent permeability of ferromagnetic materials. The principles lie in the modification of the magnetic field caused by the variation of the permeability due to the temperature change, hence generating a voltage across a coil surrounding the circuit. The technique can be made truly passive by the use of magnets for applying bias magnetic field. Theoretical results, validated by experimental measurements, show a voltage output of 1.2 mV at optimal load of 2 ? under 60 K temperature variation in 5 s (with a maximum slope of 25 Ks~(?1)). Further improvements, such as the use of low resistivity coil and magnet with high remnant magnetic field, indicate that it is possible to convert up to 7.35 μJ cm~(?3) K~(?2) cycle~(?1).
机译:该信函旨在对使用铁磁材料的温度相关磁导率的技术的热能收集能力进行初步研究。原理在于对由于温度变化引起的磁导率变化而引起的磁场的修改,从而在围绕电路的线圈两端产生电压。通过使用磁体来施加偏置磁场,可以使该技术真正无源。通过实验测量验证的理论结果表明,最佳负载为2Ω时,输出电压为1.2mV。在60 K温度下5 s内变化(最大斜率25 Ks〜(?1))。进一步的改进,例如使用低电阻线圈和具有高残留磁场的磁体,表明可以转换高达7.35μJcm〜(?3)K〜(?2)周期〜(?1)。

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