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April 25, 2026Energies0 citationsOpen Access

A Large-Swept-Volume Linear Alternator Designed for Standing-Wave Acoustic Field

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JZJingjun ZhaoJHJianying HuLZLi Zhang

Key Points

  • To develop a more compact linear alternator for thermoacoustic power generation and investigate its performance under standing-wave conditions.
  • Proposed a moving-magnet linear alternator with integrated electromagnetic components in the piston.
  • Systematically investigated different magnetic circuit configurations for optimization.
  • Conducted performance comparisons between the novel design and conventional external configurations.
  • Achieved a compact alternator structure with reduced size and weight compared to conventional designs.
  • Demonstrated output performance comparable to traditional external magnetic-circuit designs.

Abstract

Thermoacoustic power generation holds significant promise for applications such as solar thermal utilization, industrial waste heat recovery, and distributed energy systems, owing to its high efficiency and reliability. Conventional standing-wave and traveling-wave thermoacoustic generators, however, are often limited by bulky resonators and substantial acoustic power dissipation. Replacing the resonator with a linear alternator (LA) offers an effective means to improve system compactness and output performance. Nonetheless, under standing-wave acoustic conditions, the LA’s large piston swept volume increases the device size, thereby constraining overall compactness. To address this limitation, a novel moving-magnet LA with electromagnetic components integrated into the moving piston is proposed. Compared to conventional configurations, this design significantly reduces the size and weight of the alternator. Furthermore, the influence of different magnetic circuit configurations on output performance is systematically investigated, enabling optimization of the alternator design. Results demonstrate that the proposed alternator achieves a more compact structure while delivering output performance comparable to that of conventional external magnetic-circuit designs, thereby validating the feasibility of the proposed approach.

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Cite This Study

Zhao et al. (2026) studied this question.

synapsesocial.com/papers/69ec5aa788ba6daa22dac3b1https://doi.org/10.3390/en19092046
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