Superconducting Electromagnetic Launch Machine System for Aerospace Applications

Сверхпроводящая электромагнитная пусковая машина для аэрокосмических применений
P Vijayapakavan, D.S. Robinson Smart, Kurinjimalar Ramu, M Ramachandran
2023-05-31

cryocoolerscryogenic coolingelectric propulsion for aerospacehigh-temperature superconductorssuperconducting electromagnetic launch machine
The aerospace industry is constantly experimenting with innovative technologies to improve efficiency, effectiveness and sustainability. The use of superconducting machines emerged as a promising solution to address the growing demands of Aerospace applications. Superconducting machines offer significant advantages such as higher power density, reduced weight and improved efficiency compared to conventional electrical machines. However, efficient cooling methods are critical to maintain superconducting materials at low-temperature operating conditions. This abstract provides a comprehensive overview of superconducting machines and their associated cooling systems designed for space applications. A superconducting machine uses high-temperature superconductors to achieve near-zero electrical resistance, enabling high currents to be transmitted with low energy losses. This feature allows development of lightweight and compact electric propulsion systems contribute to improved fuel efficiency and extended mission capabilities in space vehicles. A cooling system is an important component of a superconducting machine because it ensures that the superconducting materials remain below their critical temperature. Various cooling techniques are being explored, including cryogenic cooling, liquid nitrogen cooling, and cryocoolers. These cooling systems effectively extract the heat generated during engine operation, maintaining the superconducting components in their superconducting state.
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Efficient cooling systems are critical to maintain superconducting materials below their critical temperature for reliable operation in aerospace environments.
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Lightweight, compact electric propulsion systems based on superconducting machines can improve fuel efficiency and extend mission capabilities of space vehicles.
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Superconducting machines using high-temperature superconductors enable near-zero electrical resistance, allowing high currents with low energy losses.
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These superconducting machines offer higher power density, reduced weight, and improved efficiency compared to conventional electrical machines, benefiting aerospace applications.
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Various cooling techniques—cryogenic cooling, liquid nitrogen cooling, and cryocoolers—are being explored to extract heat and preserve superconductivity during engine operation.

Superconducting electromagnetic launch machine system for aerospace applications

Performance and thermal management of superconducting machines for aerospace use, specifically power density, weight/efficiency benefits and associated cooling methods to maintain superconducting state (cryogenic cooling, liquid nitrogen, cryocoolers)

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2023-05-31
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P Vijayapakavan
D.S. Robinson Smart
Kurinjimalar Ramu
M Ramachandran
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