Global Certificate in Next-Generation Spacecraft Thermal Control
-- ViewingNowThe Global Certificate in Next-Generation Spacecraft Thermal Control is a comprehensive course designed to equip learners with essential skills for career advancement in the rapidly evolving space industry. This course is critical due to the increasing demand for advanced thermal control solutions in spacecraft design and operation, with the global spacecraft thermal control market projected to reach $2.
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⢠Fundamentals of Spacecraft Thermal Control: An introduction to spacecraft thermal control, including the unique challenges of space environments and the principles of thermal management.
⢠Passive Thermal Control Techniques: An exploration of techniques for managing spacecraft temperatures without the use of external power or moving parts, such as radiative cooling and insulation.
⢠Active Thermal Control Techniques: A study of methods for controlling spacecraft temperatures using external power and moving parts, such as heaters, pumps, and fluid loops.
⢠Thermal Control Subsystem Design: A survey of the design process for spacecraft thermal control subsystems, including requirements analysis, modeling and simulation, and hardware selection.
⢠Thermal Testing and Verification: An examination of the methods and procedures for testing and verifying the thermal performance of spacecraft and their components.
⢠Thermal Management for Electric Propulsion Systems: A focus on the unique thermal challenges and solutions for spacecraft using electric propulsion systems.
⢠Thermal Control in Micro- and Nanosatellites: An exploration of the special considerations for thermal management in small spacecraft, including size, weight, and power constraints.
⢠Case Studies in Spacecraft Thermal Control: A review of real-world examples and best practices for spacecraft thermal control, including successes and failures.
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