Review of In Situ Thermal Measurement Techniques for Atmospheric Reentry

Orbital launch frequencies are projected to increase significantly in the next decade to meet the growing demand for commercial satellite services, sovereign defense capabilities, and environmental monitoring data. Launch providers have reintroduced reusable launch systems (RLVs) to minimize costs, turnaround time, and environmental impacts. Thus, efficient and economical methods to assess postflight performance and future usability after encountering the extreme aerothermal environment through reentry are critical. The field of postflight thermal analysis lacks a comprehensive systematic review of in situ thermal measurement methodologies, presenting a crucial knowledge gap in aerospace and thermal engineering research. This review addresses this need by providing a comprehensive examination of existing in situ thermal measurement techniques against a list of criteria, offering researchers and engineers a structured framework for method selection and comparative analysis. Through a systematic synthesis of current literature, we evaluate five thermal measurement methods, highlighting their strengths, limitations, and contextual applicability.

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Publication Details

Journal
Journal of Spacecraft and Rockets
Published
2026-08-24
DOI
https://doi.org/10.2514/1.a36433
Primary Topic
Gas Dynamics and Kinetic Theory
Type
article
Field-Weighted Citation Impact
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Review of In Situ Thermal Measurement Techniques for Atmospheric Reentry

Priyanka Dhopade, Andrew Neely, Tom Allen, Nam Kyeun Kim et al.
Journal of Spacecraft and Rockets
Gas Dynamics and Kinetic Theory
article

Review of In Situ Thermal Measurement Techniques for Atmospheric Reentry

Priyanka Dhopade, Andrew Neely, Tom Allen, Nam Kyeun Kim, Fatema Rampurawala, Trista Yuting Ma, Andrew Meng
article en

Abstract

Orbital launch frequencies are projected to increase significantly in the next decade to meet the growing demand for commercial satellite services, sovereign defense capabilities, and environmental monitoring data. Launch providers have reintroduced reusable launch systems (RLVs) to minimize costs, turnaround time, and environmental impacts. Thus, efficient and economical methods to assess postflight performance and future usability after encountering the extreme aerothermal environment through reentry are critical. The field of postflight thermal analysis lacks a comprehensive systematic review of in situ thermal measurement methodologies, presenting a crucial knowledge gap in aerospace and thermal engineering research. This review addresses this need by providing a comprehensive examination of existing in situ thermal measurement techniques against a list of criteria, offering researchers and engineers a structured framework for method selection and comparative analysis. Through a systematic synthesis of current literature, we evaluate five thermal measurement methods, highlighting their strengths, limitations, and contextual applicability.

Journal of Spacecraft and Rockets
University of Auckland (NZ), Canberra (United Kingdom) (GB), UNSW Canberra
Openalex Percentile: Top 5%
Gas Dynamics and Kinetic Theory
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