Objectives and Achievements of the Hypersonic Flight Experiment STORT

The three-stage rocket configuration of the hypersonic experiment STORT with several scientific payloads concerning hypersonic technologies was launched from the Andøya Space launch site in northern Norway on 26th June 2026 successfully. The third stage performed a suppressed trajectory to increase...

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Bibliographic Details
Main Authors: Gülhan, Ali, Hargarten, Dorian Amadeus, Zurkaulen, Maximilian, Klingenberg, Florian, Siebe, Frank, Reimer, Thomas, Di Martino, Giuseppe
Format: Conference Object
Language:English
Published: 2022
Subjects:
KP
Online Access:https://elib.dlr.de/189284/
https://elib.dlr.de/189284/1/IAC-22D267x69473%20G%C3%BClhan.pdf
Description
Summary:The three-stage rocket configuration of the hypersonic experiment STORT with several scientific payloads concerning hypersonic technologies was launched from the Andøya Space launch site in northern Norway on 26th June 2026 successfully. The third stage performed a suppressed trajectory to increase integral heat load on the structures of payloads. The duration of a flight phase above Mach 8 at altitudes between 30 km and 38 km was more than 60 seconds. The nose and forebody section of the payload is made of the CMC structures. Three canards with a CMC thermal protection were equipped with thermal management experiments to verify the thermal efficiency of these methods. All engineering science experiments like aerothermal heating of the nose and forebody, CMC material response at temperatures above 2200 K, hypersonic thermal management, shock wave boundary layer interaction, CFRP module with cork coating for high temperature applications, high temperature fin leading edge and radiometer sensors provided unique flight data. A reduced in-flight 3 DoF trajectory simulation running on the flight computer determined the ignition time of the third stage which allowed improved experiment conditions in terms of Mach number and apogee altitude even in the presence of external perturbations.