Javascript must be enabled to continue!
Thermal Design of the SPAS Spacecraft for the SPAS III Mission
View through CrossRef
<div class="htmlview paragraph">The SPAS (Shuttle Pallet Satellite) is a battery powered, 3-axis stabilized spacecraft which provides mechanical interface, power, command, low rate telemetry and high density data storage. A reconfigured SPAS for the SPAS III mission has been defined which includes new avionics and power subsystems, a modified communications subsystem, a Global Positioning System receiver, and a new sensor suite. The primary sensors are an IR (Infrared) Radiometer, an IR Spectrometer, a Multi-Spectral Imager/Spectrometer and two television cameras. The SPAS is deployed from the STS (Space Transportation System) orbiter for approximately four days, controlled with either ground or Astronaut commands, and then retrieved.</div>
<div class="htmlview paragraph">Due to its externally mounted sensors and components, and widely varying possible orbital attitudes and mission conditions, the SPAS presented a challenging thermal design opportunity. This paper describes the design approach, problems encountered in the design process, and final thermal design. The thermal modeling of the SPAS is discussed. Flight temperature predictions are also included for both STS attached and free flyer mission phases.</div>
Title: Thermal Design of the SPAS Spacecraft for the SPAS III Mission
Description:
<div class="htmlview paragraph">The SPAS (Shuttle Pallet Satellite) is a battery powered, 3-axis stabilized spacecraft which provides mechanical interface, power, command, low rate telemetry and high density data storage.
A reconfigured SPAS for the SPAS III mission has been defined which includes new avionics and power subsystems, a modified communications subsystem, a Global Positioning System receiver, and a new sensor suite.
The primary sensors are an IR (Infrared) Radiometer, an IR Spectrometer, a Multi-Spectral Imager/Spectrometer and two television cameras.
The SPAS is deployed from the STS (Space Transportation System) orbiter for approximately four days, controlled with either ground or Astronaut commands, and then retrieved.
</div>
<div class="htmlview paragraph">Due to its externally mounted sensors and components, and widely varying possible orbital attitudes and mission conditions, the SPAS presented a challenging thermal design opportunity.
This paper describes the design approach, problems encountered in the design process, and final thermal design.
The thermal modeling of the SPAS is discussed.
Flight temperature predictions are also included for both STS attached and free flyer mission phases.
</div>.
Related Results
Comet Interceptor: A mission to an ancient world
Comet Interceptor: A mission to an ancient world
Comets are the most pristine objects in our Solar System. Having spent most of their life at large distance from the Sun, where they remained mostly unaffected by solar radiation, ...
GNC functional architecture design and implementation of the LISA drag-free control system
GNC functional architecture design and implementation of the LISA drag-free control system
The LISA (Laser Interferometer Space Antenna) mission is one of the most challenging endeavours to be undertaken by ESA whose objective is to study gravitational waves. The mission...
Attitude motion of spacecraft during oblique solar panel deployment
Attitude motion of spacecraft during oblique solar panel deployment
PurposeThe purpose of this paper is to establish the dynamics model of spacecraft during deployment of oblique solar panel using Auto Dynamic Analysis of Mechanical System (ADAMS) ...
Companions in the Spirit – Companions in Mission
Companions in the Spirit – Companions in Mission
Introductory RemarksSince Pentecost the Holy Spirit has inspired the church to proclaim Jesus Christ as the Lord and Saviour and we continue to be obedient to the command to preach...
OSIRIS-APEX: NASA's Apophis Explorer Mission
OSIRIS-APEX: NASA's Apophis Explorer Mission
Introduction: NASA’s Origins, Spectral Interpretation, Resource Identification, and Security– Regolith Explorer (OSIRIS–REx) mission characterized and collected a sample from aster...
Thermal Effects in High Compactness CEA Stack
Thermal Effects in High Compactness CEA Stack
Thermal management is a pivotal aspect of stack durability and system operability. Consequently, understanding the thermal mapping within a stack based on its operating conditions ...
The Mission motif of selected passages of the book of Isaiah
The Mission motif of selected passages of the book of Isaiah
This study was directed by two main purposes: (1) to investigate the motif of mission in selected passages in the Book of Isaiah and (2) to discover the theological significance of...
The mechanical, structural and thermal design of the Telescope Assembly of ARIEL
The mechanical, structural and thermal design of the Telescope Assembly of ARIEL
<p><strong>The mechanical, structural and thermal design of the Telescope Assembly of ARIEL</strong></p>
<ul>
...

