Sounding rocket litho 2017.pdf
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- NASA Sounding Rocket Operations Contract (NSROC) IV - FINAL Request for Proposal, eLibrary Federal contract opportunity
- Solicitation number
- 80GSFC21R0037-eLibrary
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This document provides an overview of NASA's Sounding Rocket Program and the related NASA Sounding Rocket Operations Contract (NSROC) IV solicitation. The Sounding Rocket Program uses small rockets to carry instruments on suborbital flights up to 1,500 kilometers altitude, collecting measurements in areas such as geospace research, solar and astrophysics studies, and atmospheric science. NASA launches approximately 20 sounding rocket missions annually from sites in Alaska, New Mexico, and Norway. The attached NSROC IV solicitation represents the eLibrary for the final Request for Proposal to provide operational and logistical support for the Sounding Rocket Program. Services will include launch operations, payload processing, range safety, and telemetry support. The anticipated award date is October 2021, with a one-year base period and four one-year options.
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National Aeronautics and Space Administration
Sounding Rocket Configurations
Science and Technology
Planetary Science Solar Physics Technology Development Geospace Science Astrophysics
This trajectory profile, for a two stage Black Brant IX sounding rocket carrying a solar telescope payload, shows altitude in kilometers vs. time in seconds. When the fuel in each stage of the vehicle is expended, the empty casing is dropped from the stack and the next stage is ignited. As the payload reaches the desired altitude, the Attitude Control System (ACS) aligns the instrument with the science target, in this example the Sun, and data collection starts. The data is transmitted to a ground station and recorded for later analysis by the researchers. All parts re-enter the atmosphere and land downrange from the launch site. Some payloads are equipped with parachutes and are recovered and reused.
100 600500400300200
Al tit ud e
(k m
Sample Trajectory
Time (sec)
1s t s ta ge
Te rr ie r
2n d st ag e Bl ac k
Br an t Pa yl oa d
21 29 52514641363530
Bl ac k Br an t V
Bl ac k Br an t V
Bl ac k Br an t V
Bl ac k Br an t V
Bl ac k Br an t V
Te rr ie r
Te rr ie r
Te rr ie r
Te rr ie r
Te rr ie r
Te rr ie r
Te rr ie r
M al em ut e
Im pr ov ed
M al em ut e
Im pr ov ed
O ri on
O ri on
Ta lo s
Ta lo s N ih ka
N ih ka
Black Brant X
Black Brant IX
Black Brant XI-A
Black Brant XII-A www.nasa.gov
To take a sounding means to take a measurement. Instruments on board sounding rockets take measurements in the atmosphere and in space.
Sounding rockets carry experiments to altitudes between 50 and 1,500 km and fly in nearly parabolic trajectories, re-entering the atmosphere downrange from the launch site.
Science missions focus on geospace research, solar physics, astrophysics, and atmospheric studies. Auroral studies are often conducted with instruments that measure electron densities and structures in plasma. These missions are flown from launch sites in the arctic. Telescopes launched with sounding rockets are used for planetary, solar, and astrophysics studies.
New technologies for future satellite missions are tested with sounding rockets, allowing scientists to verify functionality of instruments prior to committing to a multiyear space mission.
Sounding rockets are used for carrying and releasing re-entry test vehicles. The instrumented re-entry body transmits data on dynamic pressure, orientation, velocity, and other characteristics of the flight. This research helps answer questions about landing probes on other celestial bodies, such as Mars or perhaps moons orbiting other planets in our solar system.
The hands-on approach to instrument design, integration, and flight, as well as the short mission life-cycle, provides opportunities for the next generation of space scientists and engineers. Students are often involved through participation in the science missions or through dedicated education missions supported by NASA.
Approximately 20 missions from sites worldwide are launched annually.
Mobile operations enable scientists to conduct research from strategic vantage points. Frequently used launch sites are located in Alaska, New
Mexico, and Norway.
NASA uses multiple different sounding rocket configurations. The smallest is a single stage, or single rocket motor, Improved Orion and the largest is a four stage Black Brant XII-A. After a motor burns out, it is dropped from the stack, reducing the mass that the next stage has to lift. The next stage then ignites and carries the payload higher.
This sequence of events is repeated until all the motors are expended.
The payload separates from the final stage and science operations are conducted. When the experiment is completed, the payload re-enters the atmosphere. When recovery of the experiment is required, a parachute is deployed allowing a gentle landing. Flotation devices are used to keep experiments afloat when launches occur over water.
NASA’s Sounding Rockets Program is managed by the Sounding Rockets
Program Office located at NASA Goddard Space Flight Center’s Wallops
Fligth Facility in Virginia.
Parachute Recovery The forward parachute recovery system is housed in the front of the payload.
Boost Guidance The S19 is a boost guidance system that keeps the ve-hicle on a pre-programmed track for the lower-atmo-sphere portion of the flight.
ACS
Attitude Control Systems (ACS) are used to point the payload toward the target of interest.
Telemetry The Telemetry system enables experiment data to be transmitted to a ground station.
Experiment This section houses the scientific instruments.
Shutter Door Used mainly for telescope payloads, the shutter door is opened in space allowing the telescope to see the target of investigation.
Sounding Rocket Launch Sites
Active Launch Sites
In-active Launch Sites
Hawaii
New Mexico
Alaska
Virginia
Canada Greenland
Norway Sweden
Australia
Marshall IslandsPuerto Rico
Brazil
Peru http://sites.wff.nasa.gov/code810/ LG-2017-6-020-WFF
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