Rocket_Report_1st_quarter_2019.pdf
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- NASA Sounding Rocket Operations Contract (NSROC) IV - FINAL Request for Proposal, eLibrary Federal contract opportunity
- Solicitation number
- 80GSFC21R0037-eLibrary
About this file
The document is a quarterly report from the National Aeronautics and Space Administration's (NASA) Sounding Rocket Program Office providing an overview of recent activities and upcoming missions. It describes seven sounding rocket missions scheduled between April and June 2019 to be carried out from various launch ranges across the United States and Norway. Details include the mission names and objectives, lead investigators and home institutions, planned launch dates and locations. Additionally, the report provides images from recent rocket integration activities in Norway as well as information on an upcoming meeting and anniversary event.
The federal contract opportunity documentation represents the electronic library for the NASA Sounding Rocket Operations Contract (NSROC) IV solicitation seeking services to support sounding rocket launch operations. The library contains all relevant proposal documentation for the special notice solicitation issued by NASA's Goddard Space Flight Center to procure sounding rocket launch services through 2024 with one base period and four option years.
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Text version
Sounding Rockets Program Office
National Aeronautics and Space Administration
What’s inside...
2 Features
3 Picture Place
6 Schedule & Miscellanea
This was an international student mission with participation from the US, Norway and
Japan and follows the RockSat-X mission architecture. RockSat-X student experi-ments are developed with an objective of providing students with an enhanced expe-rience of flying experiments exposed to the space environment. This mission differed from the historical RockSat-X architecture in two major ways: it was launched from
Norway, and it incorporated foreign national participation.
The following student experiments were flown on this mision:
UiT = University of Norway – Tromso This experiment was designed to detect and measure distribution of neutral Mesospheric Smoke Particles
(MSP) in the winter Mesosphere. A new probe design, Smoke Particle
Impact Detector (SPID), allowed de-tection of small MSPs.
RockSat-XN launch from Andoya Space Center, Norway.
46.018 UO Koehler - RockSat-XN successfully launched on
January 13, 2019.
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In Brief...
The Sounding Rocket Working Group meeting was held at Wallops February 5-6, 2019.
Motors for the Kwajalein launches in June have been shipped and have arrived on site.
Planning for Australia 2020 is continuing. Recent changes reduces the number of launches to three, requiring only one launcher.
SRPO Chief, Giovanni Rosanova, and SRPO Proj-ects Manager, Gordon Marsh supported Poker Flat 50th anniversary open house. The event was well received.
On the web at: http://sites.wff.nasa.gov/code810/2
UiO - University of Oslo The UiO experiment was designed to release and establish communica-tion with six sub-payload modules
(daughters), and measure small-scale electron density using Langmuir probe systems onboard the daugh-ters. Post-flight data analysis will be conducted to study plasma turbu-lence and instability.
PARM – University of Tokyo This experiment was designed to observe the incoming Pulsating Au-rora (PsA) electrons in a wide energy range, from a few tens of keV to a few
MeV, by onboard particle detectors.
Additionally, an onboard optical in-strument, which is essential for study-ing PsA, was used to observe the temporal/spatial variations of PsA.
PSU: Pennsylvania State Uni-versity The Penn State experiment was designed to contribute to the un-derstanding of the cause(s) of Polar
Mesosphere Winter Echoes (PMWEs).
The onboard instrument measure-ments were compared to ground radar measurements of PMWEs recorded simulatenously with the rocket flight.
CTU –Capital Tech University This experiment aimed to identify atmo-spheric composition through spectral analysis. Additionally, a modified Aerogel thermal insulation was tested.
UNH –University of New Hamp-shire The experiment directly observed Nitric
Oxide (NO) air afterglow emissions vs.
altitude. Also, calculations of NO densi-ties and enhancements vs. typical back-ground values were performed.
UPR –University of Puerto Rico The experiment consisted of the collec-tion and analysis of organic compounds located inside the aurora borealis trail.
RockSat-XN students at Andoya Space Center in Norway.
Image Credit: Chris Perry/Wallops Imaging Lab
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RockSat-XN integration in Norway.
RockSat-XN continued
3On the web at: http://sites.wff.nasa.gov/code810/
Picture Place
Alex and Andrew with FORTIS in the ground station.
Larry working on Too WINDY. RockSat-XN students with payload.
Gary and Rob with Too WINDY.
Kyle and Brooks working on SISTINE.
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On the web at: http://sites.wff.nasa.gov/code810/4
Integration & Testing
36.344 & 36.345 UE Hysell - Waves and Instabilities from a Neutral Dynamo (Too WINDY)
Too WINDY will investigate the stability of the post sunset equatorial F region ionosphere and the factors that predispose it to equatorial spread F (ESF), a phenomenon charac-terized by broadband plasma turbulence which degrades radio and radar signals at low magnetic latitudes. The goal of the investigation is to lay the foundation for a strategy to forecast the disruptive phenomenon. The focus of the investigation will be on the influ-ence of horizontal thermospheric winds. Two rockets, carrying one instrumented payload and one tracer payload respectively, will be launched nearly simultaneously into a ESF event from Roi Namur, Kwajalein Atoll, Marshall Islands. The launches are scheduled for June 2019.
36.324 US Harris - Spatial Heterodyne Interferometric Emission Line Dynamics Spectrometer
(SHIELDS)
The purpose of this mission is obtain a spatial map of scattered solar ultravio-let (UV) emission from interplanetary hydrogen (IPH) that has crossed, and been modified by, the ion pile-up along the outer edge of the heliosphere. The map will be constructed along multiple lines of sight over a 30° diameter region of the sky located near the location corresponding to the relative velocity vector between the Sun and the local interstellar medium (LISM). SHIELDS is scheduled to launch from White Sands Missile Range, NM in the spring of 2020.
5On the web at: http://sites.wff.nasa.gov/code810/
36.352 UG McCandliss - Far-ultraviolet Off Rowland-circle Telescope for Imaging and Spectroscopy
(FORTIS)
This mission will provide Far-UV spectra of blue stragglers in globular cluster M10 with the FORTIS instrument. FORTIS is a multi-object spectro/telescope equipped with a next-generation microshutter array (NGMSA) capable of imaging individual stars within NGMSA slitlets while simultaneously obtaining their far-UV spectra.
Blue stragglers are stars that are bluer, more massive, and more luminous than the main sequence turnoff (the point where a star leaves the main sequence after the exhaustion of its main fuel) in a given stellar population. Star formation theories assume that all stars in a cluster form at roughly the same time, therefore these blue stragglers require alternative formation mechanisms.
They are thought to form via collisions and interactions of binary stars, therefore high stellar density environments such as globular clusters provide rich sources of blue stragglers. Using far-UV light allows FORTIS to easily distinguish the blue stragglers from the large population of old red stars in the cluster. These spectra and images will enable further exploration of blue straggler formation mechanisms in globular clusters.
FORTIS is scheduled for launch from White Sands Missile Range, NM in June 2019.
This will be the fourth flight of FORTIS.
46.020 GT Hesh - Sub-TEC 8
Swarm Communication is a development effort to design a system that telemeters data from multiple deploying sub-payloads to the main payload. The design effort encompasses a sub-payload trans-mitting antenna, a sub-payload command and control board with embedded encoder, a main payload receive software defined radio, and a main payload receive antenna system with filter and low noise amplifier.
The Sub-TEC 8 payload will deploy four sub-payloads – two using high velocity springs and two using COTS rocket motors. The data from the sub-payloads will be telemetered to the main payload via S-band frequencies at speeds of up to 1 Mbps and separation dis-tances up to 20 km.
A test was conducted on the antennas to confirm functionality dur-ing a sub-payload rocket motor firing. The image shows a sub-pay-load mounted to the test fixture and the rocket motor firing (plume going up). Antennas are mounted on the sides of the aft plate of the sub-payload.
36.324 US Harris - Spatial Heterodyne Interferometric Emission Line Dynamics Spectrometer
(SHIELDS)
On the web at: http://sites.wff.nasa.gov/code810/6 On the web at: http://sites.wff.nasa.gov/code810/ 6
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Contact:
Chuck Brodell Phone: #1827 Email: Charles.L.Brodell@nasa.gov or
Berit Bland Phone: #2246 Email: Berit.H.Bland@nasa.gov
WS - White Sands WI -Wallops Island NOR - Andoya, Norway FB - Fairbanks Kwaj - Kwajalein, Marshall Islands SVAL - Svalbard, Norway
Launch Schedule April - June 2019
Poker Flat Research Range - 50th Anniversary Open House
MISSION DISCIPLINE EXPERIMENTER INSTITUTION PROJECT RANGE DATE
51.001 UE GEOSPACE SCIENCES LARSEN CLEMSON UNIV AZURE NOR LAUNCH BY
04/10/2019
51.002 UE GEOSPACE SCIENCES LARSEN CLEMSON UNIV AZURE NOR LAUNCH BY
04/10/2019
36.332 NS SOLAR & HELIOSPHERIC MCKENZIE NASA MSFC CLASP 2 WS 04/11/19
36.344 UE GEOSPACE SCIENCES HYSELL CORNELL UNIVERSITY TooWINDY KWAJ 06/09/19
36.345 UE GEOSPACE SCIENCES HYSELL CORNELL UNIVERSITY TooWINDY KWAJ 06/09/19
41.126 UO STUDENT OUTREACH KOEHLER COLORADO SPACE
GRANT
RockOn WI 06/20/19
36.352 UG UV/OPTICAL ASTROPHYSICS MCCANDLISS JOHNS HOPKINS FORTIS WS 06/30/19
36.281 UG UV/OPTICAL ASTROPHYSICS BOCK CAL TECH CIBER-2 WS 06/30/19
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