Europa Mission Lisa Gaddis (USGS, Astrogeology)

Slides:



Advertisements
Similar presentations
Pre-Decisional — For Planning and Discussion Purposes Only
Advertisements

The BepiColombo Mission
Enceladus: Results from Recent Cassini Flybys of the Active Moon CHARM telecon 25 November 2008 Paul Helfenstein Sascha Kempf John Spencer.
Space Exploration Mars Rovers, Apollo program, Voyager satellites, and SETI All Presented by the Peter C Period: 2 (two) As in 1+1=2 Or 2x1=2 ®
Solar System Science Olympiad Practice Gallery.
Mars Invasion: Spirit, Opportunity, Mars Express Meghan McGovern.
Modern Exploration Global Surveyor.  Objectives:  High resolution imaging of the surface  Study the topography and gravity  Study the role of water.
ENCELADUS FLYBY Scott Coughlin Brian Lach Holden Martin.
E.T. ( E UROPA T RAVELERS ). GREEN TEAM Mission Principle Investigator : Min Ki Kim Co – Investigator : Young Been Choi : Jae Wook Choi : Yong Hyeon Jang.
The ICESat-2 Mission: Laser altimetry of ice, clouds and land elevation T. Markus, T. Neumann NASA Goddard Space Flight Center W. Abdalati Earth Science.
Payload Site One Upon landing, the LOW prepares for single-site goals and multi-site goals. A drop-box is prepared for single-site goals utilizing various.
An overview of the MESSENGER spacecraft Joshua V. Nelson Chairman, SEDS-USA Note: All images contained in this presentation are courtesy NASA/JPL unless.
The Lunar Reconnaissance Orbiter (LRO) is the first mission in NASA's Vision for Space Exploration, a plan to return to the moon and then to travel to.
EUROPA Joseph T. Wunderlich, Ph.D.. Talk Agenda 1977: NASA Voyager : NASA Voyager : NASA Galileo 2020 ESA/NASA Europa Jupiter System Mission”(EJSM)
Mars Exploration By Jacob Stinar. Water on Mars.
Mysteries of Earth and Mars Mars Facts and Exploration.
A presentation by Jared Stachiw PhD, MPhil and Devon Burmeister P.Eng., BA.
InSight Archive Status Ed Guinness and Susie Slavney PDS Geosciences Node PDS Management Council Berkeley, California November 18-19, 2014.
“ PHOBOS - SOIL ” Phobos Sample Return Mission 1. goals, methods of study A.Zakharov, Russian academy of sciences Russian aviation.
Spacecraft Instruments. ► Spacecraft instrument selection begins with the mission description and the selected primary and secondary mission objectives.
New Horizons NASA’ Pluto-Kuiper Belt Mission A NASA New Frontiers Mission “The First Mission to the Ninth Planet And the Solar System’s Third Zone”
Engineering Means having to deal with failure Missions to Mars as an example of try, try, try again…
CopyrightCopyright: NASA Hubble Composite of Pluto.
PLUTO AND THE KUIPER BELT Beyond Neptune, the most distant major planet, are a large number of smaller objects, all of which currently known are smaller.
Understand how space organizations use concepts of operations and system integration plan to ensure the success of their program Space Concept of Operations.
The G.I.E.C. Space Probe Ganymede, Io, Europa, and Callisto By Jason Hunyar /ast/101/klinger/astronom y/solar%20system/ganyme.
© Lavochkin Association, 2013 Ganymede Lander mission overview.
1 Lunar Reconnaissance Orbiter (LRO) Overview 4/13/2005 Craig Tooley.
Daryien Golden, Eric Nguyen.  Rocket- Atlas V  Weight- 4,806 pounds. including fuel  Instruments-  1- High resolution cameras to capture images and.
Modern Exploration Mars Odyssey  NASA’s theme for Mars exploration, “Follow the Water”, began with the 2001 Mars Odyssey mission  Odyssey, and every.
PDS Geosciences Node Page 1 Archiving Mars Mission Data Sets with the Planetary Data System Report to MEPAG Edward A. Guinness Dept. of Earth and Planetary.

JAXA’s Exploration of the Solar System Beyond the Moon and Mars.
Presented to Kepler Pre-Launch Educator Workshop January 31, 2009 Shari Asplund Discovery and New Frontiers Programs Education and Public Outreach Manager.
1 Lunar Reconnaissance Orbiter (LRO) Overview CRaTER PDR 6/27/2005 Craig Tooley.
Future Space Plans By: Kean R. Tagbo
THE IMPACT MISSION ON SATURN'S IAPETUS Mission: IMPOSSIBLE Introducing….
Planetary InSAR Summary Presented by Pete Mouginis-Mark
Laplace Meeting - Frascati, April 2008 MSSL/UCL UK Penetrators for Europa MSSL/UCL UK Professor Andrew Coates on behalf of UK Penetrator Consortium.
Dr. Richard R. Vondrak Director, Robotic Lunar Exploration Program Science Mission Directorate NASA Headquarters September 2004 NASA Robotic Lunar Exploration.
By: Kiana Gathers. Objectives  To study the climate, the planet’s structure, its geology, and to search for traces of water.  To take global surveys.
Galileo By: Eric Nguyen Daryien Golden. Spacecraft Named after: Galileo Galilei Weight: 2,223 kg Height: 5.3 meters Built By: Jet Propulsion Laboratory.
PDS Geosciences Node Page 1 Archiving LCROSS Ground Observation Data in the Planetary Data System Edward Guinness and Susan Slavney PDS Geosciences Node.
Apollo 50 Lunar Mission Concept Goal: Initiate a series of lunar campaign missions, inspired by Apollo 11, to explore the potential of the Moon for science.
Mission to Pluto Using the satellites and missions described here, plan a mission to Pluto and choose the instruments.
Donald Blankenship University of Texas Institute for Geophysics Mosaic by Ted Stryk Through Europa’s Icy Looking Glass: Beginning the Search for Life on.
2 Jun 2022 Jan 2030 Sep 2032 Jun months 1 month 9 months 11 months 9 months Launch Ariane-5 Jupiter orbit insertion Transfer to Callisto Europa.
Interlude  Viking mission operations ended in the early 1980s  Viking missions gave scientists the most complete picture of Mars to date. What does this.
Science investigations in the framework of expedition to Europa
Enabling Capabilities A Robotic Field Geologist Access to a site mapped from orbit Long life, mobility, capability to explore a local region Remote sensing.
Welcome Briefing Instrument Concepts for Europa Exploration Program Dr. Curt Niebur ICEE Discipline Scientist, Europa Clipper Program Scientist October.
Modern Exploration Mars Global Surveyor  “The mission will provide a global portrait of Mars as it exists today…This new view will help planetary scientists.
DEEP IMPACT Mission To Comet 9P/Tempel 1. Deep Impact What Kind of Mission is it? A Discovery Mission Explore the interior of the nucleus of Comet 9P/Tempel.
Upcoming Missions to Europa (All Photos Credit NASA and ESA)
PDS M/C November 2012 PPI MAVEN Report PDS4 Mission Report: MAVEN PDS Management Council November 28, 2012 J. Mafi.
Lunar Surface Atmosphere Spectrometer (LSAS) Objectives: The instrument LSAS is designed to study the composition and structure of the Lunar atmosphere.
Radio Science PDS Function Report 25 March 2010 Dick Simpson Stanford University.
The Saturn Orbiter: Cassini LAKSHMI SRAVANTHI KOUTHA.
Japanese mission of the two moons of Mars with sample return from Phobos Hirdy Miyamoto (Univ Tokyo) on behalf of MMX team NOTE ADDED BY JPL WEBMASTER:
PDS Geosciences Node Page 1 PDS Geosciences Node Archiving Status Report Ray Arvidson PDS Management Council Washington, DC Nov , 2006.
Geant4 Use at JPL Insoo Jun
JUpiter Icy Moons Explorer (JUICE)
NASA Selects Lucy Mission to Study Jupiter’s Trojan Asteroids
F. Tosi, A. Longobardo, O. Prieto-Ballesteros, G. Choblet
OSIRIS Full Team Meeting
IVO Ariela Berg Rachel Inderhees Io Volcano Observer.
Bethany, Jay, and Michael
Europa Kaitlyn Young.
Cassini Retrospective
OSIRIS-REx: The Origins, Spectral Interpretation, Resource Identification, Security, Regolith Explorer is a.
Presentation transcript:

Europa Mission Lisa Gaddis (USGS, Astrogeology) PDS Cartography and Imaging Sciences Node (You can still call us “Imaging” or PDS-IMG or IMG)

Europa Mission Interface Mission Status Instruments PDS Current Status: Node Assignments Identify Lead Node, Instrument Support Nodes

Europa Mission Now called “Europa Multiple Flyby Mission” Europa Clipper Orbiter and a Lander Explores potential for subsurface ocean & habitability on Jupiter’s moon Europa Ice shell and ocean, composition, geology Performs 45 close flybys of Europa from orbit around Jupiter Topographic survey, ice thickness, plumes? 7 to 10 days to transmit data between flybys Solar powered Joint investigation between JPL & APL Nine instruments on orbiter Nanosatellites for plume samples? Lander configuration is TBD

Europa Clipper Orbital Instruments PIMS: Plasma Instrument for Magnetic Sounding PI: Joseph Westlake, APL ICEMAG: Interior Characterization of Europa using Magnetometry PI: Carol Raymond, JPL MISE: Mapping Imaging Spectrometer for Europa PI: Diana Blaney, JPL EIS: Europa Imaging System PI: Elizabeth Turtle, APL REASON: Radar for Europa Assessment and Sounding: Ocean to Near-Surface PI: Donald Blankenship, Univ. Texas E-THEMIS: Europa Thermal Emission Imaging System PI: Philip Christensen, Arizona State Univ. MASPEX: Mass Spectrometer for Planetary Exploration/Europa PI: Jack Waite, Southwest Research Institute UVS: Ultraviolet Spectrograph/Europa PI: Kurt Retherford, SWRI SUDA: Surface Dust Mass Analyzer PI: Sascha Kempf, Univ. Colorado, Boulder

EMF Mission: Lander Still under development Europa Clipper Orbiter would image the surface over 3 years (95% coverage, 50 m/pixel) to help identify a landing site 1-Meter in diameter, 230 kg, 30 kg for instruments Possible instruments: Mass spectrometer Raman spectrometer Sky crane landing system? 10 days of surface operations (battery power) Active crevasse site?

EMF Mission: Notional Timeline (?) Still under assessment Atlas V 551 rocket >> 6 years transit time Space Launch System (SLS) >> 3 years transit time Launch 2022 to 2025 (in ~6 to 9 years) Mission duration: 3 to 5 years?

EMF Mission: TBD for PDS Identify Lead Node Assign Instrument Nodes Draft schedule, contact Pappalardo (JPL) Establish DAWG, move into archive operations

EMF Instruments & PDS Nodes

Typical Mission & PDS Timeline

Mission: Proposed Archiving Schedule Now (Current date) Start DAWG meetings Start draft of Archive Plan Start drafts of ICDs Mission PDR (Date, ~1.5 yrs later) Preliminary DMAP (Archive Plan) completed Draft ICD for each instrument completed E2E Peer Review?? Mission CDR (Date, ~1 yr later) Final Archive Plan completed Final ICDs completed Draft SIS documents completed Start peer reviews of instrument data products Launch minus 6 months (Date, ~2 yrs later) Final SIS documents completed Peer reviews complete Launch (Date, ~2 yrs later) TBD First data acquisition period – 30 days or 3 months First data release – end of data acquisition + 3 months (Meets Level 1 reqt to archive data in <6 months after receipt) Subsequent releases – every 3 months

PDS Archive Process

PDS Archive Process