Space Industry and Business News  
EARTH OBSERVATION
Testing time for MetOp Second Generation
by Staff Writers
Noordwijk, The Netherlands (ESA) Nov 26, 2019

MetOp Second Generation (MetOp-SG) will continue meteorological observations from polar orbit. It will ensure continuity of indispensable observations without data gaps, improve the accuracy and resolution of the measurements and provide new measurement capabilities.

ESA's ESTEC Test Centre in the Netherlands has completed its initial test campaign for the future of European weather forecasting - MetOp Second Generation. MetOp Second Generation (MetOp-SG) is a follow-on system to the successful MetOp satellites, the last of which launched into its 800 km polar orbit in 2018.

MetOp-SG is Europe's component of the Joint Polar System, which is a collaboration with the US. Eumetsat, the European Organisation for the Exploitation of Meteorological Satellites, operates the MetOp satellites and is responsible for developing the ground segment of the system and delivering the meteorological data to the world-wide user community. ESA is responsible for designing and manufacturing the space segment of the system - the satellites themselves.

For this campaign the test item was not flight hardware but a prototype version specially built for initial testing, known as the 'structural and thermal model' (STM).

This initial MetOp-SG satellite, standing 6.5m high and weighing in at 4.4 tonnes including propellant, was shaken, shocked and placed in prolonged vacuum under simulated sunlight to demonstrate the design's qualification for launch and readiness for space.

The MetOp Second Generation mission is actually made up of two different satellites each with different suites of instruments onboard.

"Our STM is actually a hybrid of these two satellite designs," explains Nick Goody, the mission's propulsion and assembly integration and testing engineer.

"The two satellites have a common platform, while the STM is equipped with the nadir-pointing instruments from satellite-A plus payload unit items from satellite-B, including amplifiers and power supplies. This hybrid configuration results in the maximum mass and power dissipation for the STM testing, intended for mechanical and thermal qualification. Those qualification objectives not covered by the STM will be addressed by the SAT-A and SAT-B proto-flight models."

The test campaign began at the Toulouse facility of Airbus Defence and Space in December 2018, where dummy units, thermal hardware and electrical harness was integrated, together with the propulsion module supplied by Airbus's facility in Stevenage, UK. This was followed by integration of test models of the instruments and the completion of its 'harness' - the maze of wiring connecting everything together - and its multi-layer insulation wrapping.

"A micro-vibration test campaign was performed to characterise the transfer functions between the instruments and other microvibration exporters such as the reaction wheels," said MetOp-SG satellite engineering manager Enrico Corpaccioli.

"These measurements allow us to better analyse the effects of micro-vibrations on the instruments during the operation of the satellite when it is in orbit. Alignment measurements were also performed to provide a reference before environmental testing began."

Then, in June 2019, the STM was transported to the ESTEC Test Centre in Noordwijk. The largest satellite test site in Europe, the centre is equipped with facilities to simulate every aspect of the space environment under a single cleanroom roof.

Here it was unpacked for vibration testing. It was then filled with 760 kg of demineralised water, in place of the hydrazine propellant it will be fuelled with before launch, for 'sine' testing along each axis - undergoing a progressive sweep of frequencies and amplitudes to hunt out any potentially harmful structural resonances.

"Qualification levels are applied to the STM structure," adds Nick, "meaning that the amplitudes are significantly above the expected flight levels and the durations are longer in order to demonstrate the necessary margin in the design."

A 'quasi-static' load test was also performed. Satellites are exposed to simultaneous static and dynamic loads during the launch phase due to launcher acceleration and aerodynamics. This quasi-static load test combines static and dynamic loads into an equivalent load which is applied to the satellite in a high amplitude sine burst over a few seconds.

A rocket launch is an extremely noisy event, so MetOp-SG was then transferred to the Large European Acoustic Facility. Here nitrogen is passed through massive acoustic horns within a sealed chamber, recreating the sound of a launch.

The next step was a 'fit check' and separation test, involving mating the satellite with a launcher adapter provided by Arianespace, to guarantee the two designs fit together as intended and that the ring securing the satellite to the launcher - known as the clampband - operates correctly so that the separation can occur without any problem.

Next came the thermal test phase, which saw MetOp-SG moved into the Large Space Simulator, the largest vacuum chamber in Europe, equipped with a solar simulator based on an array of high power lamps.

A number of orbits were simulated in various hot and cold conditions until 'thermal stability' was achieved within set levels. The results from this test allows experimental correlation of the spacecraft mathematical thermal model, used to verify the thermal control design.

Testing concluded with further alignment testing - to check the model had endured its test regime without structural deformation - and a 'leak check' involving filling the propulsion module with helium gas.

"This test campaign has provided important qualification data," adds Nick, "allowing correlation of the models with representative test data and confirming the analysis performed during the design stage. The structural thermal model has now been transported back to Toulouse in France, where the instrument models, propulsion module and dummy units are being removed.

"The satellite STM structure and propulsion module will be returned to their suppliers for refurbishment, as they are destined to be employed in MetOp SG-A's second flight model."

A tale of two MetOp-SGs
The two-satellite MetOp-SG system provides data from polar orbit for weather forecasting and climate monitoring and the suite of instruments provide information on atmospheric chemistry, air quality, oceanography, hydrology, wind, sea ice, precipitation and temperature profiles in the atmosphere.

MetOp SG-A hosts IASI-NG (Infrared Atmospheric Sounder Interferometer - New Generation) developed by French space agency CNES; the METimage advanced multispectral imaging radiometer developed by German Aerospace Center DLR; the ESA-developed Copernicus Sentinel-5 for atmospheric sounding plus ESA's MWS (Microwave Sounder); 3MI ((Multi-view Multi-channel Multi-polarisation Imager) and RO (Radio Occultation) instruments.

MetOp SG-B includes the same RO instruments as MetOp-SG-A plus the ESA-developed SCA (Scatterometer), ICI (Ice Cloud Imager), MWI (MicroWave Imager) and the CNES-contributed Argos Data Collection Service, collecting information from ocean-going buoys and a Space Environment Monitor contributed by Thales Alenia Space.

MetOp-SG is projected to enter service in 2023.


Related Links
Space Engineering and Technology at ESA
Earth Observation News - Suppiliers, Technology and Application


Thanks for being here;
We need your help. The SpaceDaily news network continues to grow but revenues have never been harder to maintain.

With the rise of Ad Blockers, and Facebook - our traditional revenue sources via quality network advertising continues to decline. And unlike so many other news sites, we don't have a paywall - with those annoying usernames and passwords.

Our news coverage takes time and effort to publish 365 days a year.

If you find our news sites informative and useful then please consider becoming a regular supporter or for now make a one off contribution.
SpaceDaily Contributor
$5 Billed Once


credit card or paypal
SpaceDaily Monthly Supporter
$5 Billed Monthly


paypal only


EARTH OBSERVATION
Combining satellites, radar provides path for better forecasts
University Park PA (SPX) Nov 12, 2019
Every minute counts when it comes to predicting severe weather. Combing data from cutting-edge geostationary satellites and traditional weather radar created a path toward earlier, more accurate warnings, according to Penn State researchers who studied supercell thuderstorms in the Midwest. "We know satellites have an advantage in producing forecasts earlier, and radar has more confidence in where clouds should be and where thunderstorms will be moving," said Yunji Zhang, assistant research profes ... read more

Comment using your Disqus, Facebook, Google or Twitter login.



Share this article via these popular social media networks
del.icio.usdel.icio.us DiggDigg RedditReddit GoogleGoogle

EARTH OBSERVATION
India's Space Minister reveals reason behind 'failed' Chandrayaan-2 lunar mission

NASA rockets study why tech goes haywire near poles

Hunter-gatherers heated bacteria to produce ochre paint used in pictographs

Turning up the heat to create new nanostructured metals

EARTH OBSERVATION
Airbus' marks 50 years in Skynet secure satellite communications for UK

Lockheed Martin gets $3.3B contract for communications satellite work

GenDyn nets $783M for next-gen Navy MUOS operations

F-35 to Space? US Air Force looks to connect stealth fighters to X-37B Spacecraft

EARTH OBSERVATION
EARTH OBSERVATION
China launches two more BeiDou satellites for GPS system

Russia to launch glass sphere into space before new year to obtain accurate Earth data

Lockheed Martin GPS Spatial Temporal Anti-Jam Receiver System to be integrated in F-35 modernization

GPS III Ground System Operations Contingency Program Nearing Operational Acceptance

EARTH OBSERVATION
First flight for aeroelastic wings at Oberpfaffenhofen special-purpose airport

United Technologies awarded $762.5M for Air Force, Marine Corps F-35 engines

Bone breakthrough may lead to more durable airplane wings

FSU researchers develop thin heat shield for superfast aircraft

EARTH OBSERVATION
Study probes relationship between strange metals and high-temperature superconductors

Powering future optical microsystems with chip-scale integrated photonics

Scientists find surprising quantum effect in an exotic superconductor

New 'synthetic' method for making microchips could help

EARTH OBSERVATION
NASA soil data joins the Air Force

Telescopes and satellites combine to map entire planet's ground movement

Science around the planet uses images of Earth from the Space Station

New Moon-seeking sensor aims to improve Earth Observations

EARTH OBSERVATION
Lebanon anti-graft protesters march for nature too

New material captures and converts toxic air pollutant into industrial chemical

Delhi suffocates under toxic smog but millions go without masks

Faroe Islands to 'close' for a weekend to protect environment









The content herein, unless otherwise known to be public domain, are Copyright 1995-2024 - Space Media Network. All websites are published in Australia and are solely subject to Australian law and governed by Fair Use principals for news reporting and research purposes. AFP, UPI and IANS news wire stories are copyright Agence France-Presse, United Press International and Indo-Asia News Service. ESA news reports are copyright European Space Agency. All NASA sourced material is public domain. Additional copyrights may apply in whole or part to other bona fide parties. All articles labeled "by Staff Writers" include reports supplied to Space Media Network by industry news wires, PR agencies, corporate press officers and the like. Such articles are individually curated and edited by Space Media Network staff on the basis of the report's information value to our industry and professional readership. Advertising does not imply endorsement, agreement or approval of any opinions, statements or information provided by Space Media Network on any Web page published or hosted by Space Media Network. General Data Protection Regulation (GDPR) Statement Our advertisers use various cookies and the like to deliver the best ad banner available at one time. All network advertising suppliers have GDPR policies (Legitimate Interest) that conform with EU regulations for data collection. By using our websites you consent to cookie based advertising. If you do not agree with this then you must stop using the websites from May 25, 2018. Privacy Statement. Additional information can be found here at About Us.