Showing posts with label cargo bay. Show all posts
Showing posts with label cargo bay. Show all posts

Wednesday, May 2, 2012

NASA and SpaceX: Preparation for May 7 Launch

In a processing facility at Space Launch Complex-40 on Cape Canaveral Air Force Station in Florida, Space Exploration Technologies technicians attach the Dragon capsule to the second stage of the company’s Falcon 9 rocket.

Known as SpaceX, the launch will be the company's second demonstration test flight for NASA's Commercial Orbital Transportation Services program, or COTS.

During the flight, the capsule will conduct a series of check-out procedures to test and prove its systems, including rendezvous and berthing with the International Space Station.

If the capsule performs as planned, the NanoRacks-CubeLabs Module-9 experiments and other cargo aboard Dragon will be transferred to the station.

The cargo includes food, water and provisions for the station’s Expedition crews, such as clothing, batteries and computer equipment.

Under COTS, NASA has partnered with two private companies to provide resupply missions to the station. The launch is scheduled for 9:38 a.m. EDT on May 7. For more information, visit www.nasa.gov/spacex.

Photo credit: NASA/Jim Grossmann

Thursday, April 19, 2012

NASA - Orbital Sciences Corporation’s Antares Rocket

The first stage of Orbital Sciences Corporation’s Antares rocket stands in launch position during pathfinder operations at NASA’s Wallops Flight Facility and the Mid-Atlantic Regional Spaceport. Orbital’s Antares launch vehicle will be conducting missions for NASA under its Commercial Orbital Transportation Service Program and Cargo Resupply Services contract.

Image Credit: NASA/P.Black

Monday, April 2, 2012

ESA ATV production terminated: Executive Decision on follow-on under review


The cargo carrier pictured will fly on the ATV 4 mission, dubbed Albert Einstein. It has been delivered to an integration site in Bremen, Germany, for final assembly and testing before shipping to the launch site in French Guiana for liftoff in early 2013. Credit: ESA

Five ATV flights pay off ESA's operating cost burden until 2017. With the space station program extended until the end of the decade, ESA now owes approximately 450 million euros, or about $600 million, to meet its commitments between 2017 and 2020.

Confronted by parts obsolescence and waning political support, the European Space Agency has shut down subsystem production lines for the Automated Transfer Vehicle as member states debate how they will contribute to future international space exploration efforts, according to industry officials.

The huge cargo freighters, weighing more than 20 tons fully loaded, will stop flying in 2014 when the fifth resupply craft delivers equipment to the International Space Station.

ESA member states decided to discontinue the program after briefly considering redesigning the throwaway cargo craft to return hardware in a hardened re-entry capsule.

Three ATVs have launched since 2008, including a spacecraft now docked to the orbiting outpost. Two more spacecraft are due to launch in 2013 and 2014, and assembly of those vehicles has progressed enough to allow officials to shut down vendor production of the ATV's subsystems, according to UK's Bob Chesson, Program Manager of ESA's human spaceflight directorate.

The parts for the two remaining ATVs are mostly delivered to assembly plants in Italy and Germany, where the spacecraft's two main components are integrated.

"If we wanted to reopen production lines, there is a significant obsolescence problem at the equipment [and] component level," Chesson told reporters.

ESA launched the $2 billion development of the Automated Transfer Vehicle to pay the agency's share of the space station's common operating costs.

Instead of exchanging money, the space station's partners prefer to arrange barter agreements to pay debts for operating costs and launch services. Each ATV mission costs about $600 million.

ESA managers are consulting the agency's member states on the alternatives to pay their share of the station's operating costs. Officials expect representatives of the member states to decide on an option, or barter element, at a ministerial council meeting in November.

One option, tentatively favoured by Germany but dismissed by Italian and French space officials, is to sign an agreement with NASA to supply a service module to the Orion crew capsule, or multipurpose crew vehicle. The service module would be based on the ATV's propulsion section.

Germany is Europe's largest contributor to the space station program, followed by France and Italy.
Engineers in the United States and Europe are studying the scenario. Lockheed Martin Corp., the Orion spacecraft's manufacturer, is currently on contract to build the vehicle's service module.

The ATV service vehicle is built by EADS' Astrium Space Transportation.

Chesson said any derivative of the ATV will require major upgrades and a redesign of the avionics system to ensure modern components are commercially available. Such changes could put upward pressure on the cost of a follow-on to the ATV.

Instrumentation, cables and avionics being built up for the ATV 4 mission. Credit: ESA

The ATV consists of the service module and a pressurized cargo carrier, built in Italy by Thales Alenia Space, to uplift supplies, propellant, water and breathing air to the space station.

The automated spacecraft is now the largest resupply vehicle flying to the space station, following the retirement of the NASA Space Shuttle.

It is capable of transferring tons of rocket fuel into the outpost's Russian segment, reboosting the lab's orbit, and delivering hundreds of bags of food, clothing, experiments and other gear.

Bill Gerstenmaier, NASA's associate administrator for human exploration and operations, said the space station's demand for propellant will decrease in the next few years, curtailing the program's need for a large fuel-carrying freighter like the ATV.

"That's allowed us to essentially fill up the propellant tanks aboard the space station, so at this point, the unique capability of the Automated Transfer Vehicle to carry propellant is not needed," Gerstenmaier said in the March 28 testimony to the House Science Committee.

Commercial flights by U.S. spacecraft are expected to make up the rest of the lost capacity when the ATV program ends.

Acting as the space station program's chief integrator, NASA plans to request the Japan Aerospace Exploration Agency (JAXA) to order more H-2 Transfer Vehicles to cover that country's slice of the lab's operating costs.

JAXA is developing a returnable version of the HTV to fly as soon as late 2017, assuming funding to develop the modified spacecraft clears Japanese government budget-writers.

If approved, the re-entry upgrade, called HTV-R, could enter service before the end of the decade, bringing back to Earth up to 3,500 pounds of cargo on each flight.

"HTV provides a unique capability," Gerstenmaier said. "It can carry external cargo, which is important to us. It also has a large hatch where you can carry full research racks across to the space station."

Gerstenmaier told lawmakers NASA would like to have four HTVs fly after 2015. The last of seven HTVs currently on contract would launch in 2016, so two or three additional missions may be required through 2020.

Monday, February 13, 2012

ESA's Third ATV Edoardo Amaldi: Set for launch to ISS

ATV Edoardo Amaldi being moved to a different building at the Guiana Space Centre. 

ESA's third automated space freighter, Edoardo Amaldi, will carry about two tonnes of dry cargo, 285 kg of water and more than three tonnes of propellants to the International Space Station. 

Credits: ESA/CNES/Arianespace/Optique Video du CSG-J.M. Guillon.

Tuesday, September 20, 2011

Arctic Airships carry Cargo

Airships may soon soar in the cold skies of northern Canada and Alaska, bringing supplies to remote mining communities where planes can't always fly and roads are cost-prohibitive.

British airship manufacturer Hybrid Air Vehicles has announced a major contract with Canada's Discovery Air Innovations to build airships capable of lifting as much as 50 tons, delivering freight at one-quarter the cost of other alternatives.

Though various militaries have expressed interest in airships, this is HAV's first commercial contract. The first ship is expected by 2014.

While the word "airship" may conjure images of prewar zeppelins and Goodyear advertisements, the aircraft are quite useful for carrying cargo to remote locations, because they have greater payload flexibility than airplanes or trucks. They're often cheaper to operate, too.


"If you look at the mining operations in the North, the traditional way of opening a mine is to build a road to it.

That's very expensive and time consuming," said Barry Prentice, a professor of supply chain management at the University of Manitoba. He builds, tests and studies airships.

Prentice estimated the cost of a road to a gold mine in Baker Lake, Nunavut, at $110 million - an amount not easily recovered if the mine shuts down - and said obtaining the permits to build it can take as long as three years.

"The day after your mine is finished, the road has no value whatsoever," he said. "The idea of being able to use an airship to bring the product back out means you could start your operations sooner, and have the flexibility, if mineral prices turn, to cease operations temporarily."

Prentice is working on cold-weather testing of smaller airships, the kind that may be able to carry supplies to existing Arctic communities.

"For a mining operation, you need something that's really muscle-bound," he said. "But if you're taking goods into a remote community, that's actually too big," he said.


It's a renaissance for the airship, though today's craft bear little resemblance to the hydrogen-filled, metal-framed behemoths of the 1920s and '30s.

New ships have rigid envelopes that eliminate the need for a frame, and they are filled with nonflammable helium.

Hybrid aircraft can even be heavier than air, taking off like a conventional airplane and landing softly like a hovercraft.

"They're almost nothing like the ones that have been produced in the past," Prentice said.

Though modern airships are novel, the technology on board is hardly cutting-edge.

"What we are seeing today could've been done any time within the past 25 years," Prentice said. "The technology has been around that long. The problem has been a lack of business confidence."

Wary of the unusual technology, few businesses have wanted to take the risk of building hangars and training pilots. The public sector hasn't stepped up to the plate, either.

"Truck drivers don't build their own roads, and airlines don't build airports," Prentice said.

"This is a role where the public should come in - setting up mooring masts, locating zones for the airships to land in."

According to Prentice, military interest in using airships as unmanned surveillance drones and cargo-lifters has jump-started civilian curiosity. When military users prove airships' utility in difficult environments, he expects commercial demand to increase.

"Once airships are back in the skies again, there's going to be quite a stampede of people saying, ‘Me too,'" he said.

Tuesday, August 23, 2011

Russian Progress space freighter set to undock from ISS

Progress M-11M space freighter will undock from the International Space Station (ISS) on Tuesday to be buried in the Pacific after conducting a nine-day scientific mission, Russia's Mission Control said.

"Russian members of Expedition 28 [on ISS] have finished loading the spacecraft with waste products from the orbital station," the Mission Control said in a statement.

The undocking is scheduled for 01:35 pm Moscow time (09:35 GMT). The spacecraft will remain in orbit for nine days to continue the Radar-Progress experiment, aimed at defining the density, sizes and reflectivity of the ionosphere environment around the spacecraft, which is caused by the operations of its liquid propellant engines.

After completing the scientific program, the spacecraft will be deorbited and burn up in the Earth's atmosphere. Its fragments will fall in a designated remote area of the Pacific Ocean.

The next Progress cargo craft is expected to lift off from the Baikonur Space Center in Kazakhstan on August 24 and dock with the ISS on August 26.

Progress-series freighters have been the backbone of the Russian space cargo fleet for decades. In addition to their main mission as cargo spacecraft, they are used to adjust the ISS's orbit and conduct scientific experiments.

Source: RIA Novosti

Thursday, August 4, 2011

NASA - Russian Cosmonauts to Move Cargo Boom, Deploy Ham Radio Satellite

Expedition 28 Flight Engineers Sergei Volkov and Alexander Samokutyaev conducted an EVA outside the Pirs airlock at 10:30 a.m. EDT Wednesday. A grueling six-hour excursion. Both spacewalkers wore Russian Orlan-MK spacesuits.

Coverage of the spacewalk was broadcast live on NASA Television beginning at 10 a.m. EDT.

Volkov, making his third spacewalk, and Samokutyaev, making his first, both wore spacesuits marked with blue stripes. Volkov’s previous two spacewalks occurred while he was Expedition 17 commander in 2008.

During the spacewalk, Commander Andrey Borisenko and NASA Flight Engineer Ron Garan closed the hatches on the Poisk docking module, which is opposite the Pirs airlock, and sealed the hatches between Zvezda and Poisk.

This gave them access to their Soyuz 26 spacecraft, protected them against the unlikely possibility of a sudden station depressurization and allowed the forward transfer compartment of Zvezda to be used as a backup airlock.

Flight Engineers Mike Fossum of NASA, and Satoshi Furukawa of the Japan Aerospace Exploration Agency, was supporting them in the U.S. segment and had access to their Soyuz 27 spacecraft, which is docked to the Rassvet module.

The duo’s first task wwas to deploy a boxy, 57-pound satellite, called alternately ARISSat-1 and Radioskaf-V, which is the prototype test flight of a proposed series of educational satellites being developed in a partnership with the Radio Amateur Satellite Corp. (AMSAT), the NASA Office of Education ISS National Lab Project, the Amateur Radio on ISS (ARISS) working group and RSC-Energia.

The ARISSat design can carry up to four student experiments and the data from these experiments will be transmitted to the ground via an amateur radio link. This prototype ARISSat-1 carries one student experiment, a pressure sensor built at Kursk University in Russia, to measure atmospheric pressure for the lifetime of the satellite.

Radioskaf-V Nanosatellite
Image above: Radioskaf-V nanosatellite. Credit: NASA
› View hi-res image


In addition to transmitting student experiment data, ARISSat-1 will transmit still-frame video Earth views from four onboard cameras, commemorative greetings in the native languages from students around the world, including messages to commemorate the 50th anniversary of the launch of Russian cosmonaut Yuri Gagarin as the first human in space.

The satellite, which uses off-the-shelf equipment and software provided by AMSAT, also features a Morse code tracking beacon and will function as a space communications utility for use by “ham” radio operators world-wide.


More information on tracking ARISSat-1 decoding its telemetry visit the AMSAT and ARISSat-1 websites:

http://www.arissat1.org/v3/

http://www.amsat.org/amsat-new/

Tuesday, July 12, 2011

NASA Shuttle Atlantis: Inside the Cargo bay

This image of Atlantis' payload bay, focusing on the docking mechanism, was photographed by the STS-135 crew from inside the crew cabin.

The orbiter boom sensor system and a portion of the remote manipulator system's robot arm are visible in the frame, exposed during a busy third day in space for the astronauts.

The photo was made shortly before the shuttle docked with the International Space Station.

Image Credit: NASA

Monday, July 11, 2011

NASA Shuttle Atlantis: A Different Perspective

This is one of a series of images taken by the station crew of space shuttle Atlantis in Earth orbit.

Seen at the rear of the cargo bay is the Raffaello multi-purpose logistics module, packed with supplies and spare parts for the orbiting outpost.

The shuttle 'posed' for photographs and visual surveys and performed a back-flip for the rendezvous pitch maneuver.

A 400 millimeter lens was used to capture this particular series of images.

Image Credit: NASA

Friday, March 25, 2011

World´s largest cargo palne: Antonov 225

French rescue team members unload aid destined for earthquake victims from the world's largest cargo plane, an Antonov 225, at Narita airport near Tokyo
French rescue team members unload aid destined for earthquake victims from the world's largest cargo plane, an Antonov 225, at Narita airport near Tokyo

Sunday, February 21, 2010

NASA Shuttle Endeavour: Coming Home

This view of the port side of space shuttle Endeavour's cargo bay was recorded after separation from the International Space Station on Feb. 19, 2010, as the STS-130 astronauts prepared for a Feb. 21 landing, after spending over a week working in tandem with the Expedition 22 crew members aboard the station.

Other than the docking system hardware, the cargo bay is empty after delivering the Tranquility node and the new cupola to the orbital outpost.

Image Credit: NASA

Thursday, October 15, 2009

NASA Shuttle Atlantis - with MPLM in Cargo Bay

Picture taken by Jose of the ISS crew