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Monday, August 31, 2015

ISRO Successfully launches GSLV-D5 carrying GSAT-6 Satellite

ISRO has successfully launched its Geo-Synchronous Satellite Launch Vehicle (GSLV) D6 which carried the India's latest communication satellite GSAT-6.  The countdown for the launch began at 11:52 hrs IST  on wednesday 26th August, 2015.  The launch took place at 16:52 hrs IST on thursday 27th August, 2015 from Satish Dhawan Space Center, Sriharikota in Andhra Pradesh.  This is the second success of indigenously made Cryogenic stage after the 5th January, 2014 launch of GSLV=D5.

The success of GSLV-D6 is one of the significant milestones in the history of India's GSLV
programme.  The earlier GSLV-D5 success had propelled India into an elite group of nations boasting of the home grown complex crogenic engine and stage after two failures in 2010.  ISRO is the sixth space agency in the world after USA, Russia, Japan, China and France to have joined the indigenous cryogenic regime, which is very crucial for launch of heavier satellites weighing more than 2 tonnes.

Mission Director Mr R.Uma maheswaran described the success of GSLV-D6 as the "Onam Gift".  Prime Minister of India, Narendra Modi congratulated the ISRO team terming the launch as a phenomenal accomplishment.  Here is a video of the GSLV-D6 Launch from Sriharikota.

Saturday, August 8, 2015

NASA's SLS program is Right on Track for journey to MARS

Here is a news about the NASA's Space Launch System program collected from NASA website.

NASA's Space Launch System Program has completed its review - This is a step forward for the program which helps to launch astronauts on missions to an asteroid placed in lunar orbit and then eventually to MARS.  The in-depth review provides a final look at the design and development of the integrated rocket before full-scale fabrication begins.  13 teams including representatives from several NASA field centers worked for 11 weeks and reviewed more than 1000 files of data as part of comprehensive assessment process.

The SLS will be the most powerful rocket ever built for a new era of exploration to destinations beyond Earth's orbits.  The rocket will launch astronauts in the Agency's Orion spacecraft on missions to an asteroid placed in lunar orbit and eventually to MARS.

“Now that we’ve completed our review, we will brief NASA leadership, along with the independent review team, about the results and readiness to proceed to the next phase. After that step is complete, we’ll move on to design certification,” said Todd May, SLS program manager at NASA’s Marshall Space Flight Center in Huntsville, Alabama. “Critical design review represents a major commitment by the agency to human exploration, and through these reviews, we ensure the SLS design is on track to being a safe, sustainable and evolvable launch vehicle that will meet the agency’s goals and missions.
“It’s an exciting time for NASA and our nation,” May continued, “as we prepare to go to places in deep space that we’ve never been before.”
The critical design review is for the first of three configurations planned for SLS, referred to as SLS Block 1. It will stand 322 feet tall, provide 8.4 million pounds of thrust at liftoff, weigh 5.5 million pounds and carry 70 metric tons or 154,000 pounds of payload, equivalent to approximately 77 one-ton pickup trucks’ worth of cargo. Its first mission — Exploration Mission-1 — will launch an uncrewed Orion spacecraft to demonstrate the integrated system performance of the SLS rocket and Orion spacecraft before a crewed flight.
Block 1 requires many critical parts to get it off the ground and safely into space, including twin solid rocket boosters, powerful engines, flight computers, avionics and the core stage. The core stage, towering more than 200 feet tall with a diameter of 27.6 feet, will carry cryogenic liquid hydrogen and liquid oxygen that will feed the vehicle’s four RS-25 engines.
The team turned in its work to a Standing Review Board composed of seasoned experts from NASA and industry who are independent of the program. The board will review and assess the program’s readiness and confirm it remains on target to meet the established schedule and cost goals.
“Much of the benefit of this review is what we do to prepare for it because that’s where we really bring things out,” said Jim Reuter, head of the Standing Review Board. “And you can tell it in the spirit of the people here. They are excited about what they’re doing. They can see that this is the review that’s going to make it real.”
SLS Program managers will present the results from the critical design review board and Standing Review Board to Marshall’s Center Management Council. After receiving the council’s concurrence, the results then will be briefed to the Human Exploration and Operations Mission Directorate at NASA Headquarters.
Element-level critical design reviews for the SLS core stage, boosters and engines have been completed successfully. The integrated spacecraft and payloads are nearing completion on their critical design review.
The Engineering Directorate at Marshall, where the SLS program is managed, provided the majority of the initial phase CDR documents, including drawings and data.
“A thorough review requires a wide range of engineering skills and experts to assess everything from avionics and software that fly the vehicle to ground transportation and integrated systems testing designs and plans,” said Preston Jones, deputy director of Marshall’s Engineering Directorate. “We have gone through every design interface and rechecked analysis to ensure we are meeting all SLS mission performance and crew safety requirements.”
The Orion Program at Johnson Space Center in Houston and the Ground Systems Development Office at Kennedy Space Center in Florida also will undergo similar reviews this year. After those reviews are done, NASA will set a date for Exploration Mission-1.
“We’ve nailed our review schedules,” said Garry Lyles, chief engineer for the SLS Program Office at the Marshall Center. “The team is performing at a really high level. And I’m unbelievably positive in the structural robustness of this vehicle; it has tremendous performance. We’ve picked the right vehicle for the journey to Mars.”

ISRO to launch 9 nano and micro Satellites of USA

This is the news published in NDTV website about ISRO to launch USA satellites for the first time.  I am just reproducing the news posted in NDTV website here.

ISRO will be launching 9 nano/micro satellites for the United States during the year 2015-16. ANTRIX corporation which is the commercial arm of ISRO has signed an agreement to launch about nine nano / micro satellite of USA during the year 2015-16.  These satellites will go as piggy back on PSLV.

Till now 45 satellites belonging to various International Customers from 19 countries have been launched successfully by ISRO launch vehicles.   ISRO is also planning to demonstrate its first Reusable Launch Vehicle ( RLV ) technology by the end of 2015.




Signs of an ancient lake found on MARS

Researchers from New York discovered evidence of an ancient lake on the Red Planet MARS which most likely represents some of the potentially habitable surface water ever to exist on the Red Planet.

The researchers from University of Colorado examined a chloride salt deposit of 18 square mile size in the Planet's Meridiani region which is very near to Mars Opportunity Rover's landing site.  Large scale salt deposits are considered as the evidence of evaporated water.    Digital terrain mapping and minerological analysis of the area surrounding the salt deposit indicate that this lake is no older than 3.6 billion years old.  The planetary scientists believe that our Solar System was formed 4.5 billion years ago.

Based on the thickness of the salt, the researchers estimate that the lake was only 8% s salty as the oceans on Earth and so it might have been hospitable to microbial life.