Saturday, December 2, 2017

Just about the time I'm losing faith in humanity's ability to be efficient, logical and smart, I find out about something like this, and am reassured.

Voyager 1, NASA’s farthest and fastest spacecraft, is the only human-made object in interstellar space, the environment between the stars. The spacecraft, which has been flying for 40 years, relies on small devices called thrusters to orient itself so it can communicate with Earth. These thrusters fire in tiny pulses, or “puffs,” lasting mere milliseconds, to subtly rotate the spacecraft so that its antenna points at our planet. Now, the Voyager team is able to use a set of four backup thrusters, dormant since 1980.
“With these thrusters that are still functional after 37 years without use, we will be able to extend the life of the Voyager 1 spacecraft by two to three years,” said Suzanne Dodd, project manager for Voyager at NASA’s Jet Propulsion Laboratory, Pasadena, California.
Since 2014, engineers have noticed that the thrusters Voyager 1 has been using to orient the spacecraft, called “attitude control thrusters,” have been degrading. Over time, the thrusters require more puffs to give off the same amount of energy. At 13 billion miles from Earth, there’s no mechanic shop nearby to get a tune-up.

The Voyager team assembled a group of propulsion experts at NASA’s Jet Propulsion Laboratory, Pasadena, California, to study the problem. Chris Jones, Robert Shotwell, Carl Guernsey and Todd Barber analyzed options and predicted how the spacecraft would respond in different scenarios. They agreed on an unusual solution: Try giving the job of orientation to a set of thrusters that had been asleep for 37 years.
“The Voyager flight team dug up decades-old data and examined the software that was coded in an outdated assembler language, to make sure we could safely test the thrusters,” said Jones, chief engineer at JPL.
In the early days of the mission, Voyager 1 flew by Jupiter, Saturn, and important moons of each. To accurately fly by and point the spacecraft’s instruments at a smorgasbord of targets, engineers used “trajectory correction maneuver,” or TCM, thrusters that are identical in size and functionality to the attitude control thrusters, and are located on the back side of the spacecraft. But because Voyager 1’s last planetary encounter was Saturn, the Voyager team hadn’t needed to use the TCM thrusters since November 8, 1980. Back then, the TCM thrusters were used in a more continuous firing mode; they had never been used in the brief bursts necessary to orient the spacecraft.
All of Voyager’s thrusters were developed by Aerojet Rocketdyne. The same kind of thruster, called the MR-103, flew on other NASA spacecraft as well, such as Cassini and Dawn.
On Tuesday, Nov. 28, 2017, Voyager engineers fired up the four TCM thrusters for the first time in 37 years and tested their ability to orient the spacecraft using 10-millisecond pulses. The team waited eagerly as the test results traveled through space, taking 19 hours and 35 minutes to reach an antenna in Goldstone, California, that is part of NASA’s Deep Space Network.  That's still pretty fast to cover 13 billion miles!
Lo and behold, on Wednesday, Nov. 29, they learned the TCM thrusters worked perfectly — and just as well as the attitude control thrusters.

Oops. Time for a new truck.


Winston Churchill in tropical uniform with pith helmet, spurs and sword before a backdrop of the pyramids, Egypt, c.1898.

Looks like a kid.


Flyby


Looks like a B-24 on the ground, but what type of planes are those in the air?

Fun Stuff






Nature brings the Red Chinese newest aircraft carrier to a standstill.

Masses of the creatures can be sucked through the warship’s water intakes necessary for cooling the vessel’s engines.
Once in the cooling vents, they get mashed into a thick, sticky soup.
This blocks the cooling system, causing the engines to overheat and bringing the warship to a halt.
It then reportedly takes days to clear the pipes.
Thus the urgent need for countermeasures.

The new jellyfish shredder consists of a net, several hundred meters long and wide, which is towed by a tugboat ahead of the carrier.
This funnels whatever falls within towards an array of steel blades.
What comes out the other side is no larger than 3cm wide.
The effect is so brutal researchers report the waters the shredder passes through become murky as the jellyfish — and other marine life — corpses begin to decompose. It takes up to a week to clear.
I wonder why the roundeyes never have this problem with their aircraft carriers?

Freckles, they are good


Swimming Hole of Dreams


A U.S. Air Force LT-6G aircraft flies in the demilitarized zone over South Korea in the fall of 1953.