Tuesday, February 4, 2020

Defense - Replacing US Marine’s CH-53K helos with CH-47F choppers is a poor idea

Replacing US Marine’s CH-53K helos with CH-47F choppers is a poor idea


Researchers work on project to develop cleaner-burning, renewable fuels

FEBRUARY 3, 2020, by University of Central Florida

University of Central Florida researchers Subith Vasu and Samuel Barak performed unique experiments to determine which biofuels produced the least amount of soot, a deadly byproduct of combustion. Credit: Karen Norum, University of Central Florida Office of Research


Biofuels offer potential benefits as renewable fuels with cleaner emissions, but with thousands of types of biofuels to choose from, it makes it hard for the energy sector to focus on just a few for further development.

That's why University of Central Florida researchers are working to narrow the field of potential biofuels as part of a Department of Energy initiative, known as the Co-Optimization of Fuels & Engines.

In some of their latest research, which was published in the Proceedings of the National Academy of Sciences, the researchers determined that ethanol is the best biofuel when it comes to producing the least amount of soot, a deadly byproduct of combustion.

Soot exposure is directly linked to respiratory disease, cancer and heart problems.

There are more than 10,000 potential candidates for biofuels, said Subith Vasu, an associate professor in UCF's Department of Mechanical and Aerospace Engineering, and as a part of this study, his research group was tasked with testing five that the Department of Energy considers some of the most promising.

"There are a lot of efforts within Department of Energy and other agencies to produce more economical, better high-performance biofuels," Vasu said.

The finding bolsters the use of ethanol as a biofuel. Other biofuels Vasu's team tested included methyl acetate, which is found in apples, grapes, bananas and some other fruits, and methyl-furan, which is found naturally in myrtle and Dutch lavender.

Ethanol, which is in most gas sold in the U.S., already has a leg up on other biofuels because of the existing infrastructure in place for its manufacture, its use in current engines, and its low cost. In the U.S., it's often produced from corn.

Samuel Barak, a graduate of UCF's Department of Mechanical and Aerospace Engineering doctoral program and now a rocket-propulsion engineer at Boeing's space program, was the lead student author of the study and the primary experimentalist.

"These biofuels are advantageous because they come from existing feedstock, such as crops, and are carbon neutral," Barak said. "When they are utilized, the carbon is reintroduced into the atmosphere. Fossil fuels on the other hand remove stored underground carbon and put it into our atmosphere when burned."

Barak said that despite advances, such as battery-powered vehicles, there are still a billion cars driving on the planet, and mixing biofuels with gas is a way to get cleaner emissions from this fleet.

"The beauty of this initiative is to determine which drop-in ready biofuel can be added to our fuel streams as soon as possible that can increase performance, reduce carbon emissions, and will have least impact on existing systems," Barak said.

In first-of-its-kind experiments, the researchers determined the amount of soot produced by the biofuels by exposing them to temperatures around 3,000 degrees Fahrenheit in a shock tube, a long cylindrical facility that allows for controlled combustion experiments. They used a laser to measure soot produced during the tests.

They also identified chemical pathways involved in combustion reactions, information that can be used to further research into reducing soot production. Data from their research is already being implemented into national computer models of combustion reactions.

The study began in 2017 and will continue through 2021 as the researchers continue to generate data to improve combustion models. The research is funded by the U.S. Department of Energy's Office of Energy Efficiency and Renewable Energy.

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SPACE - S0 - 20200204 - Harvard Scientist Arrested, Floods, Snow, VPOS

SPACE - S0 - 20200204 - Harvard Scientist Arrested, Floods, Snow, VPOS

Good Morning, 0bservers!

   

    
Solar wind speeds sank further over the course of the last 24 hours, hovering right now around 340 KPS. While the KP Index stayed pretty low most of yesterday, it spiked around midnight UTC thanks to another Phi-Angle shift to KP-3, but it's heading back down again (currently KP-1).  A new Northern coronal hole is developing and incoming from the East. There's also a lot of brightness on the equatorial lim, suggesting a new sunspot headed our way. The lithosphere was oddly quiet yesterday, with only a smattering of blot echo activity.
   
***
   
This video actually goes into the very unscientific realm of politics, only because politics is trying to corrupt the scientific process (as well as our own First Amendment). It discusses REAL Climate Science...
  
  
Enjoy!
  
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Monday, February 3, 2020

Medical Science - How ‘brain hacking’ could help fight Alzheimer’s, depression and more

How ‘brain hacking’ could help fight Alzheimer’s, depression and more


By Susannah Calahan,  New York Post,  January 25, 2020

Promising research suggests microglia -- tiny brain cells that act as "humble trashmen" -- may be manipulated to cure a host of health conditions. Getty Images

Millions suffer from conditions without known causes. Some contend with constant pain, many live with unrelenting mental anguish. None of them know why.
Now a groundbreaking theory of brain illness — presented in a thrilling new book by science journalist Donna Jackson Nakazawa called “The Angel and the Assassin” (Ballantine Books) — offers big answers by pointing to the tiny packages called microglia.
Microglia are long-dismissed free-floating brain cells located all over the brain, making up 10 percent of the cells that populate the inside of our skulls. According to emerging research, these cells appear to play a significant role in a host of conditions including Parkinson’s disease, schizophrenia, traumatic brain injury, anxiety disorders and more.
The book emerged from Nakazawa’s personal experience. In 2001 she first developed an autoimmune disorder called Guillain-Barre, which paralyzed her, keeping her bedridden on and off for the next five years. She also suffered from cognitive issues — suddenly she couldn’t remember the name of the watermelon she was cutting or how to do her child’s first-grade math — that were dismissed as situational depression.
“My brain did not feel like my own,” she wrote.
Once she recovered, she started to examine other cases where cognitive issues, depression and brain fog developed during or after a physical illness. She found that people with everything from multiple sclerosis to bacterial infections were more likely to develop depression, bipolar disorder and memory issues. Could sickness in the body create behavioral changes in the brain?
This question led her to the emerging field of psychoneuroimmunology, where new research on microglia cells has started to revolutionize our understanding of the brain. Microglia, which are relatives of white blood cells and lymph cells in the immune system, were previously viewed as “humble trashmen” of the brain and believed to have only one role: to get rid of dead neurons.
But in 2012 a series of research papers showed that microglia played a far more complex role than ever imagined. They not only “held enormous power to protect, repair and repopulate the brain’s billions of neurons,” writes Nakazawa, but they also can “cripple and destroy, leaving wildfire-like devastation in their wake.”

When microglia are overactivated for one reason or another (potential instigators can be illness, stress, a head injury) they start to target and attack healthy neurons, eating away “at the synapses that give us mental stamina, hope, joy, and clarity of mind.” It’s a runaway problem — sometimes after microglia start, they can’t stop and continue destroying synapses for years after the precipitating event.
While healthy microglia can help us thrive, they can also make us miserable — hence Nakazawa’s nickname for them: “the angel and the assassin.”
Researchers have confirmed that a host of conditions — from autism to Alzheimer’s disease — lead to hyperactive microglia, and they are now finding ways to “calm” these cells.
One method is called “brain hacking” — using transcranial magnetic stimulation to “reboot” the brain and its army of microglia cells. Another, often used in tandem, is neurofeedback, which relies on pleasing sounds and imagery to “retrain” the brain. (Nakazawa interviewed a few patients who’ve undergone such training with positive results, making for a compelling, though purely anecdotal, case.)
When people reduce their calories to near fasting levels (called “fast-mimicking” diets) it seems to also help quiet the immune system and the brain. And then there are other technologies like gamma-ray light flicker therapy which helps train the brain to “heal itself” and is currently heading into clinical trials as a treatment for Alzheimer’s disease.
Nakazawa was sick before any of these therapies were in play, but she did seem to intuit that communication between the brain and body would be key to recovery. “I did do a lot of dietary changes,” she said in an interview, “worked on healing and rebooting my microbiome through diet . . . and now we know that immune cells in our gut talk to microglia in the brain. We didn’t know that then, I just knew I felt better.”
The hope, Nakazawa writes, is that others latch onto this new knowledge about microglia and the ability to retrain the brain to ultimately live with less depression.
These new microglia-harnessing technologies bring “extraordinary promise and hope” to one day even “treat intractable depression in the millions of people for whom medication alone is not enough to relieve their suffering,” she said. “This is a brave new era of hope.”
Susannah Cahalan is the author of “The Great Pretender” (Grand Central), out now.
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Space - NASA looking for help to run its Mars sample missions

NASA looking for help to run its Mars sample missions


By Hannah Sparks, New York Post,  January 27, 2020

ESA/ATG Medialab

NASA wants to know if you have what it takes to lead the first mission to collect Martian samples.
The American space agency is seeking a program director to run the Mars Sample Return (MSR) program, which aims to collect samples of rock, soil and air from Mars and return to Earth for analysis.
Although four rovers have made it to the red planet so far, none have been able to retrieve samples of the alien world. The new project, created in collaboration with the European Space Agency, hopes to carry out their missions over the next decade.
According to NASA’s careers website, the MSR program director will be expected to supervise the planning, design and development of the missions to Mars. The new role will go to a candidate with experience in the spaceflight field, as well as a relevant college degree, and promises an annual salary of up to $188,066. The job is based in Washington, DC, and applicants have until Feb. 5 to submit their résumés.
The ESA says the inaugural mission will entail gathering hard samples to be stored in canisters the size of a pen, and hidden on the Martian surface in “strategic areas.” A follow-up mission will embark on an “interplanetary treasure hunt” to retrieve those samples — then launch them into Mars’ orbit.
The last step involves sending an ESA spacecraft to scoop up the specimen and return them to Earth for analyzing.
“Like the return of moon rocks to Earth, bringing back samples of Mars will be a defining moment in space exploration,” said the ESA in a May 2019 press release. “Bringing samples back to Earth will facilitate studies that are simply not possible in the miniaturized rover laboratories — however sophisticated — and, perhaps more importantly, will enable future discoveries as analytical techniques improve over time.”
NASA and the ESA hope to launch the first MSR mission in July 2020, from Cape Canaveral, Fla., with a touchdown on Mars planned for February 2021. The name of the rover will be announced in March of this year.
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Defense - US military can resume using landmines after Trump cancels Obama-era policy

US military can resume using landmines after Trump cancels Obama-era policy


By Ebony Bowden,  New York Post,  January 31, 2020

An explosion is seen after a landmine is defused in Iraq.Getty Images

United States military forces will once again be able to use landmines on the battlefield after President Trump overturned an Obama administration ban on the controversial deadly devices.
The White House announced the new landmine policy on Friday after the Department of Defense found the restrictions put American soldiers “at a severe disadvantage during a conflict against our adversaries.”
“The President is unwilling to accept this risk to our troops,” the White House said in a statement.
Combat commanders will now be able to “employ advanced, non-persistent landmines specifically designed to reduce unintended harm to civilians and partner forces,” the statement read.
The Obama administration had committed to destroying US stockpiles of landmines not needed for the defense of South Korea.
It sought to move the United States toward eventually becoming a party to the 1997 Ottawa Convention, an international agreement that banned the use, stockpiling, production and transfer of anti-personnel landmines.
An Afghan deminer working for the Danish Demining Group (DDG) holds a mortar bomb in 2019.AFP via Getty Images
But Defense Secretary Mark Esper defended the use of landmines as a means to “shape the battlefield” and protect American forces.
“Landmines are one of many other important tools that our commanders need to have available to them on the battlefield to shape the battlefield and to protect our forces,” Esper said
Esper was asked whether it is immoral to use landmines, which draw widespread criticism for the dangers they can pose to civilians long after their military utility has ended.
He said the new policy was developed during the tenure of his predecessor, James Mattis, who resigned in December 2018. Esper took over in July 2019.
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SPACE - S0 - 20200203 - Sky Spray, Sun Atmosphere Collapse, Climate Bombshell

SPACE - S0 - 20200203 - Sky Spray, Sun Atmosphere Collapse, Climate Bombshell

Good Morning, 0bservers!

   
   
Despite a Phi-Angle shift in solar magnetism (due to connection with the Southern coronal hole), the solar winds continued their downward slope dropping below 400 KPS. Counter-intuitively, the KP Index actually rose, spiking at one point to KP-3 but it's been at KP-2 ever since (last four readings). If you get a chance, go over to SpaceWeatherNews.com and check out the solar movie at 304Ã… to watch the departing bright spot on the lim, as well as some really beautiful dancing filaments. The only earthquake of note was a Mag 5.2 in China (like they don't have enough problems already). Even the blot echo activity was down.
  
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Sunday, February 2, 2020

Medical Science - First drug to treat peanut allergies in children approved in US

First drug to treat peanut allergies in children approved in US

The treatment exposes patients to a highly-refined version of peanut flour over the course of several months.

Prominent Harvard Chemist Arrested For Concealing Ties to China

Jan 29, 2020, by AMY SCHLEUNES

ABOVE: © ISTOCK.COM, DILOCK KLAISATAPORN

The Department of Justice also released the names of two Chinese researchers who allegedly acted against US interests.

Charles Lieber, chair of the department of chemistry and chemical biology at Harvard University, has been arrested and charged with one count of making a false statement to federal authorities, according to a Department of Justice press release published yesterday (January 28).

“Unbeknownst to Harvard University beginning in 2011, Lieber became a ‘Strategic Scientist’ at Wuhan University of Technology (WUT) in China and was a contractual participant in China’s Thousand Talents Plan from in or about 2012 to 2017,” the justice department statement says. 

At the same time, he also received funding from US federal agencies, including the National Institutes of Health (NIH) and Department of Defense, which require researchers to disclose if they receive aid from foreign governments or foreign entities. Lieber did:

 In connection with the Chinese programs, he received $50,000 USD per month, living expenses of up to 1,000,000 Chinese Yuan (approximately $158,000 USD at the time), and more than $1.5 million to establish a research lab at WUT. Neither Harvard nor the federal agencies were aware of the connection or payments until the NIH started to inquire about Lieber’s ties to China.

The charges are “extremely serious,” Jonathan Swain, a spokesman from Harvard University, tells The New York Times.

In addition to Lieber’s arrest, the justice department also released the names of two other researchers, both Chinese nationals, who had been charged on Tuesday in connection with aiding China.

Yanqing Ye was charged with one count each of visa fraud, making false statements, and acting as an agent of a foreign government and conspiracy. The statement alleges that Ye “lied about her ongoing military service at the National University of Defense Technology (NUDT), a top military academy directed by the CCP [Chinese Communist Party].”

Zaosong Zheng was arrested and charged with stealing 21 vials of cells from Beth Israel Deaconess Medical Center in Boston and attempting to smuggle them out of the United States.
The arrests come in the wake of controversy over proposals from the NIH and FBI intended to identify researchers who may have acted against the United States.

“No country poses a greater, more severe or long-term threat to our national security and economic prosperity than China,” FBI special agent Joseph Bonavolonta tells The Times. “China’s communist government’s goal, simply put, is to replace the U.S. as the world superpower, and they are breaking the law to get there.”

There is a growing sense of anxiety among scientists that they will be subject to increasing scrutiny over international funding, the Times reports. “We worry that, slowly but surely, we’re going to have something of a McCarthyish purity testing,” Ross McKinney Jr. of the Association of American Medical Colleges tells the Times. “[Lieber’s] being criminally charged. This is a big deal. He could end up in jail.”

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SPACE - S0 - 20200202 - Sun, Weather, Mars, Cosmos, Spark of Life

SPACE - S0 - 20200202 - Sun, Weather, Mars, Cosmos, Spark of Life

Good Morning, 0bservers!

HAPPY GROUNDHOG DAY!!!


Solar winds dipped a bit yesterday afternoon, then rose into the 460 KPS range, and eased back a bit to a current speed of 425 KPS. The rise and drop in speed was reflected in the KP Index, which stayed at KP-1 most of yesterday, increasing to KP-2 overnight, and is now back at KP-1. The Northern bright spot is approaching the Western lim with a bit of increase in activity, but it's well out of the danger zone. The bright spot in the South continues to decay and dim, so I think we're out of the woods for that one. The Southern coronal hole is approaching the midpoint, so we should see some effect from that by midweek. Looks like Guatemala got spanked with a shallow Mag 5.6, and there was also a deep Mag 5.0 off Indonesia. Otherwise, it was just low blot echo activity, and not really a lot of that, either.

And keep this in mind... 

Punxsutawney Phil Didn't Commit Suicide. 

Just sayin'...
  
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Saturday, February 1, 2020

ThorCon Advanced Nuclear Reactor -- More Than Worth Its Weight In Salt

May 31, 2019, James Concahttps://www.forbes.com/sites/jamesconca/2019/05/31/thorcon-advanced-nuclear-reactor-more-than-worth-its-weight-in-salt/#a8dba8576942


Each ThorCon power plant is based on one or more hulls, each containing two 250 MWe power modules, a 500 MW super-critical turbogenerator, gas insulated switchgear (GIS), a decay heat pond, and auxiliaries. THORCON

It’s been 30 years since America built a really new nuclear power plant, but we haven’t been idle over this time. A slew of new designs have emerged and, thanks to advances in computing capabilities and the understanding that smaller is better, many of these are ready to be built economically.

This is important. Over the last several years, there has been a growing consensus among climate scientists that nuclear energy is critical for mitigating the worst effects of global warming. States are shifting from Renewable Energy Mandates to technology neutral Clean Energy Standards that include nuclear energy.

So it is good that the development of new nuclear technologies is speeding along faster than most people think. Many new nuclear start-up companies have emerged in the United States, China and Canada, especially those designing small modular reactors (SMRs).

Importantly, all are walk-away-safe, which means the reactor just won’t melt down or otherwise cause any of the nightmares people think about when imagining the worse for nuclear power. It just shuts down and cools off.

Canadian Nuclear Laboratories announced SMR technology as a research priority and Canada now has a roadmap for them, and has vowed to build an SMR demonstration plant on their site by 2026.

China is also moving fast on its Linglong One 100 MW SMR with its first use to generate heat for a residential district, replacing coal-fired boilers.

While some SMR designs are based on the traditional light water reactor that uses slightly enriched uranium, others involve molten salt and other fuels such as thorium and thorium+uranium.

One such reactor is ThorCon, a fission reactor with a liquid molten salt fuel containing thorium+uranium. A full-scale 500 MW ThorCon prototype should be able to be built and operating within four years.

Molten salt reactors are not completely new. The United States successfully conducted a Molten Salt Reactor Experiment (MSRE) at Oak Ridge National Laboratory in the 1950s.

Irradiation tests on a mixture of lithium and thorium fluoride salts are under way at the High Flux Reactor at Petten in the Netherlands. Terrestrial Energy is also developing an Integrated Molten Salt Reactor.

But the ThorCon takes a different tack on manufacturing. It would be completely manufactured in 150 to 500 ton blocks in a shipyard, assembled, then towed to the site, producing order of magnitude improvements in productivity, quality control, and build time.


ThorCon’s genesis is in super-large ship production, one of the few industries able to build large complicated technologies, like nuclear reactors, and more than one at a time. DSME


ThorCon’s genesis is in ship production, one of the few industries up to snuff for building large complicated technologies. The Hellespont Fairfax, the largest double hull tanker ever built, is one of eight ships built by ThorCon’s predecessor company. She was built in less than 12 months and cost 89 million dollars in 2002.

ThorCon is designed to bring shipyard quality and productivity to fission power. But ThorCon’s structure is simpler and much more repetitive than a large ship. The fission island employs steel plate, sandwich walls filled with concrete or sand. This results in a strong, air-tight, ductile building, all simple flat plate. A properly implemented panel line will be able to produce these blocks using less than 2 man-hours per ton of steel.

Each ThorCon plant is based on one or more hulls, each containing two 250 MWe power modules, a 500 MW super-critical turbogenerator, gas insulated switchgear (GIS), a decay heat pond, and auxiliaries (see figure above). The fission island is at the forward end of the hull. Aft of the fission island is the Steam Generating Cell (SGC). Aft of the SGC is the turbine hall, which contains the turbogenerator, exciter, condensers, feedheaters, pumps, and condensate treatment.

A single large reactor yard can turn out twenty gigawatts of ThorCon power plants per year, providing clean, reliable, CO2-free electricity at 3¢/kWh - cheaper than coal.
Operation of molten salt reactors are inherently easy. Rather than attempt to build components that last 40 or more years in an extremely harsh environment with little maintenance, ThorCon is designed to have all key parts regularly replaced, with little interruption in power output.

Every four years the entire primary loop is changed out, returned to a centralized recycling facility, decontaminated, disassembled, inspected, and refurbished. Upgrades can be introduced without significantly disrupting power generation


ThorCon is divided into 250 MWe power modules or PMODs. Each module contains two replaceable reactors in sealed Cans. The Cans sit in silos. THORCON

Of course, this reactor, like most SMRs, is walk-away-safe. The public will not embrace anything else. Since ThorCon fuel is a liquid salt, if the reactor overheats for whatever reason, ThorCon will shut itself down, and passively handle the decay heat. No power, no machinery, no operator action is required. This is built into the reactor physics.

The operators, or even any bad actors, can do nothing to prevent safe shutdown and cooling. The spilled fuel merely flows to a drain tank where it is passively cooled. The troublesome fission products, including I-131, Sr-90 and Cs-137, are chemically bound to the salt. They will end up in the drain tank as well.

ThorCon combines a strongly negative temperature coefficient with a massive temperature safety margin between the operating temperature of 700°C and the fuelsalt’s boiling temperature (1430°C).

The plant is also an extremely strong structure. It cannot not be penetrated even by a Boeing jet in a perpendicular impact at 400 knots. The hull, which is a double barrier, is only one of at least three gas tight barriers between the fuel salt and the atmosphere. The Can silo is a gas tight structure; and the Can itself is a gas tight structure. All these must be breached to allow a release.

But even if they were, there is no internal dispersal mechanism. The ThorCon reactor operates at near-ambient pressure, about the same as a backyard garden hose. In the event of a primary loop rupture, there is little pressure energy and no phase change from liquid to gaseous. The spilled fuelsalt merely flows to the drain tank where it is passively cooled and hardens into solid salt.

ThorCon is a thorium converter. The initial fuel charge is largely thorium. During the eight year fuel cycle, a portion of the fertile thorium is converted to fissile U-233 which then becomes part of the fuel. Each ThorCon will require only about 5 kg of 19.7% enriched uranium and 9 kg of thorium per day, on average, to produce 4,000,000,000 kWh of non-intermittent, dispatchable, pollution-free, CO2-free electricity each year.
All the while generating only one cask of waste every four years. It’s easy to forget that a normal coal plant takes 10,000 tons of coal each day, or just under 15,000,000 tons in that same 4-year period.

ThorCon’s net consumption of uranium is less than half that of a traditional reactor, because of its higher thermal efficiency, removal of Xe-135, and U-233 production from thorium.

Since we need to triple nuclear power in the world within 20 years in order to have any hope of mitigating the worst effects of global warming, along with bringing up renewables as fast as possible, this is a nice way to go sailing into that future.


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SPACE - S0 - 20200201 - Under Assault from the Government... and other Top News

SPACE - S0 - 20200201 - Under Assault from the Government... and other Top News

Good Morning, 0bservers!

   
   
Solar wind speeds peaked again yesterday at 550 KPS, dropped down to 440 KPS, and it's currently in the 450-460 KPS range. The KP Index, on the other hand, got out of the KP-4 range (yesterday's high), dropped to KP-2 for two readings and then further to KP-1 for the last seven readings. The Southern coronal hole is turning in toward the center longitude, and a smaller hole near the equator has already passed that point. As did the Southern bright spot, which seems to be decaying further, but there's still a risk of a CME from that for the next couple of days, so stay tuned. 
  
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