Showing posts with label Earthquakes. Show all posts
Showing posts with label Earthquakes. Show all posts

Sunday, April 08, 2018

The source of up to half of the Earth's internal heat is completely unknown – here's how to hunt for it



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pixabay
Jocelyn Monroe, Royal Holloway and Michael Leyton, Royal Holloway
It may not be obvious while lying in the sun on a hot summer’s day, but a considerable amount of heat is also coming from below you – emanating from deep within the Earth. This heat is equivalent to more than three times the total power consumption of the entire world and drives important geological processes, such as the movement of tectonic plates and the flow of magma near the surface of the Earth. But despite this, where exactly up to half of this heat actually comes from is a mystery.
It is thought that a type of neutrinos – particles with extremely low mass – emitted by radioactive processes in the Earth’s interior may provide important clues to solving this mystery. The problem is that they are nearly impossible to catch. But in a new paper, published in the journal Nature Communications, we have set out a way to do just that.
The known sources of heat from the Earth’s interior are radioactive decays, and residual heat from when our planet was first formed. The amount of heating from radioactivity, estimated based on measurements of the composition of rock samples, is highly uncertain – accounting for anywhere from 25-90% of the total heat flow.

Elusive particles

Atoms in radioactive materials have unstable nuclei, meaning they can split up (decay to a stable state) by giving off nuclear radiation – some of which gets converted to heat. This radiation consists of various particles with specific energies – depending on what material emitted them – including neutrinos. When the radioactive elements decay within the Earth’s crust and mantle, they emit “geo-neutrinos”. In fact, each second, the Earth radiates more than a trillion trillion such particles to space. Measuring their energy can tell researchers about what material produced them and therefore the composition of the Earth’s hidden interior.


Earth’s core.

The main known sources of radioactivity within the Earth are unstable types of uranium, thorium and potassium – something we know based on samples of rock up to 200km below the surface. What lurks beneath that depth is uncertain. We know that the geo-neutrinos emitted when uranium decays have more energy than those emitted when potassium splits up. So by measuring the energy of geo-neutrinos, we can know what type of radioactive material they come from. In fact, this is a much easier way to figure out what’s inside the Earth than drilling tens of kilometres down below the surface.
Unfortunately, geo-neutrinos are notoriously difficult to detect. Rather than interacting with ordinary matter such as that inside detectors, they tend to just whizz right through them. That’s why it took a huge underground detector filled with with about 1,000 tonnes of liquid to make the first observation of geo-neutrinos, in 2003. These detectors measure neutrinos by registering their collision with atoms in the liquid.
Since then, only one other experiment has managed to observe geo-neutrinos, using a similar technology. Both measurements imply that approximately half of the Earth’s heat caused by radioactivity (20 terawatts) can be explained by decays of uranium and thorium. The source of the remaining 50% is an open question.
However, measurements so far have been unable to measure the contribution from potassium decays – the neutrinos emitted in this process have too low an energy. So it could be that the rest of the heat comes from potassium decay.

New technology

Our new research suggests we can make a map of the heat flow from inside the Earth by measuring the direction the geo-neutrino comes from, as well as its energy. This sounds simple, but the technological challenge is formidable, requiring new particle detection technology.
We propose using gas-filled “time projection chamber detectors”. Such detectors work by making a 3D picture of a geo-neutrino colliding with the gas inside it – knocking off an electron from a gas atom. The movement of this electron can then be tracked over time to reconstruct one dimension of the process (time). High-resolution imaging technology can then reconstruct the two spatial dimensions of its movement. In the liquid detectors currently used, the particles that get knocked off in collisions travel such a short distance (because they are in a liquid) that the direction is impossible to resolve.


Earth heat flow map. wikipedia, CC BY-SA

Similar detectors, on a smaller scale, are currently used to make precision measurements of neutrino interactions, and to search for dark matter. We calculated that the size of the detector needed to discover the geo-neutrinos from radioactive potassium would be 20 tonnes. To properly map the mantle composition for the first time, it would need to be 10 times more massive. We have built a prototype for such a detector, and are working on scaling up.
Measuring geo-neutrinos in this way could help map the heat flow in the Earth’s interior. This would help us to understand the evolution of the inner core by assessing the concentration of radioactive elements. It could also help unravel the longstanding mystery of what source of heat powers the convection (transfer of heat by movement of fluids) in the outer core that generates the Earth’s geomagnetic field. This field is vital for retaining our atmosphere which protects life on Earth from the sun’s harmful radiation.
The ConversationIt’s strange that we know so little about what’s going on under the ground that we walk on. That makes it exciting to think about how these measurements could finally allow the pioneering exploration of the veiled inner workings of the Earth.
Jocelyn Monroe, Professor of Physics, Royal Holloway and Michael Leyton, Postdoctoral Researcher in Physics, Royal Holloway

This article was originally published on The Conversation.
Read the original article.

Tuesday, September 29, 2015

Earthquakes and the Sun connnection.

Sunrise on the East Coast of Australia (Urunga)
Correction!! Solar Flare was M1.9 not 2.1 as earlier reported.Looks like we entered M-Class solar flare territory this...
Posted by Sun Watch on Sunday, 27 September 2015

I have been following Suspicious Observers weather channel for about five years now.  I have watched on with awe as the story of the sun predicting earthquakes opened up over those years while watching the CME's and when their power is earth facing.

I was pleased to read that these observations etc have now been peer reviewed.  Stay tuned for more.

Studies Suggest Sun Triggers Massive Earthquakes

The sun is triggering the deadliest earthquakes on the planet, including the recent M8.3 earthquake in Chile on September 16, 2015 and deadly tsunami that followed, according to two papers to be published October 5th in New Concepts in Global Tectonics. The papers investigate fluctuations in the magnetic field activity of the sun and found a statistically significant relationship between M8+ earthquakes and the extremes and reversals in magnetism of solar polar magnetic fields.
“The patterns observed in the solar magnetic fields aren’t the result of applying some obscure mathematical functions. The algorithm is based on things like peaks and troughs in solar cycles or the absolute strength of one of the poles at a particular time. Such simple models are more often predictive than more complex models.” Dr. Christopher Holloman
Read Full Story HERE
Watch daily weather from across the world with Suspicious Observers Youtube Channel

Saturday, August 01, 2015

GOLD COAST EARTHQUAKES

 QUEENSLANDS LARGEST EARTHQUAKE RECORDED SINCE 1918.

EARTHQUAKES and aftershocks continued to shake up the Gold Coast area today in SE Queensland.   Four earthquakes in total were registered just off the coast.



Gold Coast

I am sure the people of the Gold Coast will be or should be a bit shaken and they should be preparing because when the big one comes it will cause mass devastation.


 Today's episode started with an earth tremor that measured 2.8, this was around 11.20am and then the big one hit at 1.30pm and this measured 5.7 on the scale.  Nothing to be sneezed at.

GeoScience Australia have said this earthquake was probably about ten times stronger than the other ones which which happened in the same area just last Thursday.

Gold Coast

This wasn't the end of the excitement as another earthquake measuring 5.1 rocked the place just an hour later and this was closely followed by another hefty aftershock measuring  3.0 at around 4.30pm this afternoon.

I wonder how Aunty Kay and my Son and his partner fared during this incident?  I moved up high about four months ago because I was extremely concerned of these occurrences happening near where we were living on the coast near Coffs Harbour at Urunga.  I saw water hitting Dorrigo Mountain in dreams so I know its coming.  Its just a matter of when.

Read More here at ABC Online

Images @ Eminpee Fotography

Monday, June 22, 2015

A massive Solar Storm creates Aurora Australis

Right on the Solstice ...

Image: SDO spacecraft image of the solar flare. Credit: NASA

A fast, strong Coronal Mass Ejection (CME) which launched from the Sun on Sunday afternoon is expected to hit Earth early Tuesday morning. This may cause visible auroras across southern Australia from Tuesday morning to Wednesday night.  In other words our Earth just got hammered and it was so close to an X Class Flare too.   The Ejection was prolonged in its action and in a couple of days to a week there will be a massive earthquake somewhere on the Earth.   The Pacific ring is coming awake again and so the big one could be in that region of New Zealand or perhaps the Solomon Islands or the islands of Hawaii or Vanuatu.   This leaves the east coast of Australia in a vulnerable position if a Tsunami was generated thereafter.  

The last ejection similar to this one
was back in April earlier this year.  On the 25th April the Nepal Earthquake which was also known as the Gorkha Earthquake killed in excess of 8,800 people and approximately 23,000 people were seriously injured.  The quake occurred at 11:56 with a magnitude of 7.8Mw or 8.1Ms and a maximum Mercalli Intensity of IX (Violent).

Its epicenter was east of the district of Lamjung, and its hypocenter was at a depth of approximately 15 km (9.3 mi).  After shocks were prevalent at 15 to 20 minute intervals.  It was like birthing contractions.  Then on the 12th May another gigantic aftershock of 7.3 occurred causing a huge landslide and more people lost their lives.

According to records it would suggest that this was the worst natural disaster to strike Nepal since the 1934 Nepal–Bihar earthquake.


Space weather conditions here: http://bom.is/ips



  
In Australia it is unusual to see Aurora's so close to Sydney and so just an hour south at Kiama there was a spectacular display.   This is also a clear warning to us not to become complacent as we are living inside of an environment that is alive with magnetic energy and radiation.

Things will become very interesting across the planet.  I can say now clearly that we have turned the corner.  We are zeroing back to our source.

 

I had noted also there were many trails in the sky leading up to this G5.   I don't fully understand that technology they are using with that but acknowledge it is going on in our skys above.  

Using an analogy to describe this, I  can say it would be like taking alcohol with medication and getting a serious and perhaps fatal reaction to the combination.

The combination of the elite establishment weather trickery combined with the reactions of the planet could cause this  response to be gigantic.   This could cause another major incident as I said earlier.  Stay safe and stay prepared for worst.  Is is coming.  Ragnarok is upon us all and no one gets out alive.

 IMG 8655 Chem Trails and Stars

Images @ Eminpee Fotography