- Wow!
- Travis, it looks like
- it's coming our way.
- Yeah, it came backwards on us.
Did that just reverse
when we hit the bubble wall?
Wow. Look at that.
Kaleb, look up.
There's some kind of object
over the triangle that's pretty large.
Right over the triangle?
- I got something.
- Yeah, right there.
Here's this object, right there.
That's a UFO.
Looks like it's following the helicopter.
- You see it?
- Yes.
He needs to get
that helicopter on the ground.
And there it is, clearly moving.
- Whoa.
- From south to north.
- What is that?
- And then disappeared.
And it's coming from inside the bubble.
- Yes.
- It is clear
that we're seeing consistency
as far as the type
of UFO that seems to be appearing
- inside the bubble.
- Absolutely.
- Yeah.
- Something strange is
going on at Skinwalker Ranch.
There is a ranch in Northern Utah.
It is considered the epicenter
of the strangest and most
disturbing occurrences on Earth.
For two decades,
the federal government
investigated the property.
Their findings
have never been made public.
Right there. We got something.
Now a new team
of independent scientists
and researchers are taking over.
They are uncovering evidence
that the countless stories...
It came right out of the mesa.
Of unidentified aerial phenomena...
- UAP right there!
- Yep.
Bizarre energies...
It looks like there's
a heat source right above 'em.
And portals that lead
to other dimensions...
We're maybe looking at the anomaly
for the first time, guys.
Might actually be true.
They will stop at nothing to reveal...
The Secret of Skinwalker Ranch.
Look what the cat dragged in.
- How we doing?
- Good.
Winter's closing in on us
pretty fast, and that means
we'll need to shut things down soon.
The experiments we've done
this year have given us
unbelievable data that suggests
we may have identified where
some of the crazy phenomena
that we encounter on
Skinwalker Ranch is coming from.
A giant bubble-like anomaly
that covers a huge area
of the ranch, including both the triangle
and the mesa drill site.
Just a few days ago,
we were investigating
the bubble with both
the helicopter in the air,
and Jim Royston's drone
closer to the ground.
- There it goes.
- And out of nowhere,
a cylindrical UAP seemed
to push the drone around.
It will not let me get to that spot.
Just did it again.
Look at that.
And then, a UAP appeared
to be chasing
Cameron Fugal's helicopter
near the top of the bubble boundary.
You guys land over here on this side.
So, today, for one of our
last experiments of the year,
teams from Red Devil Pyro
and a high-speed photography
company called FLUG
are here to help us see
if these UAPs might be coming
from the bubble.
Guys, good to see you back.
Good to be back. Again.
This time,
I brought my son James Devoll.
He's the number two at Red Devil Pyro.
Okay, so we also have, going to film
what you guys are doing,
a team from FLUG.
- Yeah.
- So, the idea is,
we want to look at the bubble boundary.
We've seen it affect almost
everything you can imagine,
even objects like rockets,
drones, smoke, but we've also
had it affect GPS,
microwaves, radio frequency.
And the boundary even seems
to act like a force field,
stopping our instruments
from going through it.
- Crazy.
- We have posts set out
to mark the circumference of this bubble.
So, what we'd like to do today is,
you guys set off a fireball
in the bubble boundary
on the west end of the property.
The explosions the Red Devil
team plans to set off
on the western bubble boundary
will send massive amounts
of energy into the bubble,
and they're designed to create
perfectly formed smoke rings
that should rise up
through that boundary
to about 50 feet high.
What we'll be looking for
is any kind of reaction
the rings might have with the boundary,
and if the massive energy blasts
trigger UAPs to appear.
And once those smoke rings are ignited,
we want to capture it
with the camera setup
with what's known
as b*llet-time capability from FLUG.
John, why don't you tell us
about all that?
We will be setting up today 48 cameras
to fire all at the exact same time
and give us a two-second
video playback
from different perspectives
of one frozen moment in time.
That's exciting.
The FLUG team's 48
b*llet-time cameras
will be strategically placed
just outside the bubble boundary,
capturing thousands
of high-speed images,
and giving us
a 120-degree view of the event.
If anything strange happens,
we should be able to catch it.
Well, hey, we're burning daylight,
and we understand it takes you guys
a few hours to get everything
set up, so we need to get to it.
- Okay.
- I've got a lot of setup to get done.
All right, you, too. All right,
we'll see y'all out there.
- Good luck. - All right.
- Let's go blow some stuff up.
While Erik prepared
to monitor the experiment
on our other ranch-wide camera assets,
the rest of us headed out
to the western bubble boundary.
Let me show you what we got
in mind here, fellas.
So, here are the posts
we were talking about,
and, I'm thinking this is a perfect spot
- for the fuel mine.
- Okay.
To produce the smoke rings,
the Red Devil team will ignite
that are going to make huge explosions
right in the bubble boundary.
So, if it's true that making contact
with the bubble causes UAPs to appear,
blasting the hell out of it is
a great way to test our hypothesis.
Do you want to start doing cameras?
- You can start at that side.
- Yeah.
And while FLUG was
setting up their gear
to capture the high-speed images,
there's another component
to this experiment
that Erik and I want to set up
on one of these boundary posts.
Here, here.
We'll tape it to the top of post nine.
When we've broadcast
in past experiments,
the bubble boundary has blocked
their transmission.
And other times,
something on the ranch has
strangely affected the signals
or even cloned them.
So, during the experiment today,
I'll be transmitting a 1.2 gigahertz signal
from a post just inside
the bubble boundary.
Then, I'm going
to step outside the bubble
with my receiver
while Erik checks his receiver
from the command center,
which is inside the bubble.
That way, we can see
if either one of us has trouble
getting the signal,
or if anything alters it while
the explosions are going off.
Hey, Erik, you copy?
Yeah, Travis. Go ahead.
Are you getting anything?
Yup. Got a very strong peak.
Copy that.
- That's good enough?
- There we go. That's good. Yup.
We're good. We're good.
All right, thank you.
Hey, fellas.
So, I'd say,
hopefully, in five minutes,
we'll be ready to do one.
- Okay. - Sounds good.
- All right.
I'm gonna check in with them
and then, I'll get back with you
in just a couple of minutes,
- so, just be ready to go.
- Great. Okay.
How are you guys doing
with the cameras? Are we good?
We're running into some problems.
- These are not firing.
- What happened?
Now is this a typical problem
that you've had before,
or is this something new?
No, there's some new stuff
going on right now.
We have these trigger boxes,
which usually are very, very stable.
We did lose a couple trigger boxes,
and we lost a bunch
of cabling, too. Connectivity.
Things that we've never
had break before.
So you're stuck to 36 cameras, then?
Stuck, yeah.
Well, let's go ahead and do one with 36.
Erik, this is Travis. Do you copy?
Yeah, Travis. Go ahead.
You're not going to believe this.
They can't get 12
of their cameras to work,
but they do have 36
of the 48 functioning fine.
So we're just gonna go
with the 36 cameras we have.
Copy that, Travis.
I suppose I'm not surprised
to see that of the 48 cameras
in the b*llet-time system,
right in that bubble boundary.
All right, let's load the fuel mine.
We've seen so many device
malfunctions in that area.
Hopefully, we'll gain insights
through this experiment
to better understand
the bubble and the periphery.
All right. Are you guys ready over there?
We're ready.
All right, here we go
in five, four, three,
two, one.
That ring's perfect, though.
That's pretty well formed.
Yeah.
Now that was a fireball.
The first detonation looked exactly
like what we'd expect to see.
The smoke ring formed perfectly
and didn't show any
of the unusual behavior
we've seen before
with smoke passing
through the bubble boundary.
So, does that mean
it only affects certain things
at certain times?
Or is the bubble boundary just sleeping?
- Hey, Erik, do you copy?
- Yeah, Travis.
- What's up?
- We've got another detonation
- ready to go.
- Yeah, copy that.
I'm set and ready here.
Copy that.
- All right, you guys ready?
- Ready, yeah.
Detonation in five, four, three,
two, one.
That was hot.
That one didn't make a good ring
at all. Look at that.
Is something blocking it from
making another perfect ring?
That one didn't make a
good ring at all. Look at that.
Was that because of the bubble?
Maybe it just got activated.
Now it's kind of forming.
Why didn't it take shape right away?
Isn't that weird?
This doesn't make any sense.
The first expl*si*n made
a perfect smoke ring
where we previously documented
the bubble boundary.
And just a minute later,
the next one created
a messed-up smoke formation
that didn't start making a circular shape
until it got further up in the air.
And there's absolutely
no wind out here today.
It should have been
exactly the same.
Maybe the first blast
turned the bubble on,
and now that it's awake,
it's starting to affect the smoke rings.
Well, Erik, that one looked kind of weird.
It looked like it was not going
to form until it got further up in altitude.
Yeah, Travis. I confirm that.
And now, that 1.2 gigahertz signal
is getting a lot stronger.
I wasn't expecting this kind of response.
This is really intriguing.
I'm gonna check my spectrum
analyzers outside the bubble.
Look at this. Wow.
Erik, I'm 70 feet away
from the 1.2 gigahertz transmitter,
- and I cannot find it.
- You got to be kidding.
I'm seeing that right now.
This don't make any sense.
Just like we suspected,
my spectrum analyzer,
which is sitting just 70 feet
outside the bubble boundary,
isn't getting the 1.2 gigahertz
signal we're broadcasting.
But Erik, who is inside the bubble
a couple thousand feet away,
is picking it up just fine.
This could be evidence
that the bubble boundary acts
like a force field or wall
that blocks our signals.
I don't know
- what the hell's going on.
- Copy that.
We still have
some more detonations to do.
Let's see if they trigger
something even stranger to happen.
Yeah, copy that.
Now that the bubble
might have been activated,
it was time to set off two more
detonations in quick succession.
Hey, Erik, we've got two mines loaded.
And what we're going
to do is do one detonation,
let the cameras reset, and then
we'll do the next detonation
as soon as everybody's ready.
Copy that, Travis.
In five, four,
three, two,
one.
Look, the smoke ring
right there... it's doing okay,
but it's getting squished on one...
There's something in that area, though...
- Yeah.
- That really struggles.
Yeah. But then once it gets out...
Look, it's getting...
Yeah, because
you know what? That bubble
- would be curving away from us.
- Yeah.
So, where it's at right now, it's completely
out of the bubble.
I think Thomas might have nailed it.
As soon as the misshaped
smoke ring rose above the point
where we've measured
the bubble boundary,
it began to form a ring like it
was supposed to from the start.
We're getting crazy
but intriguing data so far
with this experiment.
So, we wanted to see what setting off
another expl*si*n might reveal.
All right, we ready
for the next detonation?
- Let's do it.
- All right, here we go.
In five,
four, three, two,
one.
Look at that.
That one's not even forming.
Isn't that crazy?
Kevin, you ever seen anything like that?
Well, like I say,
they should all be identical. They-they...
Everything. Same grain size,
the powder, same weight,
same fuel ratios, all of it. It's all identical.
- It seems really odd.
- There's no big winds.
- I mean, it's, like, dead calm.
- Yeah.
Every one of these smoke rings
have been completely different.
It's like each time
we set off a detonation,
the bubble boundary's
effects are getting stronger
and possibly expanding.
Erik, this one did not even form.
We got to get to the bottom
of what the hell's going on with that.
Copy that. Yeah,
so we now got to reload.
Let's go ahead and load the last b*mb.
Okay.
Are we seeing an effect of the bubble
and a disruption of the bubble boundary
as a result of these explosions?
We want to keep an eye
on what's happening
as we conduct these exercises.
Are we ready for the next one, Kevin?
- Yup.
- Yup, we're good.
All right, next detonation.
Everybody ready?
In five, four,
three, two, one.
Dang.
That one doesn't look like it's going to...
No, it doesn't.
I mean, that doesn't add up.
None of these were the same, Kevin.
They are the same.
When they leave the tube, it's not on me.
Wow.
The sun's sinking quick, so,
we ought to call Erik, and
let's just wrap this thing up.
Okay.
It's crazy how the first
smoke ring was perfect,
but every single one after that
became weaker and weaker.
Could this be more evidence
that our activities
caused the bubble to turn on
and then get stronger
with each detonation?
Well, get on in here where you see it.
All right. Wow.
So, which one is this?
This one is the expl*si*n that split up.
- Okay.
- We've seen some really
peculiar results
in our fuel mine experiments,
and my hope is that, as we examine
the b*llet cam technology,
we'll be able to find the cause
of those disrupted smoke rings...
That is just gorgeous.
And hopefully get more insights
into the bubble boundary.
We would love to get a hard drive
that's got the post-processed
and the raw data to this guy right here.
Great. We'll get you the raw today...
- Okay.
- And the processed tomorrow.
- How's that? Yeah? Great.
- Awesome, awesome. Perfect.
- I appreciate that so much.
- Yeah, of course.
We know y'all have,
like, a million parts over there
that you've got to pack up, so, I say
we get to breaking down
and let's call it a day.
- All right. -Let's do it.
- Yeah.
- This is so exciting.
- Thanks, guys. -Wonderful stuff.
- Wonderful stuff.
- Amazing.
- Great night.
- Thank you so much.
- Hey, guys.
- Hey, there.
Do we have any of the data
from those guys yet?
Yeah, let me bring some of that up.
This is just really spectacular.
This shows how it looks if
we stitch the different angles
from those 36 cameras together.
It gives us a really cool,
almost 3-D perspective.
That's so awesome.
- Yeah.
- That is amazing.
Yeah, so, I think it's fair to say
our intent was to study any structure
that we might not expect in the expl*si*n.
All right.
Let's go to the next one.
Now this is from one of the
smoke rings that failed to form.
I want to see if we can figure out why.
I don't know.
You know, tell me if anything's
jumping out at you.
Now, this one looks
completely asymmetric.
Yeah.
I mean, it looks just messed up.
Right.
Golly.
I'm sure this asymmetry
isn't supposed to happen.
- Yeah.
- Right?
That's amazing.
You know, I find the structure
of what we're looking at here...
these fang-like features
in the top... kind of interesting.
Well, that's where the smoke
ring's not forming properly
- or something.
- Yeah.
What did we just see there?
Do you guys see anything?
Yeah, there's something. Look over there
- in the distance.
- In the bottom.
- In the bottom right there.
- Look right there.
Yeah. Can you zoom in on it?
So, we got something here.
- Wow.
- That's interesting.
- Is this you, Jim?
- No.
- Look at that.
- Yeah.
- There's something there.
- It looks
like a spaceship from sci-fi, man.
It looks like a spaceship from sci-fi, man.
But, look. I don't know what that is.
But it's not a bug,
- 'cause it's too far away.
- Right.
These b*llet-time cameras
clearly caught some kind
of object flying through the air
right after we detonated
one of the fuel mines
at the western bubble boundary.
But if it's not a drone,
or some kind of bird or bug,
what the heck is it?
Okay, let's
go frame by frame if...
Yeah, who knows what we'll see.
So, here is the very first instance of this.
It's off on the edge.
Now, I'm just going to frame advance.
Go to the next one.
Looks pretty much the same
in every dad gum one, doesn't it?
It looks
like the shape of that thing
that we saw before.
Yeah. The fact that this one
looks like that cylindrical UAP
that Cameron saw
during our Doppler experiment
is really interesting.
That is interesting.
Thomas is absolutely right
that this UAP looks eerily
similar to the one that appeared
one week ago after
we dropped several metal bottles
from Cameron's helicopter
that seemed to bounce off the bubble.
So, did this experiment prove
that when we hit
the bubble boundary with objects
or explosions,
it can cause UAPs to show up?
If so, where are they coming from?
I think we learned something
about all the UAP activity from that video.
Whatever they are, they tend to show up
when we impact the bubble boundary
- during our experiments.
- Right.
I think this requires much more analysis.
All right, well, I think we need to get back
to the center of the bubble
and energize that space
with smoke and laser light.
Maybe we'll get one more look
at whatever that was
and find out where it's coming from.
- I think you're right.
- Yup.
I'll get the guys back out there.
- Thanks, Thomas.
- Yeah. We've got work to do.
- Hey, guys.
- Hey.
- You guys ready?
- Yeah.
It was gonna take a couple of days
for Red Devil Pyro
to get the supplies they needed
for our next experiment.
So, with the end of the year closing in,
we'll have just enough time
for Jan Francke to come out
to the ranch one more time
and help us collect more data
on what could be buried in the mesa.
So, you guys are going to take
the ground-penetrating radar down
the first vertical borehole
that we drilled this year
and try to image the anomaly
- that we think is down there.
- Right.
Go ahead and spin her.
This year,
we drilled four large-diameter boreholes
to try and reach the 400-foot-long,
possibly metallic object
buried inside the mesa
that Jan has previously detected
with ground-penetrating radar.
But all we managed to find was more bits
of metal fragments in the spoils,
as if we just barely missed
the anomaly every single time.
So, today, we're gonna run
our first ever scan
inside Vertical Borehole 1.
These boreholes are so much wider
than the horizontal holes
we drilled before.
So we can get Jan's
higher-powered device
down into the hole, and, hopefully,
identify exactly where that object is.
We chose that spot
because it's close to where we recovered
the strange Type A
ceramic materials last year
after our drill
may have hit the larger object.
So, the idea here
is to take the surface radar,
and lower it carefully down the hole,
scan out of the side of the hole
in high resolution.
So, this gives us the best chance
of finding exactly
where the borehole's at.
And telling you what direction it is, too.
- Perfect. Okay.
- Yup.
- All right, great. Let's go.
- Okay.
Jan and Thomas will use a rope
to lower the radar device
inside Vertical Borehole 1.
The plan is to scan in multiple directions
through the sides of the borehole wall,
all the way down
to the bottom at 38 feet deep.
This should give us
the clearest picture yet
of what's in the mesa.
So, I think the first side
that we'd want to look
would be on the east side,
'cause that's where
the anomaly should be.
- That's the most obvious, isn't it?
- Yeah.
All right.
We're ready.
Beautiful.
All right, so this is the east side.
And if you can just call out
the five-foot marks,
- that would be great.
- Yup.
We scanned on top of the mesa,
and the face of the mesa
a lot for the last few years.
Ten.
What's really exciting
now is they've been able
to drill one hole
that is four foot in diameter.
This gives us access right
into the heart of the mesa,
'cause that's our best attack
at seeing whatever this target is.
Okay, we're at the bottom.
All right. Coming back up.
Okay, so whatever we do,
we just want to be
as consistent speed as possible.
All right.
- Brilliant.
- And zero.
Brilliant. And then, we're going
- the south side, right?
- Yup.
- We might see Borehole 2.
- Yup.
- Okay.
- Keep that board
- just a little bit more. Okay.
- There you go.
We're going past something.
- Yup, there's something there.
- There's...
Now, let's just take it back up.
- Ready?
- Go.
- What the hell is this?
- What are you seeing?
Just as you started pulling up,
there might be a target there.
- Really?
- Yeah.
That might be the anomaly.
What depth was that?
- About 25 feet.
- Okay.
Now, this real-time data
is not as high-resolution
as the final product,
but the fact that he can
see something indicates
he may have just located
that hard object that stopped
the drill last year.
- How's it going, fellas?
- One sec.
And zero.
All right, good job.
Jan, what have y'all found here?
At about between 20 and 25 feet down,
there is a very obvious target.
- Really?
- Yeah, I know.
Well, it'll be good
to see it in post-processing.
Absolutely. I should have this
for you in a couple days.
All right, great.
Hearing Jan talk about an obvious target
was really exciting.
Hopefully, it's a good indicator
that the processed data
might help us finally pinpoint
this anomaly inside the mesa.
So, this is a lot of really good data. I say.
So, this is a lot of really good data. I say
we get off this hilltop and go tell Erik
- back at the command center.
- Yup.
- Let's do it.
- All right, let's go.
Jason, Dave, Adam.
It's great to have you out.
Good to see you.
The team from Red Devil Pyro
is back to help us
run another smoke ring
experiment in the bubble.
This time, instead
of being at the boundary,
we're doing it at the epicenter
of the bubble at the triangle.
We've got a pretty exciting
experiment planned for the evening.
And because we want to look
for anomalies all the way up
through the 2,000-foot-high
center of the bubble,
we also invited back Adam Scott
and his team from Nu-Salt Lasers.
We've been looking
at the bubble boundary
where we've seen disruptions
to the structure of those rings.
Throughout our investigation,
we've seen some very similar
activity at the triangle
at about 31 feet above ground level
with what we call "the blob,"
and also, higher...
between 750 and 1,000 feet.
This year,
we've obtained all kinds
of new evidence that the blob
we first saw just 31 feet in the air
with a high-speed camera back in 2022
is an invisible anomaly
that pushes physical objects
away from that area.
It even seems to have destroyed
numerous rockets.
But then, even higher above the triangle,
we've repeatedly detected
a strange region
of electromagnetic energy
between 750 and 1,000 feet.
It's right in the heart of the bubble
and may be connected to the source
of all the UAPs we encounter,
as well as whatever pushed
Jim's drone last week.
So tonight, we're going
to hit the inside of the bubble
with a combination
of both smoke and lasers
to see what we might be able to uncover.
We're hoping that blasting that area
with more energy than ever will lead
to more UAP activity than ever.
This is our last chance this year
to figure out what's really going on
in the center of the bubble,
so, hopefully, tonight
we'll get some answers.
Adam, why don't you tell us
what Nu-Salt is bringing to the table?
Tonight, we brought out eight
in the triangle.
And all sh**ting lasers
- straight into space?
- Yeah.
This is a very exciting
follow-up experiment.
And while stimulation is
happening in the triangle,
maybe we'll see a repeat of that
cylinder-shaped object again.
- I say we get to it.
- Well, let's do it.
- Yup.
- We'll see you in a minute.
You'll put all the lasers ten feet apart.
All right, we got a lot of work to do
to get set up for tonight.
Along with detonating
a series of fuel mines
to create massive explosions
and smoke rings,
Nu-Salt Laser will arrange
their eight laser cannons
to sh**t light beams vertically
all the way up through
the center of the bubble.
We'll be watching
for any strange formations
in both the smoke and lasers
that could indicate that they're
being affected by the blob,
as well as the much higher
electromagnetic zone.
And we'll absolutely be looking out
for any UAPs that emerge
in these areas of interest.
- Lasers ready to go?
- Yeah, all the lasers
are ready to go.
As the teams from Red Devil Pyro
and Nu-Salt Lasers set up
their gear at the triangle,
the rest of us are staging
several high-speed cameras
around the area.
We also have Dave Mason back out
to run his stationary
FLIR thermal cameras.
He'll be on the lookout
for any unusual heat anomalies,
which he's captured
numerous times this year,
including UAPs that were
invisible to the naked eye.
- All right.
- Hey, guys.
You guys about got the lasers set up?
Lasers are all good.
- Awesome.
- All right. Jason,
you about ready with the fuel mines?
- Yup, we're all ready.
- All right.
Soon as it gets dark, we'll do
the first test with the expl*sives.
- Sounds good.
- All right.
- Well, let's get to it.
- All right.
All right, guys,
I think we're about ready
to start doing this thing.
Jason, are we loaded up
- and ready to go?
- Yeah. We're ready.
What fuel mines do you have loaded?
We've got three 20-gallons
and one 35-gallon right now
that are ready to go.
Okay, what we'll do first
is detonate one of the smaller ones,
and then we'll do the rest
of the detonations,
and then we'll be done for the evening.
- Okay. Sounds good.
- All right, let's get going.
It's a perfect night for this experiment.
There's no wind at all.
And now that the sun has set, it's time
to fire off the first of these
smoke rings at the triangle,
starting with one of the
smaller, 20-gallon fuel mines.
All right, Erik, are you ready?
Copy that. I've got eyes on the action.
All right. Here we go with the detonation,
first small detonation
in five, four,
three, two, one.
Wow.
That is like a shotgun going off.
Look at it through the beams.
Wow. That was awesome.
There's a smoke ring forming.
It's not really forming good.
That one's having a hard time forming.
Erik,
it started out good, but then it fell apart.
It's as if it hit the blob,
and it stopped the smoke ring
from forming.
Yeah. Copy that.
The smoke ring was oblong and warped
instead of the perfect circle
it was supposed to be.
So, was it the blob that stopped
the smoke ring from forming?
Well, let's move on
to one of the bigger mines.
Okay, good to go.
This one's going to be bright.
In five, four, three,
two, one.
- Wow.
- My god.
Whoa.
That one's gonna make a ring, I think.
- It's still on fire.
- Yeah.
Wow, that's cool.
You know, that ring is not forming,
for that being so big!
- Yeah. It's not forming.
- Travis,
that detonation went off with
a very interesting symmetry.
What'd you see on the ground?
It never formed a ring,
but it was very asymmetric
from our perspective.
Copy that.
The bigger expl*si*n
didn't form a ring at all.
It's almost like the more energy
we put in that space at the triangle,
the more something blocks
those smoke rings from forming.
We're not seeing anything
to explain it at the moment.
So, we need
to keep setting off explosions
to see if the blob
or something else will appear.
- Are we ready?
- Yup.
All right. Erik,
we're about to go
with the next detonation!
Copy that.
Is everybody clear of the triangle?
Good. You're good to go.
All right, bring the lasers on!
Here we go
in five, four...
- Whoa.
- Whoa. What was that?
- Did you see the lasers flash?
- Really?
- What?
- All the lasers, like,
shut off and came back on.
Lasers are out.
- Hold on, hold on.
- We lost power.
Boy. Travis, we just lost
- systems out here.
- Everything's down.
- What?
- Computers just went down.
Hey, we need to stand down, Travis.
What the hell?
Everything at the table just went down.
What? All my computers down, too?
Did you see the lasers flash?
- What?
- All the lasers, like,
- shut off and came back on.
- Really?
- Yeah. - Yeah.
- Yours are all down.
Everything's down.
- My computer's down.
- Yeah, everything went.
It all went...
We're running on a generator.
Just as we were about to set off
more explosions at the triangle,
almost every piece
of equipment there died
at the exact same moment.
Even the laser cannons' power
was cut for a second,
and they're on their own
separate power source.
Hey, Erik, you copy?
Yeah, Travis, loud and clear.
We just had a power outage out here.
And we lost everything
that's not on its own battery.
Do you have power
at the command center?
I have not experienced
a power interruption
here at the command center.
Well, you want me to go see if
we, tripped the breaker?
- Yeah, I think we did.
- All right, let's go look.
Well, Travis,
I've been looking at 1.2,
and I can tell you
that we've got four fairly dominant peaks.
Wow. That's significant.
Now this is really crazy.
Not only did the blackout affect
our devices at the triangle,
but it's also happening at the same time
that Erik is seeing
a sudden spike in activity
at 1.2 gigahertz.
The same frequency
we were broadcasting
at the bubble boundary the other day.
So, is this signal connected
to whatever caused
this blackout to happen?
Breakers are not blown.
We got power to the box.
Everything out there should be working.
- I don't know what's going on.
- So if there's power
out there,
why do we not have power here?
Power's on.
Yeah? Are you guys able
to get everything back up?
Everything's starting back up.
David,
- is your stuff coming back up?
- Yeah.
Okay, is the blob, or something else,
taunting us now? It's, like,
reacting to what we're saying
to each other.
Seriously, what is on this ranch?
Did I hear you say something
- about 1.2?
- Erik said he's getting
four huge 1.2 gigahertz signals.
I'll be really interested
in your FLIR, Dave.
- Absolutely.
- Because, you know,
we were doing an experiment
a few weeks back
by Homestead Three, and we captured
a flash in the thermal.
And right before
it burned out his software
in his computer
and his spectrum analyzers, too.
Yup.
Three weeks ago,
we were running an experiment
between Homesteads Two and Three,
which are both outside the bubble.
That's some kind of 1.2 gigahertz signal.
See that peak right there?
Well, we noticed
a 1.2 gigahertz signal appear
just moments before my computer
and all the instruments
connected to it got totally fried.
What in the crap?
And around that same time,
Erik caught a strange flash on one
of our thermal cameras set up
just outside
of Homestead Three.
Wow. That's wild.
So, could the same thing have happened
again to our instruments at the triangle?
And if so, could this be more evidence
that all these hot spots are connected?
What it tells me is we need
to set off another expl*si*n,
and maybe the thing that explains
all this phenomena will show itself.
All right, well, here's what
we're gonna do next.
Guys, go ahead
and reload the fuel mines.
Let's see if Dave catches anything
on his FLIR during this next detonation.
Does that sound good to everybody?
- Yup.
- Let's get to moving on that.
Lasers on green.
Dave Mason, everything still good?
I'm set up and ready to go.
All right.
Whenever you guys are ready.
Okay, lasers is up,
everything's in position.
We're gonna go with the fuel mine in
five, four,
three, two, one.
Look how bright it makes things.
Definitely seeing a little bit more
of a ring on this one,
but it's still not really forming.
Kaleb, I can confirm.
There it is.
- See it?
- Yeah.
There's something strange in the FLIR.
There's spots in the mesa.
- Yeah. What is that?
- Yup. Right across
the middle, heating it up.
Why would we have
rocks heating up like that?
Why would we have rocks
heating up like that?
And it's specific rocks, and it's confirmed
on two-two separate cameras here.
- That's weird, right?
- Yeah, I mean,
you can see everything else
is nominal around the mesa.
Why is that heating up
under these conditions?
I mean, it's cold out.
There were chains of spots of heat
on the mesa, almost as if
boulders were heating up.
And this was very unusual,
because it was very cold, and
the temperature was dropping.
I do not understand the physics of that.
Hey, Erik. It's Kaleb. You copy?
Yeah, Kaleb, go ahead.
Hey, we're just watching Dave Mason's
differential FLIR,
and they keep seeing stuff.
Are you seeing anything on your end
with your Meta-Frame, by chance?
Copy that. Kaleb, just stand by, and
I'll, dive in on that
and see if I'm picking anything up.
This is not the first time
we've seen something like this.
Putting all of that energy into the space
where we've seen what we call the blob,
we get effects
somewhere else on the property.
This time we're seeing that
happen on the face of the mesa.
So is this evidence that
whatever is above the triangle
is connected to whatever
is buried in the mesa?
If I see anything, I'll let you know.
Yup, copy you, Erik.
This is something very strange.
Hey, Erik,
We're about ready to do
this last detonation.
You got everything in place?
That's affirmative. Let's do it.
Okay, all assets are set.
We're going in five, four,
three, two, one.
Dude.
Trying to form.
Yeah, it's not really forming.
It's just a big old blob
of smoke at this point.
Guys,
that detonation appeared
to create a couple of rings.
And it appeared that we almost had
that figure eight that we saw before.
Wow. That's
really interesting.
Just like we saw the other day
at the bubble boundary,
the more detonations we set off here
at the center of the bubble,
the more these smoke rings
are getting warped.
This one got twisted into a figure eight,
which shouldn't even be possible
since the explosions are designed
to only create single rings.
If it is the blob doing this,
I just hope our processed,
high-speed camera data
will give us an even better look
at what it actually is.
About two minutes after the expl*si*n
goes off, this gets crazy.
Are you guys getting
some more stuff over there?
Yeah.
This remained h*... warmer.
It didn't change.
- Heat-heat up again.
- Exact same pattern.
- Yeah.
- Why would it be retaining heat?
It's very crazy, what we've been seeing
while we do these experiments.
That is strange.
Hey, Erik. You copy?
Yeah, go ahead.
They're out of fuel mines,
so we're gonna shut down
here if you want to come out
and let's wrap this thing up.
Sounds like a plan, Travis.
- Whoo!
- Hey, guys.
Hey, Erik.
Yeah, well, it was a typical night
where I've got my head on a swivel.
I'm looking at too many
monitors, but, wow, boy,
- there was a lot to look at.
- Yeah.
Once again, I think we're leaving
with more questions than answers.
- Yeah.
- Well, everything
comes back to this central region
of what we call the bubble.
There's something
going on here, you know.
And putting energy into the space here
in this triangle area
seems to generate effects
not just here, but out on that mesa.
- Yup.
- Yeah.
Man, we really went out with a bang
in our investigation this year.
We've still got tons of data to go through.
- Yeah.
- No kidding.
So, I say,
let's pack up and call it
an evening. What do you think?
- I'm ready for it.
- Great. Solid plan.
Let's do it. Great work, everybody.
A lot of our work this
year is focused on this bubble,
trying to sort out what could be clues
as to the origins,
and perhaps the purpose
for the existence
of a dome-like structure over the ranch.
The bubble is suspicious
as it is mysterious.
I'm not really confident
that I understand what I'm dealing with.
But perhaps it holds the answers
to what is happening
on Skinwalker Ranch.
We've uncovered
more evidence than ever
that suggests the blob, the bubble
and the mesa are all related
to the crazy phenomena out here.
And something... or maybe someone...
doesn't want us to find out
the truth about them.
So now, the next thing we're gonna to do
is crunch tonight's data,
and then share everything
we found this year
with experts in the UAP field,
and others who hold important
roles in our government.
And hopefully, we'll crack
this mystery wide open.
Dr. Puthoff, did you have any
suspicion that
there was something in the mesa?
What was reported to us were
different shapes going
- into the mesa, coming out.
- Wow.
On top of the mesa,
I noticed something interesting.
- My gosh.
- Are you kidding me?
Congressman Burchett, we've seen.
UFOs caught on camera.
I've been briefed
on something very similar.
I'll be following up with the Pentagon.
We just need to get to the bottom of it.
How about that?
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07x13 - Heating Up
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Series that follows a team investigating Skinwalker Ranch, located in Uintah County, Utah, United States.
Series that follows a team investigating Skinwalker Ranch, located in Uintah County, Utah, United States.