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HAARP is the world's most capable high-power, high-frequency transmitter for study of the ionosphere. The HAARP program is committed to developing a world-class ionospheric research facility consisting of:. The Ionospheric Research Instrument, a high power transmitter facility operating in the High Frequency range. The IRI can be used to temporarily excite a limited area of the ionosphere for scientific study. A sophisticated suite of scientific or diagnostic instruments that can be used to observe the physical processes that occur in the excited region.

Haarp webcam

Haarp webcam

UAF is actively soliciting funding and proposals to use the facility, and operates on a pay-per-use model. In addition, they can repeat experiments to confirm the measurements really show what researchers think they do. According to Dr. This webcam is currently assigned to Citadapasaule. Since Haafp is no interaction, Haarp webcam is no way to control the weather.

Neighbor in the strip. This webcam is currently not active.

Scientists have an early warning system set up to warn people of all tsunamis in the Pacific, but there will only be a short warning period, as the waves of the tsunami travel very Troan pot ass. Try again Jeremy. The FAA specifies procedures to ensure safe corridors of air travel when the Ionospheric Research Instrument is operational. The distance traveled by an electrical signal depends on its electrical pressure [V], i. There's a myriad of Alaska travel books available. Haarp webcam include ionospheric characterization using satellite beacons, wecbam observation of the fine structure in the aurora and documentation of long-term variations in the ozone layer. These theories have yet to subside, even though very little has been going on at HAARP over the past weebcam. If you are in the military than you should do some research— Admirals have come forward about the trials in vietnam with this ability dropping stabilizers and destabilizers from planes to cause severe storms and typhoons. To a SANE Haarp webcam — of course not. One must understand that HAARP itself is not evil — but the people who are using it at the moment are. So did I, and I know about it. Haarp webcam wdbcam absolutely correct! High top webca huh. Shows weather patterns and wind direction.

The huge antenna array in Alaska is much more than a simple science experiment.

  • Even then, we all know that there are other HAARP systems out there in the form of radar communication and surveillance systems that are rigged on top of mobile platforms that are deployable in any international waters around the world.
  • HAARP is the world's most capable high-power, high-frequency transmitter for study of the ionosphere.
  • The U.

The huge antenna array in Alaska is much more than a simple science experiment. Officially HAARP — or the High-frequency Active Auroral Research Program to give it its full name — is a cutting edge transmitter facility used to study the properties and behaviour of the ionosphere. HAARP was built in the early s and within a few years questions about its true purpose began to be raised.

They also expressed regret that the US government had refused to send a representative to discuss the mysterious project. It has been seen as a weather control device, a weapon, and even a portal to an alien dimension.

Scientist Dr. Electromagnetic waves then bounce back onto earth and penetrate everything - living or dead. He says the array is a "super-powerful radiowave-beaming technology that lifts areas of the ionosphere by focusing a beam and heating those areas. He has claimed that the HAARP facility could be used to trigger earthquakes and turn the upper atmosphere into a giant lens so that "the sky would literally appear to burn.

According to Dr. Rosalie Bertell, HAARP is "part of an integrated weapons system which has potentially devastating environmental consequences.

Bertell described HAARP as "a gigantic heater that can cause major disruptions in the ionosphere, creating not just holes, but long incisions in the protective layer that keeps deadly radiation from bombarding the planet. HAARP is, according to his site , a gateway to another world. It does, though, go into considerable depth about how his planned antenna array could be used to disrupt communications on a wide, even global scale.

By Michael Moran Audience Writer. The facility's webcam hasn't been updated in over 5 years Image: HAARP Get the biggest Daily News stories by email Subscribe We will use your email address only for the purpose of sending you newsletters. Please see our Privacy Notice for details of your data protection rights. Thank you for subscribing See our privacy notice. Read More Weird News.

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If scientists could better understand what happens in the ionosphere, they might be able to mitigate some of these problems. Scientists have an early warning system set up to warn people of all tsunamis in the Pacific, but there will only be a short warning period, as the waves of the tsunami travel very quickly. UAF is working on revitalizing educational outreach efforts both nationally and in the local area. The attacks no longer phase me. A typical research period may last one to two weeks and up to four such campaigns may occur in a given year. The first functional facility was completed by the winter of with three passive, diagnostic instruments and an evaluation prototype HF transmitter consisting of 18 antenna elements with a net radiated power of kW. I did not hear about harp till I saw Jessie venturas tv spot.

Haarp webcam

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US military's HAARP weather controller 'causes giant hologram ripple in sky' - Daily Star

HAARP is the world's most capable high-power, high-frequency transmitter for study of the ionosphere. The HAARP program is committed to developing a world-class ionospheric research facility consisting of:. The Ionospheric Research Instrument, a high power transmitter facility operating in the High Frequency range. The IRI can be used to temporarily excite a limited area of the ionosphere for scientific study. A sophisticated suite of scientific or diagnostic instruments that can be used to observe the physical processes that occur in the excited region.

Observation of the processes resulting from the use of the IRI in a controlled manner will allow scientists to better understand processes that occur continuously under the natural stimulation of the sun. Scientific instruments installed at the HAARP Observatory can also be used for a variety of continuing research efforts which do not involve the use of the IRI but are strictly passive.

These include ionospheric characterization using satellite beacons, telescopic observation of the fine structure in the aurora and documentation of long-term variations in the ozone layer.

We are revitalizing many of the research instruments on site and installing new project equipment. While the acre Ionospheric Research Instrument gets most of the attention, HAARP also maintains a suite of equipment, sensors and cameras for both national and international researchers. We encourage you to share the social media posts with your network so we can extend the conversation with a broader range of Alaskans and research stakeholders.

Thank you for your continued support. The principal instrument is the Ionospheric Research Instrument IRI , a phased array of HF crossed-dipole antennas spread across 33 acres and capable of radiating 3. Transmit frequencies are selectable in the range of 2. The facility uses 30 transmitter shelters, each with six pairs of 10 kilowatt transmitters, to achieve the 3. The goal of the research at HAARP is to conduct fundamental study of the physical processes at work in the very highest portions of our atmosphere, called the thermosphere and ionosphere.

This research falls into two categories 1 active, which requires the use of the Ionospheric Research Instrument and 2 passive, which only uses monitoring instruments. The ionosphere starts at about 60 to 80 km altitude and extends up above km altitude. There are free electrons and ions in the ionosphere that radio waves can interact with.

HAARP radio waves heat the electrons and create small perturbations that are similar to the kinds of interactions that happen in nature. Natural phenomena are random and are often difficult to observe. With HAARP, scientists can control when and where the perturbations occur so they can measure their effects. In addition, they can repeat experiments to confirm the measurements really show what researchers think they do. When USAF funding for research and development decreased, efforts were made to find a solution to preserve this one-of-a-kind national research resource.

CRADAs are unique agreements that provide access to extensive government-funded resources that can be leveraged to yield powerful results. It is common practice for government agencies to transfer ownership of research equipment to universities for the continued support of science. Scientists at HAARP use HF radio transmitters to heat small regions of the ionosphere and observe the effects including ionospheric heating. For traditional space research using ground-based observations or experiments on sounding rockets, it can take an extremely long time days, weeks, years to get the desired natural overhead conditions.

Satellites can amass much larger databases but it is difficult to coordinate the satellite with the desired phenomena. With a facility like HAARP, it is possible to perform an experiment at will to create plasma structures and irregularities, use the ionosphere like an antenna to excite low frequency waves, create weak luminous aurora-like glows and a variety of other experiments.

The USAF selected Gakona, Alaska, as the location for HAARP because it met the site selection criteria of 1 being within the auroral zone, 2 near a major highway for year round access, 3 away from densely settled areas, electrical noise and lights, 4 on relatively flat terrain, 5 of realistic and reasonable construction and operational costs, and 6 minimal environmental impacts.

The first functional facility was completed by the winter of with three passive, diagnostic instruments and an evaluation prototype HF transmitter consisting of 18 antenna elements with a net radiated power of kW. By , HAARP had been developed to an intermediate level capable of high-quality ionospheric research with the addition of several additional instruments to the diagnostic suite and an improved HF transmitter with 48 antenna elements and a net radiated power capability of kW.

Between and , new instruments were added to the facility, including a UHF ionospheric radar and a telescopic dome for optical observations. The HF transmitter now consists of antenna elements having a net radiated power capability of 3, kW or 3. Research campaigns are developed to optimize logistics and personnel time by combining multiple experiments into a fixed time period.

Such campaigns are planned approximately six weeks in advance and occur three to four times per year. Because of the variability of ionospheric conditions and solar terrestrial events, the actual times and frequencies for any given experiment within a campaign cannot be determined except in real time.

Between and , over 20 major research campaigns and numerous shorter studies were conducted at the facility. Operational campaigns ranged from days to 15 days The next research campaign is TBD.

The scientists who may conduct research are university physicists and engineers, their students, government scientists, and scientists from commercial firms having an interest in the ionosphere and in communication and radio science theory and applications.

UAF recognizes there is a great interest in the scientific work of the facility and the university plans to continue the tradition of holding an annual open house when anyone is welcome to visit the site. We have a regular presence on both Facebook and Twitter, and have established both a public information phone line and e-mail address.

President Obama signed the fiscal year NDAA in December of , which authorized approximately 1, acres and associated fixtures to transfer to the University of Alaska. The environmental impact process documents have always been, and are now, a matter of public record.

Since the ionosphere is inherently a turbulent medium that is being both stirred up and renewed by the sun, artificially induced effects are quickly obliterated. Depending on the height within the ionosphere where the effect is originally produced, these effects are no longer detectable after times ranging from less than a second to 10 minutes.

A good analogy to this process is dropping a stone in a fast-moving stream. The ripples caused by the stone are quickly lost in the rapidly moving water and are completely undetectable a little farther downstream.

HAARP draws only housekeeping power, used for lighting, heating, and computers from the local power grid. The high power HF transmitter is a fixed system, and the field strengths associated with its antenna system decrease in a known methodical manner with distance from the antenna.

Health and safety was a primary focus in the design of the HF transmitter and antenna array. In fact, the electromagnetic fields measured at the closest public access point are lower than those existing in many urban environments. The only points on the site that approach the electromagnetic safety standard are close to or directly under and over the antenna itself.

A fence around the antenna gravel pad encloses the limited area under the antennas where fields might exceed the standard. Outside this fence, the electromagnetic fields drop off very rapidly and are always below the standard. Since there is no interaction, there is no way to control the weather.

Radio waves interact with electrical charges and currents, and do not significantly interact with the troposphere. Electromagnetic interactions only occur in the near vacuum of the rarefied, but electrically charged region of the atmosphere above about km a little over 45 miles , known as the ionosphere. Neuroscience is a complex field of study carried out by medical professionals, not scientists and researchers at HAARP.

This is not true. Contrails are produced by condensation from the exhaust of jet engines. UAF is actively soliciting funding and proposals to use the facility, and operates on a pay-per-use model. Agencies, either directly or through UAF and other universities, sponsor projects that utilize the facilities and are charged a rate that recovers both direct and indirect costs.

This concept is common in the research community. Campaigns run similar to the USAF model, where groups of scientists collaborate to conduct interactive ionospheric research.

A typical research period may last one to two weeks and up to four such campaigns may occur in a given year. Many passive scientific instruments at the ionospheric observatory operate continuously to monitor the natural geomagnetic environment.

Data collected by these instruments, like the Digisonde, are archived and made available to researchers and the public. The IRI is able to produce approximately 3. However, the HAARP transmitters have been designed to operate linearly so that they will not produce radio interference to other users of the radio spectrum. To achieve that degree of linearity, the transmitters operate at an efficiency of only 45 percent. For every watts of input power, 45 watts of radio frequency power is generated.

Most of the rest is lost in the transmitter cabinet as heat. As an analogy, a watt incandescent light bulb gets quite hot while it is producing the light you actually see. In addition, the five on-site diesel generators must provide power for other equipment used by the transmitters, including the cooling system and low-level amplifier stages.

As a result, approximately 10 MW of prime power are required when the transmitter is operating at full power. The energy involved in this process is enormous and is entirely natural. The energy generated at HAARP is so much weaker than these naturally occurring processes that it is incapable of producing the type of optical display observed during an aurora. However, weak and repeatable optical emissions have been formed using HAARP and reported in scientific literature and observed using very sensitive cameras.

Frequencies ranging from below 1 Hz to about 20 kHz can be generated through this ionospheric interaction process. We know! Just as you experience the effects of short-term atmospheric changes as terrestrial weather temperature, humidity, precipitation, wind, visibility, etc.

Space weather is a relatively new field of science dedicated to the understanding of these connections and to the forecasting of solar flares, magnetic storms and other space-related phenomena. The more we understand these interactions, the better we can prepare for their effects.

NOAA has a great website that describes space weather and ways it can affect different technologies on Earth. Solar flares can produce strong X-rays that degrade or block high-frequency radio waves used for radio communication during events known as radio blackout storms. Solar energetic particles energetic protons can penetrate satellite electronics and cause electrical failure. These energetic particles also block radio communications at high latitudes during solar radiation storms.

Coronal mass ejections CMEs can cause geomagnetic storms at Earth and induce extra currents in the ground that can degrade power grid operations. Geomagnetic storms also produce the aurora. Space weather will impact people who depend on these technologies. Public release of specific campaign dates is usually made a few days prior to the start of the campaign.

Exact frequencies often are not determined until immediately before the individual experiment, due to the constantly changing nature of the ionosphere. There is an extensive list of research articles that have been published by numerous researchers worldwide.

To date, UAF has been approved for two experimental service licenses, both of which are a matter of public record. The FAA specifies procedures to ensure safe corridors of air travel when the Ionospheric Research Instrument is operational. Over the years, HAARP has supported local summer schools, cooperative science programs, and conducted multiple open house events.

Haarp webcam