Showing posts with label radar. Show all posts
Showing posts with label radar. Show all posts

Sunday, August 17, 2014

Ground penetrating radar and archaeological digs

Ground Penetrating Radar for Archaeological Digs

One of the most fascinating methods that archaeologists can use in order to enhance their ability to discover ancient archaeological sites is to use what is called ground permeating radar to discover what hundreds, if not thousands, of years of inactive build up have actually maintained below the ground. In ancient Egypt, with a sands streaming, building layer upon layer of sediment over ancient websites, ground permeating radar has had the ability to find ancient cities that had actually been covered, along with a series of tunnels
and spaces causing the front paws of the Sphinx. Without this innovation, it would be tough to understand where things were without physically digging everything up. Let's talk about exactly what ground permeating radar is, and how it is helpful for historical digs today.

What Is Archaeology?

The science of archaeology is the focused undertaking to uncover ancient civilizations and the materials that represented each society. This could be pottery, walls, homes, or even aqueducts that were when above ground made use of for communicating water. To find these products, it's needed to dig for a number of years fastidiously, wishing to not disrupt or damage any of the artifacts. By utilizing something called ground penetrating radar, it eliminates the thinking video game of finding the precise area where ancient societies had been living, and also avoiding unnecessary digging or you may consult this website for more information....

What Is Ground Penetrating Radar?

Ground permeating radar is a type of radar that is able to be sent with the soil, and will certainly recuperate as soon as it strikes various products buried in the ground, offering us a visual of what is below. It's unfortunate that this technology did not exist for the last century, as it could have increased our capability to discover old civilizations very quickly. The understanding that we have today is in part the outcome of advanced scientific instrumentation and methods, among which is ground penetrating radar.


The main advantage of using GPR for archaeology is that it can assist speed up the procedure of finding ancient cultures beneath the dirt and sand. By utilizing this routinely, depending upon how intuitive the radar is, it can assist speed up the procedure of discovering historical websites 100 fold by getting rid of areas that do not need to be searched.

One of the most fascinating methods that archaeologists can utilize in order to improve their capability to discover ancient archaeological sites is to utilize what is called ground permeating radar to discover what hundreds, if not thousands, of years of inactive construct up have protected beneath the ground. In ancient Egypt, with a sands flowing, developing layer upon layer of sediment over ancient sites, ground penetrating radar has been able to discover old cities that had been covered, as well as a series of tunnels and spaces leading to the front paws of the Sphinx. Ground penetrating radar is a type of radar that is able to be sent through the soil, and will bounce back when it strikes different items buried in the ground, offering us a visual of exactly what is underneath.

54 Hooker Blvd
Broadbeach,
QLD
4218
Contact us: 0426 508 755

Sunday, March 23, 2014

Scanning Concrete with GPR Technology

Scanning Concrete Using GPR Technology

GPR, or ground penetrating radar, is a technology used by those in the geophysical profession to send radar pulses through the ground to image what is called the subsurface. It utilizes electromagnetic radiation, specifically in the microwave band. These signals are sent down, reflected back up, and processed to provide an image of the subsurface below. This type of technology can be used on various structures, pavement, ice, soil and even rock. It is able to detect even the most subtle changes which may be caused by cracks, voids or other changes in the material beneath the surface. When scanning concrete, GPR technology can also be used. Let's take a look at why this is done.


Scanning Concrete Using GPR

When using this technology for concrete imaging, it is used for a variety of reasons. By using this GPR technology when scanning concrete, it can help detect these types of hazards, thus providing a very necessary public safety measure.





Tunnel Assessment Surveys

Another area in which scanning concrete with GPR technology is very important is investigating the deterioration of tunnels. It is an effective tool which can allow engineers to find hidden construction shafts, look at the condition of the lining of the tunnel, and also find voids that could lead to further problems. The advantage of using ground penetrating radar is because of how quickly this data can be gathered and assessed, making tunnel systems safer for everyone.

As you can see, scanning concrete with GPR technology is a very important part of maintaining public safety. By detecting sinkholes beneath the concrete, and voids that may cause future damage to tunnel systems, you are improving the possibility of addressing these problems, and preventing the potential for injuries and fatalities.

GPR technology can also be used when scanning concrete. When using this technology for concrete imaging, it is used for a variety of reasons. By using this GPR technology when scanning concrete, it can help detect these types of hazards, thus providing a very necessary public safety measure.

54 Hooker Blvd
Broadbeach,
QLD
4218
Contact us: 0426 508 755

Scanning Concrete with GPR Technology

Scanning Concrete Using GPR Technology

GPR, or ground penetrating radar, is a technology used by those in the geophysical profession to send radar pulses through the ground to image what is called the subsurface. It utilizes electromagnetic radiation, specifically in the microwave band. These signals are sent down, reflected back up, and processed to provide an image of the subsurface below. This type of technology can be used on various structures, pavement, ice, soil and even rock. It is able to detect even the most subtle changes which may be caused by cracks, voids or other changes in the material beneath the surface. When scanning concrete, GPR technology can also be used. Let's take a look at why this is done.


Scanning Concrete Using GPR

When using this technology for concrete imaging, it is used for a variety of reasons. By using this GPR technology when scanning concrete, it can help detect these types of hazards, thus providing a very necessary public safety measure.





Tunnel Assessment Surveys

Another area in which scanning concrete with GPR technology is very important is investigating the deterioration of tunnels. It is an effective tool which can allow engineers to find hidden construction shafts, look at the condition of the lining of the tunnel, and also find voids that could lead to further problems. The advantage of using ground penetrating radar is because of how quickly this data can be gathered and assessed, making tunnel systems safer for everyone.

As you can see, scanning concrete with GPR technology is a very important part of maintaining public safety. By detecting sinkholes beneath the concrete, and voids that may cause future damage to tunnel systems, you are improving the possibility of addressing these problems, and preventing the potential for injuries and fatalities.

GPR technology can also be used when scanning concrete. When using this technology for concrete imaging, it is used for a variety of reasons. By using this GPR technology when scanning concrete, it can help detect these types of hazards, thus providing a very necessary public safety measure.

54 Hooker Blvd
Broadbeach,
QLD
4218
Contact us: 0426 508 755

Scanning Concrete with GPR Technology

Scanning Concrete Using GPR Technology

GPR, or ground penetrating radar, is a technology used by those in the geophysical profession to send radar pulses through the ground to image what is called the subsurface. It utilizes electromagnetic radiation, specifically in the microwave band. These signals are sent down, reflected back up, and processed to provide an image of the subsurface below. This type of technology can be used on various structures, pavement, ice, soil and even rock. It is able to detect even the most subtle changes which may be caused by cracks, voids or other changes in the material beneath the surface. When scanning concrete, GPR technology can also be used. Let's take a look at why this is done.


Scanning Concrete Using GPR

When using this technology for concrete imaging, it is used for a variety of reasons. By using this GPR technology when scanning concrete, it can help detect these types of hazards, thus providing a very necessary public safety measure.





Tunnel Assessment Surveys

Another area in which scanning concrete with GPR technology is very important is investigating the deterioration of tunnels. It is an effective tool which can allow engineers to find hidden construction shafts, look at the condition of the lining of the tunnel, and also find voids that could lead to further problems. The advantage of using ground penetrating radar is because of how quickly this data can be gathered and assessed, making tunnel systems safer for everyone.

As you can see, scanning concrete with GPR technology is a very important part of maintaining public safety. By detecting sinkholes beneath the concrete, and voids that may cause future damage to tunnel systems, you are improving the possibility of addressing these problems, and preventing the potential for injuries and fatalities.

GPR technology can also be used when scanning concrete. When using this technology for concrete imaging, it is used for a variety of reasons. By using this GPR technology when scanning concrete, it can help detect these types of hazards, thus providing a very necessary public safety measure.

54 Hooker Blvd
Broadbeach,
QLD
4218
Contact us: 0426 508 755

Scanning Concrete with GPR Technology

Scanning Concrete Using GPR Technology

GPR, or ground penetrating radar, is a technology used by those in the geophysical profession to send radar pulses through the ground to image what is called the subsurface. It utilizes electromagnetic radiation, specifically in the microwave band. These signals are sent down, reflected back up, and processed to provide an image of the subsurface below. This type of technology can be used on various structures, pavement, ice, soil and even rock. It is able to detect even the most subtle changes which may be caused by cracks, voids or other changes in the material beneath the surface. When scanning concrete, GPR technology can also be used. Let's take a look at why this is done.


Scanning Concrete Using GPR

When using this technology for concrete imaging, it is used for a variety of reasons. By using this GPR technology when scanning concrete, it can help detect these types of hazards, thus providing a very necessary public safety measure.





Tunnel Assessment Surveys

Another area in which scanning concrete with GPR technology is very important is investigating the deterioration of tunnels. It is an effective tool which can allow engineers to find hidden construction shafts, look at the condition of the lining of the tunnel, and also find voids that could lead to further problems. The advantage of using ground penetrating radar is because of how quickly this data can be gathered and assessed, making tunnel systems safer for everyone.

As you can see, scanning concrete with GPR technology is a very important part of maintaining public safety. By detecting sinkholes beneath the concrete, and voids that may cause future damage to tunnel systems, you are improving the possibility of addressing these problems, and preventing the potential for injuries and fatalities.

GPR technology can also be used when scanning concrete. When using this technology for concrete imaging, it is used for a variety of reasons. By using this GPR technology when scanning concrete, it can help detect these types of hazards, thus providing a very necessary public safety measure.

54 Hooker Blvd
Broadbeach,
QLD
4218
Contact us: 0426 508 755

Scanning Concrete with GPR Technology

Scanning Concrete Using GPR Technology

GPR, or ground penetrating radar, is a technology used by those in the geophysical profession to send radar pulses through the ground to image what is called the subsurface. It utilizes electromagnetic radiation, specifically in the microwave band. These signals are sent down, reflected back up, and processed to provide an image of the subsurface below. This type of technology can be used on various structures, pavement, ice, soil and even rock. It is able to detect even the most subtle changes which may be caused by cracks, voids or other changes in the material beneath the surface. When scanning concrete, GPR technology can also be used. Let's take a look at why this is done.

Scanning Concrete Using GPR

When using this technology for concrete imaging, it is used for a variety of reasons. By using this GPR technology when scanning concrete, it can help detect these types of hazards, thus providing a very necessary public safety measure.




Tunnel Assessment Surveys

Another area in which scanning concrete with GPR technology is very important is investigating the deterioration of tunnels. It is an effective tool which can allow engineers to find hidden construction shafts, look at the condition of the lining of the tunnel, and also find voids that could lead to further problems. The advantage of using ground penetrating radar is because of how quickly this data can be gathered and assessed, making tunnel systems safer for everyone.

As you can see, scanning concrete with GPR technology is a very important part of maintaining public safety. By detecting sinkholes beneath the concrete, and voids that may cause future damage to tunnel systems, you are improving the possibility of addressing these problems, and preventing the potential for injuries and fatalities.

GPR technology can also be used when scanning concrete. When using this technology for concrete imaging, it is used for a variety of reasons. By using this GPR technology when scanning concrete, it can help detect these types of hazards, thus providing a very necessary public safety measure.

54 Hooker Blvd
Broadbeach,
QLD
4218
Contact us: 0426 508 755

Thursday, March 13, 2014

GPR Equipment

The Uses of Ground Penetrating Radar in the Construction Industry

Ground penetrating radar is a very well established tool because it helps to locate underground and encased objects that could be dangerous or damaging if they were to be uncovered or accidentally destroyed by construction efforts.

GPR is a real-time procedure that can immediately locate such underground items as electrical conduits that are buried in concrete, post tension cables, rebar and other such items that if cut or damaged could prove costly and dangerous.

This is a very useful tool because it provides a non-destructive way to detect elements that are hidden within concrete. It can locate targets that are encased within concrete and pinpoint where they are in a fast and safe manner.

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The current technology allows the user to rapidly evaluate a concrete slab in a user friendly and a cost effective way in order to scan an area and find out what is located within. The GPR equipment can scan larger areas of a concrete project in more than one passing motion and then put the images together to form a 3-D image. This gives a very accurate picture of where items are located, so an exact placement can be made.

This type of accuracy saves time and money because it allows safe drilling, cutting and coring of concrete, so no down time is required and no injuries or loss of life is a threat.

Ground penetrating radar is also a real boon in the mining industry, as rocks and hard surfaces can easily be analyzed as far doing a simple scan can discover faults, fractures and joints, so geologists will know the exact structure of what they are dealing with.

When dealing with minerals, an entire vein of the mineral can be tracked so it is known exactly where it goes. The detection of diamonds, gold, silver, and titanium is enhanced with these methods.

54 Hooker Blvd
Broadbeach,
QLD
4218
Contact us: 0426 508 755

Sunday, February 23, 2014

Ground Penetrating Radar QLD

Understanding Ground Penetrating Radar Applications

When I left university I was rather excited about entering the world with my piece of paper. This degree showed I was trained in a specific field and was smart enough to know what I was talking about. At times, when around non-university graduates, I felt quite smug knowing I had something they didn't. It was only when my boyfriend would come home and talks about his work as a geologist, or rather a geologist's assistant that I felt insanely 'dumb'.

While I knew about Freud and Kinney, he knew about seismology and ground penetrating radars. He would sit at the table and explain these procedures to me in simple words, making me gaze in awe and loathing at his coolness. The ground penetrating radar was so intriguing.

This Ground Penetrating Radar QLD (GPR) is, as the name suggests, a means of penetrating the ground with several radars to determine whether or not an object is buried underneath the stone, ice or other structures. It also identifies any alterations in the material, and any cracks or voids.


But how? A question I found myself asking numerous times. Simple, he would say. The radar pulses image the subsurface and use high levels of electromagnetic frequencies to be sent into the subsurface. When and if the wave hits a buried object, crack or void then it will bounce back. The range of the electromagnetic pulse is measured on a spectrum and is limited by the conductivity of the ground.

He said that if conductivity is high, the penetration depth is low because the electromagnetic energy disappears into the substructure's heat causing a loss of signal. If conductivity is low,(like in ice), then the penetration can be as high as hundreds of feet.

GPR are easy to use, safe and more sophisticated than most methods in geology. I wish I had more access to them in my studies.

While I knew about Freud and Kinney, he knew about seismology and ground penetrating radars. The ground penetrating radar was so intriguing.

The radar pulses image the subsurface and use high levels of electromagnetic frequencies to be sent into the subsurface. The range of the electromagnetic pulse is measured on a spectrum and is limited by the conductivity of the ground.

54 Hooker Blvd
Broadbeach,
QLD
4218
Contact us: 0426 508 755