EpitomeGS is a Ground Penetrating Radar Survey company in India. Our Services are GPR, SUE, Underground Utility, Underground Scanning & Mapping survey in India.
Ground Penetrating Radar operates by transmitting high-frequency radio waves pulses down into the ground through an antenna. Ground Penetrating Radar is distinctly able at not only mapping buried structures but also relatively measuring their depth, and supplying an all-important thorough detail.
Ground Penetrating Radar operates by transmitting high-frequency radio waves pulses down into the ground through an antenna. Ground Penetrating Radar is distinctly able at not only mapping buried structures but also relatively measuring their depth, and supplying an all-important thorough detail.
This document summarizes a seminar presentation on ground penetrating radar systems. It discusses how GPR works by emitting radar pulses that reflect off underground objects and interfaces between materials, allowing buried objects and soil layers to be detected. The key components of a GPR system are described, including transmitting and receiving antennas that control resolution, and a control unit, display, and power supplies. Factors like soil type and antenna frequency determine maximum penetration depth. GPR provides accurate, non-destructive imaging of the subsurface and has applications in archaeology, geology, utility detection, and more.
Ground Penetrating Radar Scanning an Overview of Technology.pdfTec
Ground Penetrating Radar (GPR) scanning uses electromagnetic waves to image subsurface structures by transmitting waves into the ground and analyzing their reflections. It can map buried archaeological structures, geological formations, contaminants, and utilities. GPR equipment consists of a control unit and transmitting and receiving antennas, and it has applications in archaeology, geology, environmental studies, and engineering. While GPR provides non-destructive, high-resolution subsurface images, it has limitations such as limited penetration depth and interference from conductive materials.
Ground Penetrating Radar Scanning An Introduction to the Technology and its A...Tec
Ground Penetrating Radar Scanning (GPR) is a non-destructive testing method that uses electromagnetic waves to produce images of subsurface structures. It works by emitting signals into the ground and measuring the reflected signals to create images showing buried objects, layers, and materials. GPR has a wide range of applications including archaeology, geology, engineering, and construction. It offers benefits like being non-destructive, fast, efficient, and safe while providing high resolution images, though it also has limitations such as limited depth penetration and reduced accuracy and resolution at greater depths.
Ground penetrating radar (GPR) scanning has revolutionized subsurface exploration by utilizing electromagnetic waves to image underground structures and objects. GPR systems consist of a control unit, antenna, and data processing unit. The antenna transmits and receives signals that reflect off underground materials, allowing detailed subsurface images to be constructed. GPR has many applications, including archaeology, infrastructure assessment, environmental studies, forensics, and utility detection. Advancements aim to improve resolution, depth penetration, integration with other technologies, and autonomous data collection. GPR scanning has transformed fields ranging from archaeology to engineering by providing a non-destructive method to explore what lies beneath the earth's surface.
Ground Penetrating Radar Scanning Unveiling the Hidden DepthsTec
Ground penetrating radar (GPR) is a non-destructive geophysical method that uses electromagnetic waves to image the subsurface. It works by emitting waves into the ground and analyzing the signals reflected back to determine subsurface characteristics. GPR has a wide range of applications including archaeology, construction, environmental studies, and more. Advancements are improving resolution and integrating GPR with technologies like GPS to better map and interpret subsurface structures and compositions.
Ground Penetrating Radar Scanning Revealing the Hidden DepthsTec
Ground penetrating radar (GPR) utilizes electromagnetic waves to create images of underground structures and materials. It works by emitting pulses into the ground and recording reflected signals, which are processed to generate detailed subsurface images. GPR systems consist of a control unit to configure scanning, an antenna to transmit and receive waves, and a storage device for data. It has applications in construction, archaeology, environmental studies, utility detection, and forensics due to providing non-destructive, high resolution images of what lies below the surface in a rapid, cost-effective, and safe manner.
Ground Penetrating Radar operates by transmitting high-frequency radio waves pulses down into the ground through an antenna. Ground Penetrating Radar is distinctly able at not only mapping buried structures but also relatively measuring their depth, and supplying an all-important thorough detail.
Ground Penetrating Radar operates by transmitting high-frequency radio waves pulses down into the ground through an antenna. Ground Penetrating Radar is distinctly able at not only mapping buried structures but also relatively measuring their depth, and supplying an all-important thorough detail.
This document summarizes a seminar presentation on ground penetrating radar systems. It discusses how GPR works by emitting radar pulses that reflect off underground objects and interfaces between materials, allowing buried objects and soil layers to be detected. The key components of a GPR system are described, including transmitting and receiving antennas that control resolution, and a control unit, display, and power supplies. Factors like soil type and antenna frequency determine maximum penetration depth. GPR provides accurate, non-destructive imaging of the subsurface and has applications in archaeology, geology, utility detection, and more.
Ground Penetrating Radar Scanning an Overview of Technology.pdfTec
Ground Penetrating Radar (GPR) scanning uses electromagnetic waves to image subsurface structures by transmitting waves into the ground and analyzing their reflections. It can map buried archaeological structures, geological formations, contaminants, and utilities. GPR equipment consists of a control unit and transmitting and receiving antennas, and it has applications in archaeology, geology, environmental studies, and engineering. While GPR provides non-destructive, high-resolution subsurface images, it has limitations such as limited penetration depth and interference from conductive materials.
Ground Penetrating Radar Scanning An Introduction to the Technology and its A...Tec
Ground Penetrating Radar Scanning (GPR) is a non-destructive testing method that uses electromagnetic waves to produce images of subsurface structures. It works by emitting signals into the ground and measuring the reflected signals to create images showing buried objects, layers, and materials. GPR has a wide range of applications including archaeology, geology, engineering, and construction. It offers benefits like being non-destructive, fast, efficient, and safe while providing high resolution images, though it also has limitations such as limited depth penetration and reduced accuracy and resolution at greater depths.
Ground penetrating radar (GPR) scanning has revolutionized subsurface exploration by utilizing electromagnetic waves to image underground structures and objects. GPR systems consist of a control unit, antenna, and data processing unit. The antenna transmits and receives signals that reflect off underground materials, allowing detailed subsurface images to be constructed. GPR has many applications, including archaeology, infrastructure assessment, environmental studies, forensics, and utility detection. Advancements aim to improve resolution, depth penetration, integration with other technologies, and autonomous data collection. GPR scanning has transformed fields ranging from archaeology to engineering by providing a non-destructive method to explore what lies beneath the earth's surface.
Ground Penetrating Radar Scanning Unveiling the Hidden DepthsTec
Ground penetrating radar (GPR) is a non-destructive geophysical method that uses electromagnetic waves to image the subsurface. It works by emitting waves into the ground and analyzing the signals reflected back to determine subsurface characteristics. GPR has a wide range of applications including archaeology, construction, environmental studies, and more. Advancements are improving resolution and integrating GPR with technologies like GPS to better map and interpret subsurface structures and compositions.
Ground Penetrating Radar Scanning Revealing the Hidden DepthsTec
Ground penetrating radar (GPR) utilizes electromagnetic waves to create images of underground structures and materials. It works by emitting pulses into the ground and recording reflected signals, which are processed to generate detailed subsurface images. GPR systems consist of a control unit to configure scanning, an antenna to transmit and receive waves, and a storage device for data. It has applications in construction, archaeology, environmental studies, utility detection, and forensics due to providing non-destructive, high resolution images of what lies below the surface in a rapid, cost-effective, and safe manner.
Ground Penetrating Radar, also known as GPR, is a tool that is used to find Underground Utilities, Underground Storage Tanks (USTs), and in some cases, Graves. The depth and accuracy are dependent on a number of variables, such as soil density, moisture content, and antenna frequency. We use a 350 MHz antenna, which has the potential to reach depths of up to 35 ft (in perfect situations).
Ground Penetrating Radar (GPR) scanning is a cutting-edge technology that has revolutionized subsurface exploration by using electromagnetic waves to visualize and analyze the subsurface without invasive excavation. GPR works by transmitting high-frequency electromagnetic waves into the ground and detecting the reflected signals to create a visual representation, or radargram. Different materials have varying dielectric properties that affect how electromagnetic waves are reflected, enabling GPR to detect objects and features below the surface. GPR scanning provides non-destructive subsurface information and has applications in construction, archaeology, geology, utilities mapping, and more.
Ground Penetrating Radar Scanning Unveiling The Secrets Beneath Our FeetTec
Ground Penetrating Radar (GPR) scanning uses electromagnetic waves to generate images of underground structures and features. It has various applications, including locating utilities, aiding archaeology and heritage preservation, assessing infrastructure integrity, and assisting law enforcement. Advancements have improved capabilities, such as multi-frequency antennas for tailored scanning, real-time data processing, and integration with GIS systems. However, interpretation requires expertise and environmental factors can impact results.
Ground Penetrating Radar Scanning Unveiling The Secrets Below the SurfaceTec
Ground Penetrating Radar (GPR) is a geophysical technique that uses radar pulses to image the subsurface. It has various applications including archaeology, construction, and utilities detection. GPR works by emitting electromagnetic waves into the ground and measuring reflections to create images of underground structures with different frequencies used for varying depths and resolution. It has advantages like being non-destructive and providing accurate, high resolution scans in a timely manner. Potential limitations include signal attenuation and depth penetration that depends on the material and conditions scanned.
This document discusses the use of ground penetrating radar (GPR) for road inspection and the simulation of GPR in MATLAB. It provides background on GPR technology and its various applications such as utility locating, bridge inspection, and archaeology. The proposed work is to use an electromagnetic sensor and GPR to inspect roads in order to evaluate pavement thickness and layer integrity. This will help with road maintenance and rehabilitation planning. Literature on GPR road surveys from different parts of the world is reviewed. The document concludes that GPR technology is suitable for road inspection applications.
GPR systems work by sending a tiny pulse of energy into a material via an antenna. An integrated computer records the strength and time required for the return of any reflected signals. Subsurface variations will create reflections that are picked up by the system and stored on digital media. These reflections are produced by a variety of material such as geological structure differences and man-made objects like pipes and wire.
Cavities detection with ground penetrating radar in limestone dominated rock ...Firman Syaifuddin
As one of geophysical method ground penetrating radar uses electromagnetic wave propagation to detecting the anomaly object, the strong relationship between the physical properties of geological material and their electromagnetic properties enable to identification of physical structures in the sub surface. Cavities in limestone dominated rock formation sometimes made problem when construction build above in this area, as prevention to the damage affected by cavities, before construction starting to build we have to identified the possible cave location to preparing special treatment to minimize the risk. Present of cavities give electromagnetic anomaly event and the reflection signal representing changing of electrical properties when we use ground penetrating radar. We applied attributes extraction adopted from seismic method to extracting information about cavities. We use sweetness attribute extraction to identified present of cavities in limestone dominated rock formation
A ground penetrating radar is a device that detects electromagnetic contrasts in soil. It has a transmitting antenna and a receiver, allowing it to send and detect electromagnetic waves at specific frequencies. Raw data imagery is translated using specialised GPR software to provide an accurate map of subsurface elements.
A solenoid valve is an electromechanical device that controls the flow of a liquid or gas through a pipe or tubing system. It consists of a coil of wire, called a solenoid, which when energized creates a magnetic field that opens or closes a valve mechanism, allowing or stopping the flow of fluid
In the vast realm of surveying techniques, Epitome provide drone aerial photography survey have emerged as a transformative technology, offering a unique perspective from the sky. This article delves into the evolution, applications, and future trends of drone aerial photography survey, unraveling the myriad advantages and challenges associated with this cutting-edge approach. Drone surveys have revolutionized the field of data collection, offering a nimble and efficient alternative to traditional survey methods. These unmanned aerial vehicles, equipped with advanced sensors and cameras, enable the rapid and cost-effective acquisition of high-resolution imagery and geospatial data.
Epitome Geotechnical is a Geo survey Mapping company in India. Our services are Drone Survey and Aerial Photography Survey Services in India.
visit: www.epitomegs.com
Epitome Geotechnical is a GEO survey company in India. Our services are GPR, DPR preparation, Ground water, Bathymetric / Hydrographic, MASW & Seismic Refraction
Ground Penetrating Radar (GPR) operates by transmitting high-frequency radio waves pulses down into the ground through an antenna. Ground Penetrating Radar is distinctly able at not only mapping buried structures but also relatively measuring their depth, and supplying an all-important thorough detail.
The antenna is moved over the surface to be inspected. The transmitter redirects a diverging beam of energy which is reflected in various underground objects or different contacts between different earth materials.
Basket Strainer, Size 25 NB to 1000 NB, Cast and Fabricated Carbon Steel, Stainless Steel, Alloy Steel. Supplied to India, Middle East, Singapore and Malaysia.
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Solenoid Valve | Basket Strainer supplier in India - BlissflowsystemsNeerajMudgil1
Engineered Valves are essentially a group of Solenoid Valves which have been designed in the terms of performance, power consumption or protection to suit the most demanding application in the process Industries.
more info: https://blissflowsystems.com/product/engineered-solenoid-valve/
Electrical Resistivity Imaging | Tomography Company in IndiaNeerajMudgil1
EpitomeGS is Electrical Resistivity Imaging and Electrical Resistivity Tomography Company in India. Find the best tomography survey company in India.
more info: https://epitomegs.com/our-services/electrical-resistivity-imaging/
Ground Penetrating Radar, also known as GPR, is a tool that is used to find Underground Utilities, Underground Storage Tanks (USTs), and in some cases, Graves. The depth and accuracy are dependent on a number of variables, such as soil density, moisture content, and antenna frequency. We use a 350 MHz antenna, which has the potential to reach depths of up to 35 ft (in perfect situations).
Ground Penetrating Radar (GPR) scanning is a cutting-edge technology that has revolutionized subsurface exploration by using electromagnetic waves to visualize and analyze the subsurface without invasive excavation. GPR works by transmitting high-frequency electromagnetic waves into the ground and detecting the reflected signals to create a visual representation, or radargram. Different materials have varying dielectric properties that affect how electromagnetic waves are reflected, enabling GPR to detect objects and features below the surface. GPR scanning provides non-destructive subsurface information and has applications in construction, archaeology, geology, utilities mapping, and more.
Ground Penetrating Radar Scanning Unveiling The Secrets Beneath Our FeetTec
Ground Penetrating Radar (GPR) scanning uses electromagnetic waves to generate images of underground structures and features. It has various applications, including locating utilities, aiding archaeology and heritage preservation, assessing infrastructure integrity, and assisting law enforcement. Advancements have improved capabilities, such as multi-frequency antennas for tailored scanning, real-time data processing, and integration with GIS systems. However, interpretation requires expertise and environmental factors can impact results.
Ground Penetrating Radar Scanning Unveiling The Secrets Below the SurfaceTec
Ground Penetrating Radar (GPR) is a geophysical technique that uses radar pulses to image the subsurface. It has various applications including archaeology, construction, and utilities detection. GPR works by emitting electromagnetic waves into the ground and measuring reflections to create images of underground structures with different frequencies used for varying depths and resolution. It has advantages like being non-destructive and providing accurate, high resolution scans in a timely manner. Potential limitations include signal attenuation and depth penetration that depends on the material and conditions scanned.
This document discusses the use of ground penetrating radar (GPR) for road inspection and the simulation of GPR in MATLAB. It provides background on GPR technology and its various applications such as utility locating, bridge inspection, and archaeology. The proposed work is to use an electromagnetic sensor and GPR to inspect roads in order to evaluate pavement thickness and layer integrity. This will help with road maintenance and rehabilitation planning. Literature on GPR road surveys from different parts of the world is reviewed. The document concludes that GPR technology is suitable for road inspection applications.
GPR systems work by sending a tiny pulse of energy into a material via an antenna. An integrated computer records the strength and time required for the return of any reflected signals. Subsurface variations will create reflections that are picked up by the system and stored on digital media. These reflections are produced by a variety of material such as geological structure differences and man-made objects like pipes and wire.
Cavities detection with ground penetrating radar in limestone dominated rock ...Firman Syaifuddin
As one of geophysical method ground penetrating radar uses electromagnetic wave propagation to detecting the anomaly object, the strong relationship between the physical properties of geological material and their electromagnetic properties enable to identification of physical structures in the sub surface. Cavities in limestone dominated rock formation sometimes made problem when construction build above in this area, as prevention to the damage affected by cavities, before construction starting to build we have to identified the possible cave location to preparing special treatment to minimize the risk. Present of cavities give electromagnetic anomaly event and the reflection signal representing changing of electrical properties when we use ground penetrating radar. We applied attributes extraction adopted from seismic method to extracting information about cavities. We use sweetness attribute extraction to identified present of cavities in limestone dominated rock formation
A ground penetrating radar is a device that detects electromagnetic contrasts in soil. It has a transmitting antenna and a receiver, allowing it to send and detect electromagnetic waves at specific frequencies. Raw data imagery is translated using specialised GPR software to provide an accurate map of subsurface elements.
A solenoid valve is an electromechanical device that controls the flow of a liquid or gas through a pipe or tubing system. It consists of a coil of wire, called a solenoid, which when energized creates a magnetic field that opens or closes a valve mechanism, allowing or stopping the flow of fluid
In the vast realm of surveying techniques, Epitome provide drone aerial photography survey have emerged as a transformative technology, offering a unique perspective from the sky. This article delves into the evolution, applications, and future trends of drone aerial photography survey, unraveling the myriad advantages and challenges associated with this cutting-edge approach. Drone surveys have revolutionized the field of data collection, offering a nimble and efficient alternative to traditional survey methods. These unmanned aerial vehicles, equipped with advanced sensors and cameras, enable the rapid and cost-effective acquisition of high-resolution imagery and geospatial data.
Epitome Geotechnical is a Geo survey Mapping company in India. Our services are Drone Survey and Aerial Photography Survey Services in India.
visit: www.epitomegs.com
Epitome Geotechnical is a GEO survey company in India. Our services are GPR, DPR preparation, Ground water, Bathymetric / Hydrographic, MASW & Seismic Refraction
Ground Penetrating Radar (GPR) operates by transmitting high-frequency radio waves pulses down into the ground through an antenna. Ground Penetrating Radar is distinctly able at not only mapping buried structures but also relatively measuring their depth, and supplying an all-important thorough detail.
The antenna is moved over the surface to be inspected. The transmitter redirects a diverging beam of energy which is reflected in various underground objects or different contacts between different earth materials.
Basket Strainer, Size 25 NB to 1000 NB, Cast and Fabricated Carbon Steel, Stainless Steel, Alloy Steel. Supplied to India, Middle East, Singapore and Malaysia.
visit: https://blissflowsystems.com/product/basket-strainer/
Solenoid Valve | Basket Strainer supplier in India - BlissflowsystemsNeerajMudgil1
Engineered Valves are essentially a group of Solenoid Valves which have been designed in the terms of performance, power consumption or protection to suit the most demanding application in the process Industries.
more info: https://blissflowsystems.com/product/engineered-solenoid-valve/
Electrical Resistivity Imaging | Tomography Company in IndiaNeerajMudgil1
EpitomeGS is Electrical Resistivity Imaging and Electrical Resistivity Tomography Company in India. Find the best tomography survey company in India.
more info: https://epitomegs.com/our-services/electrical-resistivity-imaging/
Hydrographic Survey over or Bathymetric Survey is the overview of physical attributes present underwater. It is the investigation of estimating all elements underneath the water that influence all the marine exercises like digging, marine developments, Offshore drilling and so forth. Hydrographic surveys are used to determine shoreline and underwater characteristics.
more info: Hydrographic Survey over or Bathymetric Survey is the overview of physical attributes present underwater. It is the investigation of estimating all elements underneath the water that influence all the marine exercises like digging, marine developments, Offshore drilling and so forth. Hydrographic surveys are used to determine shoreline and underwater characteristics.
Bliss flow systems are Supplier & Distributor of Safety Relief Valve, Rupture Pin Valve, Choke Valve, Rupture Disc, Flame Arrester, Solenoid Valve, Oil Water Analyser in India
CNC Programing - Cam Support - Excellon DNC - FastechnologiesNeerajMudgil1
FASTechnologies.com offering CNC Programming, CAM Support, Annual Maintenance Plan, Excellon DNC, CNC6 DNC, System2000 DNC, NC Rout & Drill, PCB DNC, CNC6 Keyboard & Monitor.
At FASTechnologies, drill room efficiency is our business. Our products eliminate scrap before it happens. Now you can monitor and increase your drill room performance, detecting problems before time is lost and money wasted.
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Excellon DNC | Cam support | CNC Programming - FastechnologiesNeerajMudgil1
FASTechnologies.com offering CNC Programming, CAM Support, Annual Maintenance Plan, Excellon DNC, CNC6 DNC, System2000 DNC, NC Rout & Drill, PCB DNC, CNC6 Keyboard & Monitor.
At FASTechnologies, drill room efficiency is our business. Our products eliminate scrap before it happens. Now you can monitor and increase your drill room performance, detecting problems before time is lost and money wasted.
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Hydrographic survey | DPR Preparation | Land survey - EpitomGsNeerajMudgil1
EpitomeGS.com is a GEO technical survey company in India. We deal in DPR preparation, Hydrographic, bathymetric, land survey, GPR, ERT, SUE, VES, SRT, DGPS, GIS survey providers in India.
more info: https://epitomegs.com/
[To download this presentation, visit:
https://www.oeconsulting.com.sg/training-presentations]
This presentation is a curated compilation of PowerPoint diagrams and templates designed to illustrate 20 different digital transformation frameworks and models. These frameworks are based on recent industry trends and best practices, ensuring that the content remains relevant and up-to-date.
Key highlights include Microsoft's Digital Transformation Framework, which focuses on driving innovation and efficiency, and McKinsey's Ten Guiding Principles, which provide strategic insights for successful digital transformation. Additionally, Forrester's framework emphasizes enhancing customer experiences and modernizing IT infrastructure, while IDC's MaturityScape helps assess and develop organizational digital maturity. MIT's framework explores cutting-edge strategies for achieving digital success.
These materials are perfect for enhancing your business or classroom presentations, offering visual aids to supplement your insights. Please note that while comprehensive, these slides are intended as supplementary resources and may not be complete for standalone instructional purposes.
Frameworks/Models included:
Microsoft’s Digital Transformation Framework
McKinsey’s Ten Guiding Principles of Digital Transformation
Forrester’s Digital Transformation Framework
IDC’s Digital Transformation MaturityScape
MIT’s Digital Transformation Framework
Gartner’s Digital Transformation Framework
Accenture’s Digital Strategy & Enterprise Frameworks
Deloitte’s Digital Industrial Transformation Framework
Capgemini’s Digital Transformation Framework
PwC’s Digital Transformation Framework
Cisco’s Digital Transformation Framework
Cognizant’s Digital Transformation Framework
DXC Technology’s Digital Transformation Framework
The BCG Strategy Palette
McKinsey’s Digital Transformation Framework
Digital Transformation Compass
Four Levels of Digital Maturity
Design Thinking Framework
Business Model Canvas
Customer Journey Map
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GPR Survey
1. Epitome is a GPR Survey Company in India
GPR Survey operates by transmitting high-frequency radio waves pulses down into the ground through an antenna.
Ground Penetrating Radar survey is distinctly able at not only mapping buried structures but also relatively measuring
their depth, and supplying an all-important thorough detail.
The antenna is moved over the surface to be inspected. The transmitter redirects a diverging beam of energy which is
reflected in various underground objects or different contacts between different earth materials.
The radargram measured on the vertical scale is in units of the two-way travel time, that’s the time taken by the EM wave
to travel down to a reflector and back to the surface. The travel time then is transformed into depth by relating it to on-site
measurements or assumptions about the velocity of radar waves in the subsurface material under investigation. Radar
wave speeds vary between 60–175 mm/ns for most geological materials.
GPR waves can travel almost 30 meters deep in low conductivity material, as in case of dry sand or granite. Clays, shale,
and other high conductivity materials may lessen or absorb GPR signals, leading to the reduction in depth of penetration to
1 meter or less. The GPR antenna can determine the depth of penetration as well.
The selection of antennae is based according to the depth of interest and the size of the target. Penetration depth varies in
contrast to the frequency. The higher the central frequency of antenna, the smaller will be the object size to be resolved.
Higher antenna frequencies give higher resolution, but less penetration, and vice versa. The lateral and vertical resolution
of the results varies from 0.01 to 1.0 meters, as per the choice of antenna frequency. Use of antennae having lower
frequency in geological mapping is done to obtain the maximum penetration depth while higher frequencies are used in
non-destructive testing for high-resolution imaging. Having a range of frequencies available (usually 50MHz–2.5GHz) makes
GPR most suitable for identifying objects of different sizes at different depths and under different ground conditions. We
are one of best Ground Penetrating Radar survey Services, Best Underground Utilities Survey Services and GPR
Survey Service in India.
GPR is:
A geophysical- approach that is, precise, fast and high-resolution for subsurface investigation.
Non-invasive, non-destructive and completely safe procedure.
One and only possible non-intrusive method capable of accurately locating non-metallic subsurface features and
utilities (example- clay, concrete, fiberglass, PVC conduits or fiber-optic cables).
A geophysical survey technique based on transmitting pulsed electromagnetic (EM) energy into the subsurface
and ascertaining the strength of the reflected energy.
Effective in case enough contrast in material properties (dielectric permittivity) between a buried target and its
surroundings exists.
Applied by Epitome in order to detect and map buried pipes, cables, structural reinforcement, voids, disturbed
ground, material degradation, subsurface layers and buried objects.
Gained by use of transmitting and receiving antennae which can be mounted on a cart, skid plate or vehicle, or
can be hand-held.
A technique that allows skilled and experienced personnel to attain distinct survey data and geophysical
expertise to process and interpret the results.
2. Detect and figure out buried structures including utilities, foundations, reinforcing bars, cavities, tombs, archaeological
artifacts, and animal burrows. Subsurface piping leak detection and leak impact assessment (presence of washouts or
voids). If you are looking for Ground Penetrating Radar Survey Services, Best Underground Utilities Survey Services and
GPR Survey Service in India then you are at the right place.
GPR survey is a non-destructive, surveillance tool for general sub-surface mapping (soil/rock horizons, depth to water table
etc.) and locating buried objects prior to invasive investigation.GPR is useful in the planning and location of follow-up
intrusive sampling programs (trial pits, boreholes, coring).
Mapping asphalt structure and concrete pavement, for better maintenance and rehabilitation decisions
Identifying and locating voids and zones of construction degradation (concrete layer thickness and water content)
Quality Assurance Control of new structures or existing constructions for rehabilitation purposes
Quality Assurance Control of new structures or existing constructions for rehabilitation purposes
Epitome offer these services SUE Survey in India, GPR Survey Service in India, Ground Penetrating Radar Survey,
Underground Utility Survey, Ground Penetrating Radar Survey in India, Underground Utility Survey in India, Ground
Penetrating Radar Survey Company in India, Underground Utility Survey Company in India, SUE Survey Company in India,
Underground Scanning and Mapping.
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