Basically, utility locating involves identifying and labeling public utilities usually located underground. Various public utility systems are run below the ground due the nature of their function or for convenience purposes. It is for this reason that before digging, such public utilities be identified and labelled. At the same time, locating underground utilities Edmonton ensures that safety is observed even during simple acts such as dig a hole.
There lies a possibility of destruction of underground utilities in an excavation site. These damages may be disastrous and costly considering the type of utility line. This is due to the reason that damages can bring about unnecessary delays in the project, disruption of services, repair costs, injuries and potential fines from the relevant authorities. To avoid these unwanted disruptions as well as unexpected expenses in Edmonton AB, it necessary to perform utility location checks ahead of any excavation.
There are different systems that run below the ground. Some of these schemes include fiber optics, traffic lights, waste water pipes, telephone lines, natural gas, electric grids and much more. As a result, the numerous materials conveyed in these systems, diverse detection as well as location methods are applied. Underground utilities may be made using plastic pipes, metal pipes, concrete or cables. Different techniques are applied to do accurate location that can be based on the type of material used in constructing the utility.
Utility locating methods can be classified as conventional or nonconventional methods. One conventional technique is the radiolocation technique. This method uses radio waves to locate a utility and is normally used for metal pipes and cables. Electromagnetic equipment are used and are made of a transmitter and a receiver. Once the utility is detected, signals are generated by the transmitter.
Non-conventional techniques are put in place if the utility material cannot allow the use of conventional technique to detect its location. This technique is commonly used if the utility pipes are made of concrete or plastic materials. An example of nonconventional technique is acoustic location, which uses sound technique in utility location.
Another non-conventional technique used is the ground-penetrating radar. Normally, this method is used together with other techniques. The method utilizes radar pulses in taking a subsurface image. The GPR has transmitters and receivers in addition to profiling recorders. The signals received are then processed and graphic displays of data collected are generated. This method gives three-dimensional image of the underground utility.
Magnetic locators is another nonconventional method that used to trace buried metal objects instead of pipes. They work by showing the relative amount of ferrous metal buried below the ground. In most cases they are used to locate underground storage tanks, buried manhole covers and other large metal contents.
Locating underground utilities is very essential. It provides vital information necessary for upcoming plans like mechanical and electrical capacity enhancements, landscaping, road relocation and many more. Architects and engineers obtain crucial information concerning the systems below th ground that is important for the work that they do.
There lies a possibility of destruction of underground utilities in an excavation site. These damages may be disastrous and costly considering the type of utility line. This is due to the reason that damages can bring about unnecessary delays in the project, disruption of services, repair costs, injuries and potential fines from the relevant authorities. To avoid these unwanted disruptions as well as unexpected expenses in Edmonton AB, it necessary to perform utility location checks ahead of any excavation.
There are different systems that run below the ground. Some of these schemes include fiber optics, traffic lights, waste water pipes, telephone lines, natural gas, electric grids and much more. As a result, the numerous materials conveyed in these systems, diverse detection as well as location methods are applied. Underground utilities may be made using plastic pipes, metal pipes, concrete or cables. Different techniques are applied to do accurate location that can be based on the type of material used in constructing the utility.
Utility locating methods can be classified as conventional or nonconventional methods. One conventional technique is the radiolocation technique. This method uses radio waves to locate a utility and is normally used for metal pipes and cables. Electromagnetic equipment are used and are made of a transmitter and a receiver. Once the utility is detected, signals are generated by the transmitter.
Non-conventional techniques are put in place if the utility material cannot allow the use of conventional technique to detect its location. This technique is commonly used if the utility pipes are made of concrete or plastic materials. An example of nonconventional technique is acoustic location, which uses sound technique in utility location.
Another non-conventional technique used is the ground-penetrating radar. Normally, this method is used together with other techniques. The method utilizes radar pulses in taking a subsurface image. The GPR has transmitters and receivers in addition to profiling recorders. The signals received are then processed and graphic displays of data collected are generated. This method gives three-dimensional image of the underground utility.
Magnetic locators is another nonconventional method that used to trace buried metal objects instead of pipes. They work by showing the relative amount of ferrous metal buried below the ground. In most cases they are used to locate underground storage tanks, buried manhole covers and other large metal contents.
Locating underground utilities is very essential. It provides vital information necessary for upcoming plans like mechanical and electrical capacity enhancements, landscaping, road relocation and many more. Architects and engineers obtain crucial information concerning the systems below th ground that is important for the work that they do.
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