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What is Tacheometry?
Soumyadeep Halder
ans- defination Tacheometric is a branch of surveying in which horizontal and vertical distances are determined by taking angular observation with an instrument known as a tachometer. Tacheometric surveying is adopted in rough in rough and difficult terrain where direct levelling and chaining are eiRead more
ans- defination
Tacheometric is a branch of surveying in which horizontal and vertical distances are
determined by taking angular observation with an instrument known as a tachometer.
Tacheometric surveying is adopted in rough in rough and difficult terrain where direct levelling
and chaining are either not possible or very tedious.
Tacheometric survey also can be used for Railways, Roadways, and reservoirs etc.
Tacheometric surveying is very rapid, and a reasonable contour map can be prepared for
investigation works within a short time on the basis of such survey.
An ordinary transits theodolite fitted with a stadia diaphragm is generally used for tacheometric
surveying.
Uses of Tachometry in civil engineering
See lessTachometry is used for preparation of topographic map where both horizontal and vertical
distances are required to be measured; survey work in difficult terrain where direct methods of
measurements are inconvenient; reconnaissance survey for highways and railways etc.;
Establishment of secondary control points.
What is the role and scope of Artificial Intelligence in the field of Civil Engineering?
Soumyadeep Halder
that is a great question. well in a very shot manner you can use that AI in lean construction.as well as you can implement it in BIM world, Some time you can use this AI tools in Management level in construction field for visualization problem. For using robot in construction or civil engineeringRead more
that is a great question.
well in a very shot manner you can use that AI in lean construction.as well as you can implement it in BIM world, Some time you can use this AI tools in Management level in construction field for visualization problem.
For using robot in construction or civil engineering field AI can control that robot.
AI also helps in development of robots and automated systems. role of artificial intelligence is
reported in the case of smart materials. The smart system refers to a device which can sense changes in its
environment and can make an optimal response by changing its material properties, geometry. Both the sensor and the actuator functions with their appropriate feedback must be properly integrated
Structural Engineering – In the field of structural engineering, they are used to evaluate durability. Not only
the smart materials or structures are restricted to sensing but also they adapt to their surrounding environment
such as the ability to move, vibrate and demonstrate various other responses as well as for monitoring the
integrity of bridges, dams, offshore oil-drilling towers where fiber-optic sensors embedded in the structures are
utilized to identify the trouble areas.
Waste management – Manual disassembly of the waste is a challenging, expensive and time consuming task
but the use of smart materials could help to automate the process. Even it shows a role in food waste
management.
Concrete mix design – Concrete mix design is difficult and sensitive. The concrete mix design is based on the
principles of workability of fresh concrete, desired strength and durability of hardened concrete which in turn is
governed by water-cement ratio law. The strength of the concrete is determined by the characteristics of the
mortar, coarse aggregate, and the interface. For the same quality mortar, different types of coarse aggregate with
different shape, texture, mineralogy, and strength may result in different concrete strengths.
Estimation: artificial neural networks (ANNs) are most suited for developing decision aids with analogy-based
problem-solving capabilities in the estimation.
As well as you can use AI in your network system that can be
Planning of Construction Projects
Construction Robot Fleet Management System Prototype:
See lessBridge Planning Using GIS and Expert System Approach:
Earthquake-Induced Liquefaction