Studying the intensity as well as the deformation characteristics of soil is not a simple task. There is detail in every method associated with this stream of engineering. Furthermore, there are more sub-divisions in professional fields such as rock and soil mechanics, hydrogeology, and geophysics. We, at Sample Assignment, offers genuine and factual Geotechnical Engineering Assignment Helpfor students who get puzzled in their assignment writing and submitting or do not know how to start with their homework assigned by professors.
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According to our Geotechnical Engineering Assignment Experts, Geotechnical Engineering is a branch of geology and civil engineering that deals with the study of the physical, mechanical and hydraulic properties of soils and rocks, and their interaction with the constructions, buildings, and works that are founded on them. Its applications include the stabilization of land, the control of water tables and the design of foundations for buildings and other civil works such as tunnels, bridges, and dams.
Previously, geotechnical engineering-focused strictly on the mechanics of soils and rocks, but its evolution in recent years has led it to develop other areas of work and research, such as seismic engineering, the production of geotechnical materials, the improvement of the characteristics of the soil, soil-structure interaction, among others.
A geotechnical study is a set of activities before the development of a building project or civil works, which aim to obtain geological and geotechnical information from the land, based on its nature and properties, to determine the types of foundations more adequate and foresee the necessary works for its protection against unexpected geological or environmental events.
Geotechnical structures are all those infrastructures capable of transmitting external loads to the ground (foundations or foundations), or stabilizing, retaining, or supporting masses of earth and rocks (walls, slopes, gabions, boxes, etc.). The foundations are the bases that support a building and must be calculated and designed taking into consideration the composition and resistance of the land as well as the buildings loads.
A geotechnical engineer is a specialist of principles of mechanics and hydraulics that affect soils, his services are required in the construction world, as well as in the mining and oil sector.
Civil engineers who specialize in geotechnical engineering are professionals with technical and scientific training in the area of geological sciences, geotechnics, hydrogeology, mining and petroleum geology, and natural resource management and the environment. They are also trained to perform in the valuation of the mechanics of soils and rocks, for the design and programming of civil engineering works, exploration and execution of mineral exploitations, hydrocarbon deposits, and water resources, and even, for the development of environmental impact studies and prevention of natural disasters.
The geotechnics moves through many different fields, such as geology and engineering geology, soil mechanics and rocks, the strength of materials, hydraulics, topography, hydrology, geomorphology, geo-mechanics, foundations, the average environmental engineering, and the management of natural risks. In the construction field, geotechnics is important for the calculation and design of foundations, slopes, retaining walls and other essential infrastructure works to support, or protect buildings and other civil works. Hence, the applications of Geotechnical Engineering examples are:
Lots of structures that were built eras ago are monuments of curiosity, even today. In Egypt, temples built three or four thousand years ago still exist, although the design of their foundations is not based on any principle known today. The Romans built remarkable engineering structures such as ports, dikes, aqueducts, bridges, large public buildings, and a vast network of durable and excellent highways. The leaning tower of Pisa in Italy that was built during the 14th century is still a center of tourist attraction. Many bridges were built between the 15th and 17th centuries. The wooden piles were used for many of the foundations.
Another marvel of engineering achievements is the construction of the famous Taj Mahal mausoleum on the outskirts of the city of Agra. This was built in the 17th century by the Mughal Emperor of Delhi, Shahjahan, to commemorate his favorite wife Mumtaz Mahal. The tomb was built on the bank of the Yamuna River. The proximity of the river required special attention in the construction of the foundations. It has been reported that cylindrical masonry pits were used for the foundations. This gives credit to the engineers who designed and built this great structure that remains in good condition, even after nearly three centuries.
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