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And it doesn’t stop there: Trimble’s software solutions allow you to work directly with your existing GIS data and schemas, providing efficient workflows for productive data collection in the field.īy offering integrated solutions with leading-edge innovation, Trimble ensures premier productivity and return on investment.
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Trimble is renowned for integrating advanced GNSS technology with rugged field hardware designed to work in all conditions and environments. With leading-edge technology and streamlined workflows, Trimble solutions enhance your productivity by taking all the hassle out of GIS data collection. With the most up-to-date field data, you can be sure you’re making the right decisions when managing your assets and resources. Vol.25, No.1, pp.43-51.Whether you’re managing assets, responding to outages or natural disasters, or conducting routine maintenance, Trimble GIS solutions ensure you have current and accurate data for your GIS or asset management system. (1985), “Determination of noncircular slip surface giving the minimum factor of safety in slope stability analysis.” Soils and Foundations. Fang, Van Nostrand Reinhold Publisher, New York, 1991, 511 – 536Īrai, K., and Tagyo, K. Asmael, “Study simulation of shallow foundation behaviour using different finite element models”, Journal of Advanced Civil Engineering Practice and Research, 8:4-9, 2019.įelenius, B.H.: Foundation Engineering Handbook, Editor H.S. Hussien, and Mourad Karray, “Influence of vertical loads on lateral response of pile foundations in sands and clays”, Journal of Rock Mechanics and Geotechnical Engineering, 2017. Kumar, “Improvement of Bearing Capacity of Shallow Foundation on Geogrid Reinforced Silty Clay and Sand”, Journal of Construction Engineering, 2013. Lee, “Bearing capacity of strip foundation on geogrid-reinforced sand,” Geotechnical and Geological Engineering, vol. Cerato, “Scale effects of shallow foundation bearing capacity on granular material”, University of Massachusetts Amherst, Amherst, Mass, USA, 2005.ī. Tabsh, “Effect of Spread Footing Flexibility on Structural Response”, Practice periodical on Structural Design and Construction, ASCE, May 2005.Īdit Kudtarkar, Jayant Pachpohe, Jayesh Magar, and Pranav Nagargoje, “Study and Analysis of Types of Foundation and Design Construction”, International Research Journal of Engineering and Technology (IRJET), Volume: 07 Issue: 08, Aug 2020.ī. In comparison to other types of footing, the results demonstrate that bearing capacity increases greatly in the circular spread footing and decreases in the strip footing.Ībdul Raouf Al-Shawa and Sami W. The present analysis looks into how four different types of foundations might increase their bearing capability. Main objective of analysis is to design and calculate the dimensions and stability of spread footing foundation and to find the value of factor of safety using GEO5 program. Analysis of foundation include different cases like with and without earthquake, with and without surcharge. They are Centric Spread Footing, Eccentric Spread Footing, Circular Spread Footing, Strip Footing. Design of Foundation includes four types of foundation. A vertical and horizontal bearing capacity analysis is performed by the program. GEO5 Software is a geotechnical program that is used to construct and verify spread footing foundations using input parameters.
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The analysis is to estimate and calculate the factor of safety using GEO5 student version Software. In this analysis, Shallow foundation is considered. Foundations are classified as shallow and deep. The foundation of a structure is the component that connects it to the ground and transfers load from the structure to the earth.