Saturday, September 28, 2019
ENG C291 Probabilistic Methods in Structural Engineering ( Curriculum Essay
ENG C291 Probabilistic Methods in Structural Engineering ( Curriculum BACHELOR OF ENGINEERING IN CIVIL) - Essay Example echniques for providing significant mathematical measures for designing reliable and secure structures, which are more oriented towards maintaining their elevation and integrity, without being distracted or disturbed by external/internal calamities. Structural engineering is sub-domain of engineering, which deals with the evaluation and analysis of large/small structural designs, offering self-sustenance, reliability, and load resistance features. As part of the civil engineering and architecture designing discipline; this particular subject carries a very deep association with the art of mathematical modeling, geometrical designing, proportion-based physical calculations, etc. As can be witnessed practically; the two common factors between all the structural samples are integrity and reliability, which are often achieved through precise mathematical and statistical calculations. In this regard, generally, the structures over which calculations or analysis is performed, are called structural systems (more technically, filtering systems). According to Augusti et al. (1984), these systems are roughly defined by three important aspects, which shape their overall integrity. These aspects include ââ¬Ëinputââ¬â¢ to the system q uantities acting over the system, system quantities which are pre-included part of any system, and ââ¬Ëoutputââ¬â¢ quantities, which are resulted from a system. With these in hand, an engineer working on these structures (systems) can take necessary actions for analyzing structural properties, and set different regulatory parameters, for the sake of reliability and integrity assurance. For instance, a system (structure) can be considered, which has its foundations on a horizontal plane. This system is getting influenced by external horizontal and vertical forces on fixed and arbitrary upper ends, and is leaning slightly towards one end, which is decided by the vector product of both forces. Within this system, the horizontal and vertical forces can be
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