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A hydraulic steady-state simulation and surge analysis is carried out using Pipeline Studio® Liquid version 4.0.1 (PLS) that calculates time-invariant pressure, temperature and flow profile throughout a pipeline network for specified boundary conditions and network element set points. Using the results obtained by steady state simulation as the starting point, the simulation is further carried out for transient conditions. Various pressure trends obtained by exposing the pipeline to various surge occurrence scenarios have been collected and compared with the Maximum Allowable Operating Pressure (MAOP) of pipeline.…mehr

Produktbeschreibung
A hydraulic steady-state simulation and surge analysis is carried out using Pipeline Studio® Liquid version 4.0.1 (PLS) that calculates time-invariant pressure, temperature and flow profile throughout a pipeline network for specified boundary conditions and network element set points. Using the results obtained by steady state simulation as the starting point, the simulation is further carried out for transient conditions. Various pressure trends obtained by exposing the pipeline to various surge occurrence scenarios have been collected and compared with the Maximum Allowable Operating Pressure (MAOP) of pipeline.
Autorenporträt
Mr. N V S G SASIKIRAN, is faculty member in the Department of Mechanical Engineering, Godavari institute of engineering and technology (Autonomous), Rajahmundry, INDIA and a Ph.D scholar at JAWAHARLAL NEHRU TECHNOLOGICAL UNIVERSITY KAKINADA.