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Considerable computational effort may be saved with the use of this finite pipe element.
The stiffened pipe structure is analyzed by using a pipe element with variable cross-section.
To do this, a 3-dimensional straight pipe element and a curved pipe element conveying fluid are formulated using the dynamic stiffness method of the wave approach and coded to be applied to any complex piping system.
The pressure drops at each pipe element as well as the bulk transfer rates were measured under different operating conditions.
Within an industry driven project a solid wood panel with an integrated functional pipe element is to be developed.
Using the measured results, the friction factor for each pipe element was calculated and a procedure for transfer rate estimation was developed.
Similar(48)
The applicability of the method was discussed based on the vibration experiments using pipe elements and a mock-up piping system.
The interaction between soil particles and pipe elements can be understood from this numerical simulation.
Traditional theory of elastic foundation model is used for tube to tubesheet interaction in model I. Pipe elements are used to represent actual interaction between tube and tubesheet in model II.
During the observation on the site, several pipe elements and connection parts (Mero nodes and bolts) were gathered and then visual inspections and experimental studies were conducted on those parts.
Both the parallel and co-axial perforated multiple pipe elements are considered and the effect of mean flow velocity profile and slip velocity is shown by application to a straight-through resonator.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com