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Flow rate traversing method

The principle of the traversing method is to measure the local velocity at one or several points of the flow cross-section and then calculate the flow rate based on this information. Generally speaking, an integration of the local velocity over the flow cross-section is made. Mathematically, this is expressed as... [Pg.1163]

Molecular dynamics with periodic boundary conditions is presently the most widely used approach for studying the equilibrium and dynamic properties of pure bulk solvent,97 as well as solvated systems. However, periodic boundary conditions have their limitations. They introduce errors in the time development of equilibrium properties for times greater than that required for a sound wave to traverse the central cell. This is because the periodicity of information flow across the boundaries interferes with the time development of other processes. The velocity of sound through water at a density of 1 g/cm3 and 300 K is 15 A/ps for a cubic cell with a dimension of 45 A, the cycle time is only 3 ps and the time development of all properties beyond this time may be affected. Also, conventional periodic boundary methods are of less use for studies of chemical reactions involving enzyme and substrate molecules because there is no means for such a system to relax back to thermal equilibrium. This is not the case when alternative ensembles of the constant-temperature variety are employed. However, in these models it is not clear that the somewhat arbitrary coupling to a constant temperature heat bath does not influence the rate of reequilibration from a thermally perturbed... [Pg.37]


See other pages where Flow rate traversing method is mentioned: [Pg.253]    [Pg.1163]    [Pg.180]    [Pg.222]    [Pg.161]    [Pg.209]    [Pg.59]    [Pg.397]    [Pg.233]    [Pg.22]    [Pg.680]   
See also in sourсe #XX -- [ Pg.1163 , Pg.1164 , Pg.1165 ]




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