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Volume optimization

The various volumes of rock matrix, shale, porosity, overpressure porosity and hydrocarbons are used to compute the various tool responses according to a model. The responses are compared to the measured values and a volume optimization is made to minimize the errors grouped in an incoherence function. The value of the incoherence function for the best fit determines the quality of the answer. Figure 4-335 is an example of formation pressure calculation as well as formation evaluation for lithology and fluid content. [Pg.1055]

Patients are generally treated in the supine position. If conventional simulationis used, a barium swallow should be done at the time of simulation to outline the target volume. Optimal immobilization such as an alpha cradle to improve daily set up reproducibility... [Pg.231]

Increase of sales h Increase volume Optimize portfolio lL r Produ ctivity/employee Time yield improvement Reduction in downtimes for product... [Pg.250]

The separation yield depends on the feed and purge pressures it is a maximum when the former reaches 1.5 to 2.10 Pa absolute and the second (U. 10 Pa absolute. It also depends on the hydrogen content of the feedstodc. In this case, it peaks at 85 per cent if the hydrogen content exceeds 80 per cent volume The process is economically unprofitable for a hydrogen concentration lower than 30 per cent volume. Optimal conditions prevail at 75 to 80 per cent volume. [Pg.22]

Grade and volume optimization at the multisaw edger and trimmer... [Pg.247]

Rebek postulates that one should design a molecular receptor for a target molecule where the target fills approximately 55% of the volume within the interior of the receptor. This would create a system with a volume-optimized binding behavior that is not significantly different from the bulk solvent. A suitable target for a receptor is one that has the right shape to fit the receptor, but also has a PC of around 55%. [Pg.152]

To determine the nucleation barrier A Ga numerically, we proceed in the following way. The possibility of nucleation at each position of the parent solution is considered. At this position of the nucleus center we increase (step by step) the nucleus volume, optimizing the shape parameter at each step. Finally, the position corresponding to the minimum nucleation barrier is chosen. [Pg.104]

YENGOVATOV, I.A., et al., "Radiation control volume optimization methodology". Nuclear Technology Tomorrow (Abstr. 3rd Ann. Scl. Conf. Nucl. Soc. Int., St. Petersburg, 1992), Nucl. Soc. Int., Moscow (1992) 270-271. [Pg.154]

Fill volume optimized for body size and intraperitoneal pressure (Brandes 1994, Kessler 1994), membrane transport characteristics (Khanna 1987, Twardowski 1989) and total dialysate volume per session are the most important parameters influencing efiiciency and affecting APD adequacy. [Pg.1623]


See other pages where Volume optimization is mentioned: [Pg.159]    [Pg.53]    [Pg.106]    [Pg.447]    [Pg.172]    [Pg.146]    [Pg.245]    [Pg.47]    [Pg.435]    [Pg.498]    [Pg.490]    [Pg.13]    [Pg.279]    [Pg.114]    [Pg.86]    [Pg.60]   
See also in sourсe #XX -- [ Pg.338 , Pg.339 , Pg.340 , Pg.341 , Pg.342 , Pg.343 , Pg.344 , Pg.345 ]




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