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Mixing factor

FIG. 15-43 Mixing factors compared for pilot and fiiU scale. [Oldshue in Lo, Baird, and Hanson, Handbook of Solvent Extraction, John Wiley h- Sons, NY, 1983. Used with peimission.]... [Pg.1484]

Another equation that includes the initial concentration and the concentration in the supply air and the mixing factor has been published ... [Pg.615]

Mixing factor A factor used in air distribution relating to the actual degree of mixing that takes place between the room air and a contaminant generated in that room. [Pg.1460]

Correlating factor for viscous flow power, Table 5-1 Mixing factors, turbulent flow power. Table 5-1 Viscosity correction factor for turbulent How (static mixer)... [Pg.339]

The nonideal mixing factor k accounts for conditions in the enclosure that are less than well mixed. It follows that... [Pg.86]

The nonideal mixing factor varies from 0.1 to 0.5 for most practical situations.7 For perfect mixing k = 1. [Pg.88]

Table 3-12 Nonideal Mixing Factor kfor Various Dilution Ventilation Conditions1... Table 3-12 Nonideal Mixing Factor kfor Various Dilution Ventilation Conditions1...
Equations 3-9, 3-12, and 3-14 are used to compute the ventilation rates required. Table 3-12 lists values for k, the nonideal mixing factor used with these equations. [Pg.102]

Psat is the saturation vapor pressure of the liquid, k is the nonideal mixing factor,... [Pg.342]

The nonideal mixing factor k ranges between 0.1 and 0.5. Because no information is given about the ventilation, k is used as a parameter. Substituting into Equation 3-14, we obtain... [Pg.343]

Here I is the estimated experimental intensity, var denotes the variance, m is the mixing factor defined by the point spread function and g is... [Pg.157]

Effect of mixing factors for nonfirst-order reactions. Segregation plays no role in plug flow however, it increasingly affects the reactor performance as the RTD shifts from plug to mixed flow. [Pg.357]

Figure 1.140 Mixing efficiency versus diffusion constant for one zig-zag micro mixer (lines) with s = 400 pm and one straight-channel micro mixer (dashed lines), reference case B, at three different Re values (top). Mixing factor, the ratio between the mixing efficiency of comparable zig-zag and straight-channel micro mixers, versus diffusion constant (bottom) [59] (by courtesy of ACS). Figure 1.140 Mixing efficiency versus diffusion constant for one zig-zag micro mixer (lines) with s = 400 pm and one straight-channel micro mixer (dashed lines), reference case B, at three different Re values (top). Mixing factor, the ratio between the mixing efficiency of comparable zig-zag and straight-channel micro mixers, versus diffusion constant (bottom) [59] (by courtesy of ACS).
Here I is the estimated experimental intensity, var denotes the variance, m is the mixing factor defined by the point spread function and g is the gain of the detector. This expression allows an estimation of variance in experimental intensity once DQE is known, which is especially usefiil in the / -fitting, where the variance is used as the weight. For the characterization of electron detectors, see Ref 50. [Pg.6033]

K = dimensionless mixing factor that accounts for less than complete mixing characteristics of the contaminant in the room, the contaminant toxicity level, and the number of potentially exposed workers. Usually, the value of K varies from 3 to 10, where 10 is used under... [Pg.920]

The critical mixing factors in a stirred tank at e impeller speed and type, as well as their influence on local turbulence and overall circulation. Since all aspects of these factors cannot be maintained constant on scale-up either locally or globally, the extent to which changes in the crystallizing environment will affect nucleation is extremely difficult to predict. To the mixing issue must be added the uncertainties caused by soluble and insoluble impurities that may be present in sufficiently different concentrations from batch to batch to cause variation in induction time, nucleation rate, and particle size. [Pg.122]

Figure 8 shows the effect of mixture ratio on performance at a chamber pressure of about 1.2 MPa. It was shown the maximum vacuum specific impulse at near the mixture ratio of 1.60. From Figure 8, it may be seen that the mixture ratios of peak specific impulse coincides with those corresponding to the designed Rupe number of 0.5. This is perhaps due to the non-reactive effects of 5ie core flow with the film coolant as shown in the film cooled thrust engines.( ) The mixing factor M at the peak vacuum specific impulse was 0.85, which was the small value compared to the designed point of 1.0. The vacuum specific impulse I py decreased... [Pg.472]

Mixed factor spaces, where some factors are qualitative, or quantitative and discrete and other quantitative factors are continuous, are also possible. [Pg.26]

Mixing factors in case of wire-to-pin contact in the bundle of wire spaced fuel elements turned out to be higher than those for wire-to-wire contact. Counter-direction wires providing lateral coolant flows would be most effective. [Pg.45]

In the foregoing / indicates a mixed factor group state (that is, one derived from more than one molecular state at the site) iW/" (Bju) is the transition moment to the wth factor group state corresponding to a state of molecular symmetry B2 . The intensity ratio It/la for u = Au(b) and Bu(ac) is no longer the same as the oriented gas ratio of Eq. 10.88. If the B2u state happens to be weak or if the projection of the molecxdar transition dipole, corresponding to the transition to the state, onto one of the axes happens to be very small, then the importance of the mixed-in state could become dominant. [Pg.348]


See other pages where Mixing factor is mentioned: [Pg.615]    [Pg.20]    [Pg.455]    [Pg.86]    [Pg.102]    [Pg.289]    [Pg.649]    [Pg.188]    [Pg.71]    [Pg.61]    [Pg.468]    [Pg.223]    [Pg.3280]    [Pg.919]    [Pg.338]    [Pg.113]    [Pg.122]    [Pg.751]    [Pg.753]    [Pg.184]    [Pg.29]    [Pg.184]    [Pg.267]    [Pg.703]    [Pg.703]   
See also in sourсe #XX -- [ Pg.1460 ]




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