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Summary of Equations

The differential equation can be solved numerically by the Runga-Kutta method. Analytical solutions depend on [Pg.36]

The relationships among various fractional melting models are [Pg.36]

Incongruent Fractional Incongruent FM w/constant K Incongruent FM w/ linear K Incongruent FM w/ linear K and linear q  [Pg.36]


Extensive review of equations for centerline velocities in flows in the vicinity of realistic hoods resulting from experimental and theoretical studies was performed by Braconnier, This review shows certain inconsistencies in equations available from the technical literature due to effects of parameters related to opening (shape, length-to-width ratio, presence of a flange) and the opening location (in an open space or limited by surfaces). The. summary of equations from this review complemented by information from Posokhin is presented in Tables 7.2.5 and 7.26. [Pg.549]

Summary of Equations Relating Apparent LNAPL Thickness (H) to Actual Thickness (h)... [Pg.176]

Table 5-2 Summary of Equations for Row over Rat Plates Properties evaluated at 7V = (Tw + T )I2 unless otherwise noted. [Pg.261]

Table 2.13 Summary of Equations for Depriciable Capital Cost - Average Factor Method (Based on the FOB Cost) ... [Pg.79]

Table 2.15 Summary of Equations for Depreciable Capital Cost -Individual Factor Method (Based on Purchased Equipment Cost (FOB))... Table 2.15 Summary of Equations for Depreciable Capital Cost -Individual Factor Method (Based on Purchased Equipment Cost (FOB))...
Table 3.1.1 Summary of Equations for Calculating the Purging Time of a Storage Tank ... [Pg.109]

Table 3.2.2 Revised Summary of Equations for Calculating Cooling-Tower Air Flow Rate... [Pg.117]

Table 4.5 Summary of Equations for Sizing Shell-and-Tube... Table 4.5 Summary of Equations for Sizing Shell-and-Tube...
Table 4.7 Summary of Equations for Rating a Heat Exchanger ... Table 4.7 Summary of Equations for Rating a Heat Exchanger ...
To size a steam turbine requires calculating the steam flow rate, which will eventually be needed to size a steam boiler. A summary of equations for sizing a steam turbine are given in Table 5.11 and the calculation procedure in Table 5.12. In this case, the mass balance is simple in that the steam flow rate into the turbine is equal to the steam and the condensate flow rate out of the turbine. [Pg.242]

Table 5.11 Summary of Equations for Sizing Steam Turbines... Table 5.11 Summary of Equations for Sizing Steam Turbines...
Table 6.3 Summary of Equations for Calculating Vessel Wall Thickness... Table 6.3 Summary of Equations for Calculating Vessel Wall Thickness...
Table 6.5 Summary of Equations for Sizing Accumulators Subscripts L = liquid — HV = vessel head V = 2VL ts ts = 5 to 10 min... Table 6.5 Summary of Equations for Sizing Accumulators Subscripts L = liquid — HV = vessel head V = 2VL ts ts = 5 to 10 min...
Table 6.7 Summary of Equations for Sizing Knock-Out Drums... Table 6.7 Summary of Equations for Sizing Knock-Out Drums...
Table 6.9 Summary of Equations for Sizing Vertical Gas-Liquid Separators... [Pg.296]


See other pages where Summary of Equations is mentioned: [Pg.171]    [Pg.106]    [Pg.125]    [Pg.161]    [Pg.194]    [Pg.34]    [Pg.56]    [Pg.71]    [Pg.106]    [Pg.121]    [Pg.245]    [Pg.171]    [Pg.504]    [Pg.135]    [Pg.232]   


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Crystallization summary of equations

Equation Summary

Summary of Design Equations

Summary of Net Ionic Equations

Summary of Principal Transport Equations

Summary of Reactions and Equations

Summary of neutron kinetics equations reactor power

Summary of the Ericksen-Leslie Dynamic Equations

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