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Velocity heads, number

Fitting or valve K, number of velocity heads number of equivalent pipe diameters... [Pg.204]

Fitting or Valve K, Number of Velocity Heads Number of Equivalent Pipe Diameters... [Pg.249]

In the velocity head method, the losses are reported as a number of velocity heads K. Then, the engineering Bernoulh equation for an incompressible fluid can be written... [Pg.642]

For commercial steel pipe, with a roughness of 0.046 mm, the friction factor for fully rough flow is about 0.0047, from Eq. (6-38) or Fig. 6-9. It remains to be verified that the Reynolds number is sufficiently large to assume fully rough flow. Assuming an abrupt entrance with 0.5 velocity heads lost,... [Pg.651]

Here, V is the area average velocity, K is the number of velocity heads of pressure drop provided hy the uniform resistance, Ap = FCpV/2, and a is the velocity profile factor used in the mechanical energy bal-... [Pg.659]

Power consuiTmtion has also been measured and correlated with impeller Reynolds number. The velocity head for a mixing impeller can be calculated, then, from flow and power data, by Eq. (18-3) or Eq. (18-5). [Pg.1629]

Number of velocity heads for fittings, expansions, contractions, and bends... [Pg.2346]

Part Pressure Drop in Number of Velocity Heads Equation... [Pg.27]

Friction factor, dimensionless Flow rate of one phase, GPM Aqueous phase flow rate, GPM Cy clone friction loss, expressed as number of cy clone inlet velocity heads, based on Drag or resistance to motion of body in fluid, poundals... [Pg.284]

Some representative figures are given in Table 3.2 for the friction losses in various pipe fittings for mrbulent flow of fluid, and are expressed in terms of the equivalent length of straight pipe with the same resistance, and as the number of velocity heads ( 2/2g) lost. Considerable variation occurs according to the exact construction of the fittings. [Pg.90]

Number of pipe diameters Number of velocity heads (u2/2g)... [Pg.91]

As the number of velocity heads, K, lost at each fitting or valve. [Pg.204]

A velocity head is u2/2g, metres of the fluid, equivalent to (u2/2)p, N/m2. The total number of velocity heads lost due to all the fittings and valves is added to the pressure drop due to pipe friction. [Pg.204]

The number of velocity heads lost, or equivalent pipe diameter, is a characteristic of the particular fitting or type of valve used. Values can be found in handbooks and manufacturers literature. The values for a selected number of fittings and valves are given in Table 5.3. [Pg.204]

The loss in terms of velocity heads can be estimated by counting the number of flow contractions, expansions and reversals, and using the factors for pipe fittings to estimate the number of velocity heads lost. For two tube passes, there will be two contractions, two expansions and one flow reversal. The head loss for each of these effects (see Volume 1, Chapter 3) is contraction 0.5, expansion 1.0, 180° bend 1.5 so for two passes the maximum loss will be... [Pg.667]

The terms represent, respectively, the effect of pressure gradient, acceleration, line friction, and potential energy (static head). The effect of fittings, bends, entrance effects, etc., is included in the term Ke correlated as a number of effective velocity heads. The inclination angle 0 is the angle to the horizontal from the elevation of the pipe connection to the vessel to the discharge point. The term bi is the two-phase multiplier that corrects the liquid-phase friction pressure loss to a two-phase pressure loss. Equation (23-39) is written in units of pressure/density. [Pg.56]

Fitting Number of equivalent pipe diameters LJdt Number of velocity heads K... [Pg.80]

If the frictional losses were expressed as the head loss, hf= APf/pg, then the quantity 4fLJdi would multiply u2/2g. Thus 4/Le/d, is the total number of velocity heads lost. Consequently, an alternative presentation of frictional losses for fittings is in terms of the number of velocity heads K lost for each fitting. In this case, the total frictional pressure drop may be calculated as... [Pg.81]

N Number of velocity heads lost through unit height of bed m-1 L-1... [Pg.235]

Typical values of number of velocity heads lost, 8, and equivalent lengths, L, of fittings which may sometimes be found in relief lines are given by CCPS1141. [Pg.89]

The total number of velocity heads for the proposed relief routes are as follows Safety valve... [Pg.196]


See other pages where Velocity heads, number is mentioned: [Pg.642]    [Pg.651]    [Pg.663]    [Pg.1142]    [Pg.1629]    [Pg.2347]    [Pg.71]    [Pg.71]    [Pg.284]    [Pg.524]    [Pg.524]    [Pg.205]    [Pg.240]    [Pg.56]    [Pg.367]    [Pg.224]    [Pg.89]    [Pg.90]    [Pg.90]    [Pg.232]   
See also in sourсe #XX -- [ Pg.201 ]




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Number of velocity heads

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