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Pipe data

E] Smooth pipe data. Data fits within 4% except at Nsc> 20,000, where experimental data is underpredicted. [Pg.610]

The Piping Data Base, with a limited amount of detailed information which SYREL wishes to supplement with data from U.S. facilities... [Pg.75]

The Appendix presents useful carbon steel and stainless steel pipe data. [Pg.67]

Commercial Wrought Steel Pipe Data (Based on ANSI B36.10 wall thicknesses)... [Pg.585]

A-6 Altitude and Atmospheric Pressures, 578 A-7 Vapor Pressure Curves, 579 A-8 Pressure Conversion Chart, 580 A-9 Vacuum Conversion, 581 A-10 Decimal and Millimeter Equivalents of Fractions, 582 A-11 Particle Size Measurement, 582 . A-12 Viscosity Conversions, 583 A-13 Viscosity Conversion, 584 A-14 Commercial Wrought Steel Pipe Data, 585 A-15 ... [Pg.643]

A-11 Particle Size Measurement, 434 A-l 2 Viscosity Conversions, 435 A-13 Viscosity Conversions, 436 A-14 Commercial Wrought Steel Pipe Data, 437 A-15 Stainless Steel Pipe Data, 440 A-16 Properties of Pipe, 441 A-17 Equation of Pipes, 450 A-l 8 Circumferences and Areas of Circles, 451 A-19 Capacities of Cylinders and Spheres,... [Pg.499]

DRILL PIPE DATA - lOOL lOtNT ATTACHED Uput... [Pg.752]

DRJLL PIPE DATA - TOOL JOINT ATTACHED... [Pg.754]

DA(LL PIPE DATA NEW TOOL JOINT DATA PREMIUM CLASS CLASS2 CLASS3 ... [Pg.758]

Figure 9-8 Correction factor ifs correcting for two-phase flashing flow through pipes. Data from J. C. Leung and M. A. Grolmes, The Discharge of Two-Phase Flashing Flow in a Horizontal Duct, AICHE Journal (1987), 33(3) 524-527. Figure 9-8 Correction factor ifs correcting for two-phase flashing flow through pipes. Data from J. C. Leung and M. A. Grolmes, The Discharge of Two-Phase Flashing Flow in a Horizontal Duct, AICHE Journal (1987), 33(3) 524-527.
Differences between Subcooled and Saturated Discharge for Horizontal Pipes Data by Uchaida and Narai (1966) in Figs. 23-39 and 23-40 illustrate the substantial differences between subcooled and saturated-liquid discharge rates. Discharge rates decrease with increasing pipe length in both cases, but the drop in discharge rate is much more pronounced with saturated liquids. This is so, because the flashed vapor effectively chokes the flow and decreases the two-phase density. [Pg.61]

X. Turbulent flow, tubes = = = 0.0149 IViTlVif Npe NfeN Sc [E] Smooth pipe data. Data fits within 4% except at Nsc > 20,000, where experimental data is underpredicted. NSo > 100,105 > N > 2100 [107]... [Pg.68]

From standard tables of pipe data we get the following information about 2-in Sch. 160 pipe and converting to cm ... [Pg.211]

A vertical boiler pipe of inner radius Rt and outer radius Rq is subjected to a uniform heat flux q" (Fig. 2P-4). A water flow evaporates through this pipe. The inside heat transfer coefficient h is very large. Neglecting axial conduction in the pipe, (a) evaluate the local -temperature difference between the inner and onter surfaces of the pipe, (b) evaluate the local difference between the bulk temperature of the water and the inner surface temperature of the pipe. Data Pipe diameters Do = 12 cm and Di = 10 cm. Furnace temperature Tg = 1400 ° C Evaporating water pressure in the pipe p = 10 MPa. Thermal conductivity of steel pipe k = 20 W/m-K. [Pg.115]

Differences between Subcooled and Saturated Discharge for Horizontal Pipes Data by Uchaida and Narai (1966) in Figs. [Pg.2543]

NSF (National Sanitation Foundation)/PPI pipe. [Data from Mark 2910. [Pg.143]

Drain waste vent, DWV, pipe. [Data from Rapacki, S. R., J. Vinyl Additive Technol, 4, 1, 12-21, 1998.]... [Pg.145]

Flame retardant pipe. [Data from Zucchelli, U, world Patent WO2014013284, Jan. 13, 2014, Italmatch Chemicals SPA.]... [Pg.149]


See other pages where Pipe data is mentioned: [Pg.17]    [Pg.643]    [Pg.17]    [Pg.162]    [Pg.637]    [Pg.85]    [Pg.348]   
See also in sourсe #XX -- [ Pg.416 ]




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Stainless Steel Pipe Data

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