Liquid Pipeline HydraulicsCRC Press, 2004/06/21 - 296 ページ Avoiding lengthy mathematical discussions, this reference specifically addresses issues affecting the day-to-day practices of those who design, operate, and purchase liquid pipelines in the oil, water, and process industries. Liquid Pipeline Hydraulics supplies an abundance of practical examples and applications for an in-depth understanding of liq |
目次
II | 1 |
III | 4 |
V | 8 |
VI | 11 |
VII | 15 |
VIII | 24 |
IX | 26 |
X | 27 |
LVI | 122 |
LVII | 125 |
LVIII | 127 |
LIX | 129 |
LX | 132 |
LXII | 134 |
LXIII | 137 |
LXIV | 141 |
XI | 30 |
XIII | 32 |
XV | 38 |
XVI | 41 |
XVII | 42 |
XVIII | 47 |
XIX | 49 |
XX | 50 |
XXI | 52 |
XXII | 54 |
XXIII | 56 |
XXIV | 57 |
XXV | 61 |
XXVI | 63 |
XXVIII | 65 |
XXX | 67 |
XXXI | 70 |
XXXII | 73 |
XXXIV | 74 |
XXXV | 75 |
XXXVI | 79 |
XXXVII | 85 |
XXXVIII | 87 |
XXXIX | 90 |
XL | 91 |
XLI | 95 |
XLII | 96 |
XLIII | 99 |
XLIV | 102 |
XLV | 104 |
XLVI | 108 |
XLVIII | 110 |
L | 114 |
LI | 115 |
LII | 116 |
LIII | 118 |
LIV | 120 |
LXV | 145 |
LXVI | 147 |
LXVII | 148 |
LXVIII | 152 |
LXX | 155 |
LXXI | 157 |
LXXII | 159 |
LXXIII | 166 |
LXXV | 169 |
LXXVII | 173 |
LXXVIII | 184 |
LXXIX | 185 |
LXXX | 186 |
LXXXI | 187 |
LXXXII | 188 |
LXXXIII | 190 |
LXXXIV | 192 |
LXXXV | 194 |
LXXXVI | 195 |
LXXXVII | 199 |
LXXXIX | 201 |
XC | 202 |
XCI | 205 |
XCII | 210 |
XCIII | 212 |
XCIV | 214 |
XCV | 217 |
XCVI | 221 |
XCVII | 222 |
XCVIII | 227 |
XCIX | 228 |
C | 229 |
CI | 241 |
CII | 244 |
CIII | 269 |
271 | |
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Affinity Laws API gravity assume bbl/day bbl/hr blended Btu/hr bulk modulus calculate the pressure centrifugal pump Chapter coefficient Colebrook-White equation control valve cost crude oil Darcy friction factor Darcy-Weisbach equation delivery pressure density Design diesel dimensionless discharge pressure due to friction English units Example Problem factor f follows friction factor frictional pressure drop ft/s gal/min gasoline Hazen-Williams equation head loss heat transfer hoop stress horsepower liquid flow liquid pipeline liquid properties Liquid specific gravity m³/hr MAOP mile motor NPSH pipe diameter Pipe internal diameter pipe material pipe roughness pipe segment pipe wall thickness pipeline system pressure drop due psi/mile pump head pump performance pump station Q=Flow rate Reynolds number shown in Figure specific weight suction pressure system head curve tank terminus thermal hydraulics throttle pressure total pressure required vapor pressure velocity Venturi meter versus flow rate viscosity VSD pump