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Packaged units, specification of,
Packing characteristic, in cooling towers,
Packings, for cooling towers
Packings, for fixed beds:
Packinox heat exchanger,
Paints, spectral characteristics of reflectance of surfaces treated with,
Palen, J W
Panchal, C B,
Paraffins, normal and isonormal:
Paraldehyde:
Parallel channel instability, in condensers,
Partial boiling in subcooled forced convective heat transfer,
Participating media, radiation interaction in,
Particle convective component, in heat transfer from fluidized beds,
Particle emissivity,
Particle Reynolds number in fixed beds,
Particles:
Particulate fluidization,
Particulate fouling,
Pass arrangements, in plate heat exchangers,
Passes, tube side,
Passive methods, for augmentation of heat transfer, passive systems for:
PD5500 mechanical design of shell-and-tube heat exchangers to,
Peacock, D K,
Pearson number,
Peclet number
Peng-Robinson equation of state, application to hydrocarbons,
Penner's rule, in absorption of radiation by gases,
Pentachloroethane (Refrigerant 120):
Pentadecane:
Pentadecene:
Pentadiene 1, 2:
Pentadiene 1, trans 3:
Pentadiene 1, 4:
Pentadiene 2-3:
Pentafluoroethane (Refrigerant 125)
Pentamethylbenzene:
Pentane:
Pentanoic acid:
1-Pentanol:
1-Pentene:
cis-2-Pentene:
trans-2-Pentene:
Pentylacetate:
Pentylbenzene:
Pentylcyclohexane:
Pentylcyclopentane:
Pentylcyclopropane, liquid properties,
Perforated fins, in plate fin heat exchangers,
Perforated plates, loss coefficients in,
Periodic operation, of regenerator,
Periodic variations in temperature, thermal conduction in bodies with,
PFR correlation, for heat transfer in high fin tube banks,
Pharmaceutical industry, fouling of heat exchangers in,
Phase change materials, in augmentation of heat transfer,
Phase change number,
Phase equilibrium:
Phase inversion
Phase separation, as source of corrosion problems,
Phenol:
Phenols:
Phenylhydrazine:
Phonons, in thermal conductivity of solids,
Phosgene:
Physical properties:
Pi theorum, in dimensional analysis,
Pinch analysis, for heat exchanger network design,
Pioro, I L
Pioro, LS,
Pipe leads,
Piperidine:
Pipes, circular:
augmentation of heat transfer in,
boiling of binary and multicomponent mixtures in,
combined free and forced convection in,
flow boiling in: horizontal pipes,
free convective heat transfer from outside of,
heat transfer to, in fluidized beds,
heat transfer to liquid metals in,
laminar heat transfer in,
Forced Convection in Ducts
It's an article
constant heat flux,
constant wall temperature,
Forced Convection in Ducts
It's an article
free convection effects in,
variable physical property effects on,
pneumatic conveyance (gas solids flow) in,
radiative heat transfer along,
roughened surface, radiative heat transfer along,
single-phase fluid flow and pressure drop in fully developed
transition between laminar and turbulent flows, heat transfer in turbulent heat transfer in,
two-phase gas-liquid flow in,
use in shell-and-tube heat exchangers for single-phase flow,
Pipes, noncircular:
Piping components:
Pitting corrosion, in stainless steels,
Planck's constant,
Planck's law, for spectral distribution of blackbody radiation,
Plane shells, steady-state thermal conduction in,
Plastic deformation
Plate fin heat exchangers
Plate fins, efficiency,
Plate heat exchangers:
Plate evaporator
Plates:
Plug flow:
Plug flow model, for furnaces,
Pneumatic conveyance,
Pneumatic conveying dryer,
P-NTU method:
Polarization, of thermal radiation,
Polyglycols, as heat transfer media,
Polymers:
Pool boiling,
Porous surfaces:
Port arrangements, in plate heat exchangers,
Portable fouling unit,
Poskas, P,
Postdryout heat transfer:
Powders:
Power law fluid (non-Newtonian),
Power plant:
Prandtl number
Precipitation (crystallization) fouling,
Precipitation hardening, of stainless steels,
Pressure coefficient:
Pressure control of condensers,
Pressure drop:
Pressure gradient:
Pressure, specification of in mechanical design to EN13445,
Pressure testing,
Pressure vessels, principle codes for,
Pressurised water reactor, fouling in,
Printed circuit heat exchanger,
Problem table algorithm, in pinch analysis,
Process heaters:
Progressive plastic deformation
Prolate spheroids, free convective heat transfer from,
Promoters, in dropwise condensation,
Propadiene:
Propane:
1-Propanol:
2-Propanol:
Propeller agitator,
Property ratio method, for temperature dependent physical property
Propionaldehyde:
Propionic acid:
Propionic anhydride:
Proprionitrile:
Propyl acetate:
Propylamine:
Propylbenzene:
Propylcyclohexane:
Propylcyclopentane:
Propylene:
1,3-Propylene glycol:
Propylene oxide:
Propyl formate:
Propyl propionate:
Pseudo-boiling in supercritical fluids,
Pseudo-film boiling in supercritical fluids,
Pseudocritical pressure,
Pseudocritical tempertaure,
Pugh, S F
Pulp and paper industry, fouling of heat exchangers in,
Pulsations, use in augmentation of heat transfer,
Pulverized fuel water-tube boiler,
Pumping, lost work in,
Pushkina and Sorokin correlation, for flooding in vertical tubes,
Pyramid, free convective heat transfer from,
Pyridine:
Q
R
S
T
U
V
W
X
Y
Z
Z
Y
X
W
V
U
T
S
R
Q
Pyridine:
Pyramid, free
convective heat
transfer from,
Pushkina and Sorokin
correlation, for
flooding in vertical
tubes,
Pumping, lost work in,
Pulverized fuel
water-tube boiler,
Pulsations, use in
augmentation of heat
transfer,
Pulp and paper
industry, fouling of
heat exchangers in,
Pugh, S F
Pseudocritical
tempertaure,
Pseudocritical
pressure,
Pseudo-film boiling in
supercritical fluids,
Pseudo-boiling in
supercritical fluids,
Propyl propionate:
Propyl formate:
Propylene oxide:
1,3-Propylene glycol:
Propylene:
Propylcyclopentane:
Propylcyclohexane:
Propylbenzene:
Propylamine:
Propyl acetate:
Proprionitrile:
Propionic anhydride:
Propionic acid:
Propionaldehyde:
Property ratio
method, for
temperature
dependent physical
property
Propeller agitator,
2-Propanol:
1-Propanol:
Propane:
Propadiene:
Promoters, in
dropwise
condensation,
Prolate spheroids,
free convective heat
transfer from,
Progressive plastic
deformation
Process heaters:
Problem table
algorithm, in pinch
analysis,
Printed circuit heat
exchanger,
Pressurised water
reactor, fouling in,
Pressure vessels,
principle codes for,
Pressure testing,
Pressure, specification
of in mechanical
design to EN13445,
Pressure gradient:
Pressure drop:
Pressure control of
condensers,
Pressure coefficient:
Precipitation
hardening, of stainless
steels,
Precipitation
(crystallization)
fouling,
Prandtl number
Power plant:
Power law fluid
(non-Newtonian),
Powders:
Postdryout heat
transfer:
Poskas, P,
Portable fouling unit,
Port arrangements, in
plate heat
exchangers,
Porous surfaces:
Pool boiling,
Polymers:
Polyglycols, as heat
transfer media,
Polarization, of
thermal radiation,
P-NTU method:
Pneumatic conveying
dryer,
Pneumatic
conveyance,
Plug flow model, for
furnaces,
Plug flow:
Plates:
Plate evaporator
Plate heat
exchangers:
Plate fins, efficiency,
Plate fin heat
exchangers
Plastic deformation
Plane shells,
steady-state thermal
conduction in,
Planck's law, for
spectral distribution of
blackbody radiation,
Planck's constant,
Pitting corrosion, in
stainless steels,
Piping components:
Pipes, noncircular:
use in shell-and-tube
heat exchangers for
single-phase flow,
two-phase gas-liquid
flow in,
transition between
laminar and turbulent
flows, heat transfer in
turbulent heat
transfer in,
single-phase fluid flow
and pressure drop in
fully developed
roughened surface,
radiative heat transfer
along,
radiative heat transfer
along,
pneumatic
conveyance (gas
solids flow) in,
variable physical
property effects on,
free convection
effects in,
Forced Convection in
Ducts
constant wall
temperature,
constant heat flux,
Forced Convection in
Ducts
laminar heat transfer
in,
heat transfer to liquid
metals in,
heat transfer to, in
fluidized beds,
free convective heat
transfer from outside
of,
flow boiling in:
horizontal pipes,
combined free and
forced convection in,
boiling of binary and
multicomponent
mixtures in,
augmentation of heat
transfer in,
Pipes, circular:
Piperidine:
Pipe leads,
Pioro, LS,
Pioro, I L
Pinch analysis, for
heat exchanger
network design,
Pi theorum, in
dimensional analysis,
Physical properties:
Phosgene:
Phonons, in thermal
conductivity of solids,
Phenylhydrazine:
Phenols:
Phenol:
Phase separation, as
source of corrosion
problems,
Phase inversion
Phase equilibrium:
Phase change
number,
Phase change
materials, in
augmentation of heat
transfer,
Pharmaceutical
industry, fouling of
heat exchangers in,
PFR correlation, for
heat transfer in high
fin tube banks,
Periodic variations in
temperature, thermal
conduction in bodies
with,
Periodic operation, of
regenerator,
Perforated plates, loss
coefficients in,
Perforated fins, in
plate fin heat
exchangers,
Pentylcyclopropane,
liquid properties,
Pentylcyclopentane:
Pentylcyclohexane:
Pentylbenzene:
Pentylacetate:
trans-2-Pentene:
cis-2-Pentene:
1-Pentene:
1-Pentanol:
Pentanoic acid:
Pentane:
Pentamethylbenzene:
Pentafluoroethane
(Refrigerant 125)
Pentadiene 2-3:
Pentadiene 1, 4:
Pentadiene 1, trans 3:
Pentadiene 1, 2:
Pentadecene:
Pentadecane:
Pentachloroethane
(Refrigerant 120):
Penner's rule, in
absorption of
radiation by gases,
Peng-Robinson
equation of state,
application to
hydrocarbons,
Peclet number
Pearson number,
Peacock, D K,
PD5500 mechanical
design of
shell-and-tube heat
exchangers to,
Passive methods, for
augmentation of heat
transfer, passive
systems for:
Passes, tube side,
Pass arrangements, in
plate heat
exchangers,
Particulate fouling,
Particulate
fluidization,
Particles:
Particle Reynolds
number in fixed beds,
Particle emissivity,
Particle convective
component, in heat
transfer from fluidized
beds,
Participating media,
radiation interaction
in,
Partial boiling in
subcooled forced
convective heat
transfer,
Parallel channel
instability, in
condensers,
Paraldehyde:
Paraffins, normal and
isonormal:
Panchal, C B,
Palen, J W
Paints, spectral
characteristics of
reflectance of
surfaces treated with,
Packinox heat
exchanger,
Packings, for fixed
beds:
Packings, for cooling
towers
Packing characteristic,
in cooling towers,
Packaged units,
specification of,
P
O
N
M
L
K
J
I
H
G
F
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D
C
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HEDH
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Forced Convection in Ducts
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