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A
B
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Cabin heater,
Caetano, EF
Calcium carbonate, fouling of heat exchangers by,
Calcium sulphate, fouling of heat exchangers by,
CALFLO, heat transfer media,
Calorically perfect gas,
CANDU Reactor, fouling problems in,
Carbon dioxide:
Carbon disulfide:
Carbon monoxide:
Carbon steel:
Carbon-manganese steels
Carbon-molybdenum steels,
Carbon tetrachloride:
Carbonyl sulfide:
Carboxylic acids:
Carnot cycle in refrigeration,
Carnot factor,
Carreau fluid (non-Newtonian),
Carryover of solids in fluidized beds,
Cashman, B L,
Cast iron, thermal and mechanical properties,
Cavitation as source of damage in heat exchangers,
Cell method, for heat exchanger effectiveness,
Cement kilns,
CEN code for pressure vessels,
Centrifugal dryer,
Ceramics
Certification of heat exchangers,
Chan, S H,
Channel emissivity,
Chapman-Rubescin formula for viscosity variation with temperature,
Chemical exergy,
Chemical formulas of commonly used fluids
Chemical industry, fouling of heat exchangers in,
Chemical reactions, exergy analysis of,
Chemical reaction fouling,
Chen correlation for forced convective boiling,
Chen method, for enthalpy of vaporisation,
Chenoweth, J M,
Chevron troughs as corrugation design in plate heat exchangers,
Chillers, construction features of,
Chilton-Colburn analogy,
Chisholm, D
Chisholm correlations:
Chlorine:
Chloroacetic acid:
Chlorobenzene:
Chlorobutane:
Chlorodifluoromethane (see Refrigerant 22)
1-Chloro-1,1-difluoroethane (Refrigerant 142b):
Chloroethane (Refrigerant 160):
Chloromethane (Refrigerant 40):
Chloropentane:
1,2-Chloropentafluoroethane (Refrigerant 115):
Chloroprene (2-Chloro-1,3-butadiene):
1-Chloropropane:
2-Chloropropane:
m-Chlorotoluene:
o-Chlorotoluene:
Chlorotrifluoroethylene:
Chlorotrifluoromethane (see Refrigerant 13)
Chromium-molybdenum steels,
Chudnovsky, Y,
Chugging flow (gas-liquid), in shell-and-tube heat exchangers,
Chung et al method, for viscosity of low pressure gases,
Church and Prausnitz methods:
Churchill, S W,
Churchill and Chu correlations for free convective heat transfer:
Churn flow, regions of occurrence of,
Circles, radiative heat transfer shape factors between parallel coaxial,
Circular girth flanges, design according to ASME VIII code,
Circulating fluidized beds,
Circulation, modes of in free convection: in enclosures heated from below,
CISE correlations for void fractions,
Clausius-Clapeyron relationship:
Cleaning:
Climbing film evaporator,
Closed circuit cooling towers,
Coalescence of bubbles in fluidized beds,
Coatings for corrosion protection
Cocurrent flow:
Codes, mechanical design:
Cogeneration
Colburn and Drew method for binary vapor condensation,
Colburn and Hougen method for condensation in presence of noncondensable gases
Colburn equation for single-phase heat transfer outside tube banks,
Colburn j factor:
Colebrook-White equation for friction factor in rough circular pipe,
Coles, law of the wake,
Collier, J G,
Combined free and forced convection heat transfer:
Combined heat and mass transfer,
Combining flow, loss coefficients in,
Combustion model for furnaces,
Compact heat exchangers (see Plate fin heat exchangers)
Compartment dryers,
Composite curves, in the pinch analysis method for heat exchanger network analysis:
Compressed liquids, density of:
Compressible flow:
Compression, exergy analysis of
Compressive stress, in heat exchanger tubes,
Computer-aided design, of evaporators,
Computer program for Monte Carlo calculations of radiative heat transfer,
Computer simulation, of fouling,
Computer software for mechanical design,
Concentration, choice of evaporator type for,
Concentric spheres, free convective heat transfer in,
Concurrency corrections in plate heat exchangers,
Condensation:
Concrete, lightweight, submerged combustion system for,
Condensation curves:
Condenser/preheater tubes, in multistage flash evaporation,
Condensers:
condensate subcooling in,
design procedures for
discussion of types,
fogging in
fouling in,
heat transfer in,
in Ocean Thermal Energy Conversion (OTEC) systems,
introduction to,
mean temperature difference in,
operational problems in
pressure drop in,
reflux, design of,
temperature patterns in,
as type of heat exchanger,
for use in association with evaporators,
Conduction, heat:
Conductors, thermal conductivity of,
Cones, under internal pressure, EN13445 guidelines for,
Cones, vertical:
Conical shells, mechanical design of:
Conjugate radiation interactions
Connors equation for fluid elastic instability,
Conservation equations:
Constantinon and Gani method, for estimating normal boiling point,
Contact angle,
Contact resistance:
Continuity equation:
Continuum model, for fluids,
Continuum theories, for non-Newtonian fluids,
Contraction, sudden, pressure drop in:
Control:
Control volume method, in finite difference solutions for conduction,
Convection, interaction of radiation with,
Convection effects, on heat transfer in kettle reboilers,
Convective heat transfer, single-phase:
Conversion factors:
Conveyor, gravity:
Cooling curves, in condensation,
Cooling towers:
Cooling water fouling,
Cooper correlation, for nucleate boiling,
Cooper, Anthony,
Copper, thermal and mechanical properties,
Copper alloys,
Correlation, general nature of,
Corresponding states principle
Corrosion:
Corrugation design, for plate heat exchangers
Costing of heat exchangers:
Countercurrent flow:
Coupled thermal fields, in transient conduction,
Cowie, R C,
Crank-Nicolson differencing scheme, in finite difference method,
Creeping flow, in combined free and forced convection around immersed bodies,
m-Cresol:
o-Cresol:
p-Cresol:
Crevice corrosion, in stainless steels,
Critical constants
Critical density, of commonly used fluids,
Critical flow, in gas-liquid systems,
Critical heat flux:
Critical pressure:
Critical Rayleigh number, in free convection,
Critical temperature:
Critical velocity, in stratification in bends and horizontal tubes,
Critical volume (see also Critical density)
Cross counterflow heat exchangers,
Crossflow:
Crude oil, fouling of heat exchangers:
Cryogenic plant, entropy generation in,
Crystallization
Crystallization fouling,
Curved ducts:
Cut-and-twist factor, in enhancement of heat transfer in double pipe heat exchangers,
C-value method for heat exchanger costing,
Cycling, of expansion bellows,
Cyclobutane:
Cyclohexane:
Cyclohexanol:
Cyclohexene:
Cyclopentane:
Cyclopentene:
Cyclopropane:
Cylinders:
Cylindrical contacts, thermal contact resistance in,
Cylindrical coordinates, finite difference equations for conduction in,
Cylindrical shell, analytical basis of code rules for,
D
E
F
G
H
I
J
K
L
M
N
O
P
Q
R
S
T
U
V
W
X
Y
Z
Z
Y
X
W
V
U
T
S
R
Q
P
O
N
M
L
K
J
I
H
G
F
E
D
Cylindrical shell,
analytical basis of
code rules for,
Cylindrical
coordinates, finite
difference equations
for conduction in,
Cylindrical contacts,
thermal contact
resistance in,
Cylinders:
Cyclopropane:
Cyclopentene:
Cyclopentane:
Cyclohexene:
Cyclohexanol:
Cyclohexane:
Cyclobutane:
Cycling, of expansion
bellows,
C-value method for
heat exchanger
costing,
Cut-and-twist factor,
in enhancement of
heat transfer in
double pipe heat
exchangers,
Curved ducts:
Crystallization fouling,
Crystallization
Cryogenic plant,
entropy generation in,
Crude oil, fouling of
heat exchangers:
Crossflow:
Cross counterflow
heat exchangers,
Critical volume (see
also Critical density)
Critical velocity, in
stratification in bends
and horizontal tubes,
Critical temperature:
Critical Rayleigh
number, in free
convection,
Critical pressure:
Critical heat flux:
Critical flow, in
gas-liquid systems,
Critical density, of
commonly used fluids,
Critical constants
Crevice corrosion, in
stainless steels,
p-Cresol:
o-Cresol:
m-Cresol:
Creeping flow, in
combined free and
forced convection
around immersed
bodies,
Crank-Nicolson
differencing scheme,
in finite difference
method,
Cowie, R C,
Coupled thermal
fields, in transient
conduction,
Countercurrent flow:
Costing of heat
exchangers:
Corrugation design,
for plate heat
exchangers
Corrosion:
Corresponding states
principle
Correlation, general
nature of,
Copper alloys,
Copper, thermal and
mechanical
properties,
Cooper, Anthony,
Cooper correlation,
for nucleate boiling,
Cooling water fouling,
Cooling towers:
Cooling curves, in
condensation,
Conveyor, gravity:
Conversion factors:
Convective heat
transfer, single-phase:
Convection effects, on
heat transfer in kettle
reboilers,
Convection,
interaction of
radiation with,
Control volume
method, in finite
difference solutions
for conduction,
Control:
Contraction, sudden,
pressure drop in:
Continuum theories,
for non-Newtonian
fluids,
Continuum model, for
fluids,
Continuity equation:
Contact resistance:
Contact angle,
Constantinon and
Gani method, for
estimating normal
boiling point,
Conservation
equations:
Connors equation for
fluid elastic instability,
Conjugate radiation
interactions
Conical shells,
mechanical design of:
Cones, vertical:
Cones, under internal
pressure, EN13445
guidelines for,
Conductors, thermal
conductivity of,
Conduction, heat:
for use in association
with evaporators,
as type of heat
exchanger,
temperature patterns
in,
reflux, design of,
pressure drop in,
operational problems
in
mean temperature
difference in,
introduction to,
in Ocean Thermal
Energy Conversion
(OTEC) systems,
heat transfer in,
fouling in,
fogging in
discussion of types,
design procedures for
condensate
subcooling in,
Condensers:
Condenser/preheater
tubes, in multistage
flash evaporation,
Condensation curves:
Concrete, lightweight,
submerged
combustion system
for,
Condensation:
Concurrency
corrections in plate
heat exchangers,
Concentric spheres,
free convective heat
transfer in,
Concentration, choice
of evaporator type
for,
Computer software
for mechanical
design,
Computer simulation,
of fouling,
Computer program
for Monte Carlo
calculations of
radiative heat
transfer,
Computer-aided
design, of
evaporators,
Compressive stress, in
heat exchanger tubes,
Compression, exergy
analysis of
Compressible flow:
Compressed liquids,
density of:
Composite curves, in
the pinch analysis
method for heat
exchanger network
analysis:
Compartment dryers,
Compact heat
exchangers (see Plate
fin heat exchangers)
Combustion model for
furnaces,
Combining flow, loss
coefficients in,
Combined heat and
mass transfer,
Combined free and
forced convection
heat transfer:
Collier, J G,
Coles, law of the
wake,
Colebrook-White
equation for friction
factor in rough
circular pipe,
Colburn j factor:
Colburn equation for
single-phase heat
transfer outside tube
banks,
Colburn and Hougen
method for
condensation in
presence of
noncondensable
gases
Colburn and Drew
method for binary
vapor condensation,
Cogeneration
Codes, mechanical
design:
Cocurrent flow:
Coatings for corrosion
protection
Coalescence of
bubbles in fluidized
beds,
Closed circuit cooling
towers,
Climbing film
evaporator,
Cleaning:
Clausius-Clapeyron
relationship:
CISE correlations for
void fractions,
Circulation, modes of
in free convection: in
enclosures heated
from below,
Circulating fluidized
beds,
Circular girth flanges,
design according to
ASME VIII code,
Circles, radiative heat
transfer shape factors
between parallel
coaxial,
Churn flow, regions of
occurrence of,
Churchill and Chu
correlations for free
convective heat
transfer:
Churchill, S W,
Church and Prausnitz
methods:
Chung et al method,
for viscosity of low
pressure gases,
Chugging flow
(gas-liquid), in
shell-and-tube heat
exchangers,
Chudnovsky, Y,
Chromium-molybdenum
steels,
Chlorotrifluoromethane
(see Refrigerant 13)
Chlorotrifluoroethylene:
o-Chlorotoluene:
m-Chlorotoluene:
2-Chloropropane:
1-Chloropropane:
Chloroprene
(2-Chloro-1,3-butadiene):
1,2-Chloropentafluoroethane
(Refrigerant 115):
Chloropentane:
Chloromethane
(Refrigerant 40):
Chloroethane
(Refrigerant 160):
1-Chloro-1,1-difluoroethane
(Refrigerant 142b):
Chlorodifluoromethane
(see Refrigerant 22)
Chlorobutane:
Chlorobenzene:
Chloroacetic acid:
Chlorine:
Chisholm correlations:
Chisholm, D
Chilton-Colburn
analogy,
Chillers, construction
features of,
Chevron troughs as
corrugation design in
plate heat
exchangers,
Chenoweth, J M,
Chen method, for
enthalpy of
vaporisation,
Chen correlation for
forced convective
boiling,
Chemical reaction
fouling,
Chemical reactions,
exergy analysis of,
Chemical industry,
fouling of heat
exchangers in,
Chemical formulas of
commonly used fluids
Chemical exergy,
Chapman-Rubescin
formula for viscosity
variation with
temperature,
Channel emissivity,
Chan, S H,
Certification of heat
exchangers,
Ceramics
Centrifugal dryer,
CEN code for pressure
vessels,
Cement kilns,
Cell method, for heat
exchanger
effectiveness,
Cavitation as source
of damage in heat
exchangers,
Cast iron, thermal and
mechanical
properties,
Cashman, B L,
Carryover of solids in
fluidized beds,
Carreau fluid
(non-Newtonian),
Carnot factor,
Carnot cycle in
refrigeration,
Carboxylic acids:
Carbonyl sulfide:
Carbon tetrachloride:
Carbon-molybdenum
steels,
Carbon-manganese
steels
Carbon steel:
Carbon monoxide:
Carbon disulfide:
Carbon dioxide:
CANDU Reactor,
fouling problems in,
Calorically perfect
gas,
CALFLO, heat transfer
media,
Calcium sulphate,
fouling of heat
exchangers by,
Calcium carbonate,
fouling of heat
exchangers by,
Caetano, EF
Cabin heater,
C
B
A
HEDH
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Discussion of Condenser Types
Condensation of Vapour Mixtures
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