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Nahme-Griffith number,
Nakashima, CY
Nanoparticles, for heat transfer augmentation,
Naphthalene:
Napthenes:
National practice, in mechanical design, guide to,
Natural convection:
Natural draft cooling towers:
Natural frequency of tube vibration in heat exchangers,
Navier-Stokes equation,
Neon:
Neopentane:
Net free area, in double-pipe heat exchangers,
Netherlands, guide to national mechanical design practice,
Networks, of heat exchangers, pinch analysis method for design of,
Neumann boundary conditions, finite difference method,
Nickel, thermal and mechanical properties
Nickel alloys,
Nickel steels,
Niessen, R,
Nitric oxide:
Nitriles:
Nitrobenzene:
Nitro derivatives:
Nitroethane:
Nitrogen:
Nitrogen dioxide:
Nitrogen peroxide:
Nitromethane:
m-Nitrotoluene:
Nitrous oxide
Noise:
Nonadecane:
Nonadecene:
Nonane:
Nonene:
Nonanol:
Nonaqueous fluids, critical heat flux in,
Non-circular microchannels:
Noncondensables:
Nondestructive testing, of heat exchangers
Nongray media, interaction phenomena with,
Nonmetallic materials:
Non-Newtonian flow:
Nonparticipating media, radiation interaction in,
Nonuniform heat flux, critical heat flux with,
Non-wetting surfaces, in condensation augmentation,
North, C,
No-tubes-in-window shells, calculation of heat transfer and pressure drop in,
Nozzles:
design to ASME VIII,
design to EN13445,
design to PD5500
impinging jets from, heat transfer in,
loads in,
loss coefficients in,
in shell-and-tube heat exchangers: constructional features
Nowell, D G,
Nucleate boiling:
Nuclear industry, fouling problems in,
Nucleation:
Nucleation sites:
Nuclei, formation in supersaturated vapor,
Number of transfer units (NTU):
Numerical methods:
Nusselt:
Nusselt-Graetz problem, in laminar heat transfer in ducts,
Nusselt number:
O
P
Q
R
S
T
U
V
W
X
Y
Z
Z
Y
X
W
V
U
T
S
R
Q
P
O
Nusselt number:
Nusselt-Graetz
problem, in laminar
heat transfer in ducts,
Nusselt:
Numerical methods:
Number of transfer
units (NTU):
Nuclei, formation in
supersaturated vapor,
Nucleation sites:
Nucleation:
Nuclear industry,
fouling problems in,
Nucleate boiling:
Nowell, D G,
in shell-and-tube heat
exchangers:
constructional
features
loss coefficients in,
loads in,
impinging jets from,
heat transfer in,
design to PD5500
design to EN13445,
design to ASME VIII,
Nozzles:
No-tubes-in-window
shells, calculation of
heat transfer and
pressure drop in,
North, C,
Non-wetting surfaces,
in condensation
augmentation,
Nonuniform heat flux,
critical heat flux with,
Nonparticipating
media, radiation
interaction in,
Non-Newtonian flow:
Nonmetallic materials:
Nongray media,
interaction
phenomena with,
Nondestructive
testing, of heat
exchangers
Noncondensables:
Non-circular
microchannels:
Nonaqueous fluids,
critical heat flux in,
Nonanol:
Nonene:
Nonane:
Nonadecene:
Nonadecane:
Noise:
Nitrous oxide
m-Nitrotoluene:
Nitromethane:
Nitrogen peroxide:
Nitrogen dioxide:
Nitrogen:
Nitroethane:
Nitro derivatives:
Nitrobenzene:
Nitriles:
Nitric oxide:
Niessen, R,
Nickel steels,
Nickel alloys,
Nickel, thermal and
mechanical properties
Neumann boundary
conditions, finite
difference method,
Networks, of heat
exchangers, pinch
analysis method for
design of,
Netherlands, guide to
national mechanical
design practice,
Net free area, in
double-pipe heat
exchangers,
Neopentane:
Neon:
Navier-Stokes
equation,
Natural frequency of
tube vibration in heat
exchangers,
Natural draft cooling
towers:
Natural convection:
National practice, in
mechanical design,
guide to,
Napthenes:
Naphthalene:
Nanoparticles, for
heat transfer
augmentation,
Nakashima, CY
Nahme-Griffith
number,
N
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L
K
J
I
H
G
F
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HEDH
Popular Articles
Shell-and-Tube Heat Exchanger Design to EN13445
Design to PD 5500
Design to ASME VIII
Input Data and Recommended Practices
Headers, Nozzles and Turnarounds
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