15.6. Nomenclature

Symbols

Description

Units

Superscripts

l

Linear

n

Time step n

Prime always indicates that a quantity refers to a unit of generalized smear volume

Subscripts

ac

Acoustic

bk

Lower boundary of node K

ca

Cavity

cl

Cladding

fica

Free fission gas in molten pin cavity

fr

Friction

fsca

Dissolved fission gas in the molten pin cavity

fuca

Mobile fuel in the molten pin cavity

fufi

Fuel and fission gas

fvca

Fuel vapor in the molten pin cavity

i

Axial coolant channel index, specific enthalpy

if

Interface

K

Axial pin or cavity index

liq

Liquidus

me

Melting, melt-in

min

Minimum

max

Maximum

Na

Sodium

Nl

Liquid sodium

Nv

Sodium vapor

pin,pi

Pin

rl

Dissolved fission-gas release

S’

Sink or source per unit of generalized smear volume

sol

Solidus

un

Uncompressed

vg

Vapor and gas

vi

Viscous

z

Axial location z

Greek

α

Void fraction

β

Delayed neutron fraction

γ

Cp/C:sub:v

δ

Partial derivative

Δ

Derivative in finite differences

κ

Compressibility

1/Pa

π

Circumference of a circle divided by its diameter

ρ

Theoretical density

kg/m3

ρ’

Generalized linear density

kg/m3

σ

Surface tension

J/m2

θ

Generalized volume fraction

Regular

A

Cross section area

m2

A’

Interaction or surface area per unit of generalized smear volume

1/m

AXMX

Input, reference cross section area; recommended input value is subassembly cross section area

m2

BFR

Input, exponent of liquid friction coefficient

BFRV

Input, exponent of vapor friction coefficient

C

Specific heat

J(kg·K)

CDFU

Input, fuel conductivity

J(m·s·K)

CDNL

Input, liquid sodium conductivity

J(m·s·K)

CDVG

Input, conductivity of sodium vapor

J(m·s·K)

CFCOFV

Input, fuel vapor condensation coefficient

J(m2·s·K)

CIA3

Input, constant in the Deissler heat-transfer-correlation

CIFRFU

Input part of the fuel friction calculation

CIREFU

Input, Reynolds number above which fully turbulent fuel flow is assumed for friction calculation

CIRTFS

Input, controls dissolved gas release

1/s

CMFU

Input, liquid fuel compressibility

1/Pa

CPFU

Input, fuel heat capacity

J/(kg·K)

D

Diameter, hydraulic diameter

m

e

Internal energy

J/kg

EGBBLY

Input, internal fuel energy below which fuel freezing begins

J/kg

EGFULQ

Input, internal fuel energy at the liquidus

J/kg

EGFUSO

Input, internal fuel energy at the solidus

J/kg

EPCH

Input, controls use of advanced pressure in in-pin calculation

F

Friction factor

FNFUAN

Input, controls when annular fuel flow in molten pin cavity is assumed

FNMECA

Fraction of node width of radial node on cavity boundaries which melts in per PINACLE time step

FNMELT

Input, controls location of cavity boundary

FNPOE

Relative power level

FUELMS

Initial fuel mass in radial fuel-pin node

kg

FUMASS

Initial total fuel mass in an axial fuel node

kg

FUMS

Current fuel mass in the radial fuel pin node on the cavity boundary

kg

g

Gravity

m/s2

GAMSS

Input, fraction of power going into direct heating of structure

GAMTNC

Input, fraction of power going into direct heating of coolant

GAMTNE

Input, fraction of power going in to direct heating of cladding

h

Heat-transfer coefficient

J/(m2·s·K)

H

Heat-transfer coefficient times heat-transfer area

J/(s·K)

I

Axial node index in coolant channel

IDIFF

Offset between pin and channel grid. The first pin node is at the same elevation as channel node IDIFF + 1

k

Conductivity

J(m·s·K)

K

Axial index in the pin

KKMX

Uppermost node in the molten pin cavity

KZPIN

Coolant channel zone which contains the fuel pins

KK1

Lowermost node in the molten pin cavity

L

Length

m

NRPI

Number of pins per subassembly

NT

Number of radial fuel pin nodes

Nu

Nusselt number

P

Pressure

Pa

PORFR

Porosity fraction

POW

Input, power in highest rated axial fuel pin node

W

POWCOF

Exponent in the exponential function which gives the power history during a neutron’s time step

Pr

Prandtl number

PSHAPE

Input, axial pin power shape

PSHAPR

Input, radial power shape in a pin

Q

Fission heat source

r

Radius

W/kg

R

Gas constant or radius

J/(kg·K)

RETFG2

Total fission gas mass in the radial fuel pin node at the cavity boundary before it began melting into the cavity

kg

Re

Reynold’s number

RGAS

Input, gas constant for fission gas

J(kg·K)

S

Mass sink or source

kg/s

S’

Mass sink or source per unit of generalized smear volume

kg/(m·s)

St

Stanton number

t

Time

S

T

Temperature

K

u

Velocity

m/s

VIFG

Input, viscosity of fission gas

kg/(m·s)

VIFULQ

Input, viscosity of liquid fuel

kg/(m·s)

VOLUME

Volume

m3

z

Axial coordinate

m