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Aspen Physical Property System - Physical Property Models

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Parameter<br />

Name/Element<br />

3 Transport <strong>Property</strong> <strong>Models</strong> 255<br />

Symbol Default MDS Lower<br />

Limit<br />

Upper<br />

Limit<br />

Units<br />

MUVPDS/1 C 1i — — — — VISCOSITY<br />

MUVPDS/2 C 2i 0 — — — —<br />

MUVPDS/3 C 3i 0 — — — —<br />

MUVPDS/4 C 4i 0 — — — TEMPERATURE<br />

MUVPDS/5 C 5i 1000 — — — TEMPERATURE<br />

PPDS Kinetic Theory Vapor Viscosity<br />

The equation is:<br />

Parameter<br />

Name/Element<br />

Symbol Default MDS Lower<br />

Limit<br />

Upper<br />

Limit<br />

MW M i — — 1.0 5000.0 —<br />

Units<br />

MUVCEB/1 C 1i — — — — LENGTH<br />

MUVCEB/2 C 2i — — — — TEMPERATURE †<br />

MUVCEB/3 C 3i 0 — — — —<br />

MUVCEB/4 C 4i 0 — — — TEMPERATURE<br />

MUVCEB/5 C 5i 1000 — — — TEMPERATURE<br />

† Absolute temperature units are assumed for C2i . The temperature limits are<br />

always interpreted in user input units.<br />

IK-CAPE Vapor Viscosity<br />

The IK-CAPE vapor viscosity model includes both the Sutherland equation and<br />

the polynomial equation. For either equation, linear extrapolation of viscosity<br />

versus T occurs for temperatures outside bounds.<br />

Sutherland Equation<br />

Parameter<br />

Name/Element<br />

Symbol Default MDS Lower<br />

Limit<br />

Upper<br />

Limit<br />

Units<br />

MUVSUT/1 C 1i — X — — VISCOSITY<br />

MUVSUT/2 C 2i 0 X — — TEMPERATURE ††<br />

MUVSUT/3 C 3i 0 X — — TEMPERATURE

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