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Aspen Physical Property System - Physical Property Models

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(Other DIPPR equations may sometimes be used. See Pure Component<br />

Temperature-Dependent Properties for details.)<br />

Parameter Symbol Default MDS Lower Upper Units<br />

Name/Element<br />

Limit Limit<br />

MULDIP/1 C 1i — X — — VISCOSITY,<br />

TEMPERATURE ††<br />

MULDIP/2, ..., 5 C 2i, ..., C 5i 0 X — — TEMPERATURE ††<br />

MULDIP/6 C 6i 0 X — — TEMPERATURE<br />

MULDIP/7 C 7i 1000 X — — TEMPERATURE<br />

†† If any of C3i through C5i are non-zero, absolute temperature units are<br />

assumed for C3i through C5i. Otherwise, all coefficients are interpreted in user<br />

input temperature units. The temperature limits are always interpreted in<br />

user input units.<br />

PPDS<br />

The PPDS equation is:<br />

Linear extrapolation of viscosity versus T occurs for temperatures outside<br />

bounds.<br />

Parameter<br />

Name/Element<br />

3 Transport <strong>Property</strong> <strong>Models</strong> 249<br />

Symbol Default MDS Lower<br />

Limit<br />

Upper<br />

Limit<br />

MULPDS/1 C 1i — — — — —<br />

MULPDS/2 C 2i — — — —<br />

Units<br />

MULPDS/3 C 3i — — — TEMPERATURE<br />

MULPDS/4 C 4i — — — TEMPERATURE<br />

MULPDS/5 C 5i — — — — VISCOSITY<br />

MULPDS/6 C 6i — — — TEMPERATURE<br />

MULPDS/7 C 7i — — — TEMPERATURE<br />

NIST PPDS9 Equation<br />

This is the same as the PPDS equation above, but it uses parameter<br />

MULPPDS9. Note that the parameters are in a different order.<br />

Parameter Symbol Default MDS Lower Upper Units<br />

Name/Element<br />

Limit Limit<br />

MULPPDS9/1 C 5i — — — — Pa*S<br />

MULPPDS9/2 C 1i — — — —<br />

MULPPDS9/3 C 2i — — — TEMPERATURE<br />

MULPPDS9/4 C 3i — — — TEMPERATURE<br />

MULPPDS9/5 C 4i — — — — TEMPERATURE<br />

MULPPDS9/6 C 6i — — — TEMPERATURE<br />

MULPPDS9/7 C 7i — — — TEMPERATURE

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