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By Ottaviano Bon, John Withers

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Contains proprietary and confidential information of ANSYS, Inc. and its subsidiaries and affiliates. 3. 0 EGR dp 1 varies c c (see ThermMat, shell131/132 only) - position not used - position not used Element nodal field gradients. This record contains the gradients at each corner node in the order X,Y,Z. Nodal order corresponds to the connectivity defined in the element description. If this is a coupled-field analysis, the data is stored in the following order (as available): fluid, thermal (TEMP), electric (VOLT), and magnetic (AZ).

13 Chapter 1: Format of Binary Data Files c c c c c DIX i 1 numdis Nodal constraint DOF. This index is calculated as N*32+DOF, where N is the node number and DOF is the DOF reference number. Values are in the same order as the DOF number reference table. c c c c DIS dp 1 4*numdis Nodal constraints. This record contains present and previous values (real and imaginary) of the nodal constraints at each DOF. c c c c c FIX i 1 numfor Nodal input force DOFs. This index is calculated as N*32+DOF, where N is the node number and DOF is the DOF reference number.

3. Results File Format c * NSL c c c c c c c c c c c c c c c dp 1 nnod*Sumdof The DOF solution for each node in the nodal coordinate system. The DOF order is the same as shown above in the DOF number reference table. The nodal order is the same order given above in the nodal equivalence table. 0**100 is used. Note 1: Sumdof = numdof + nfldof. Note 2: If, upon reading of this record, there is less than nnod*Sumdof items in the record, then only a selected set of nodes were output. Another record follows (integer, less than nnod long) which contains the list of nodes for which DOF solutions are available.

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A Description of the Grand Signour's Seraglio or The Turkish Emperours Court by Ottaviano Bon, John Withers


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