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      <title>Solution Control</title>
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      <div class="title_topic3" id="xps10_pagetitle">Solution Control </div>
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      <div class="title_division">Buckling Analysis </div>
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                  <p class="para_td">EIGB </p>
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                  <p class="para_td">Defines data needed to perform buckling analysis. </p>
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                  <p class="para_td">EIGRL </p>
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                  <p class="para_td">Defines data needed to perform real eigenvalue (vibration or buckling) analysis with the Lanczos method. </p>
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      </table><br><div class="title_division">Eigenvalue Analysis </div>
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                  <p class="para_td">EIGR </p>
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                  <p class="para_td">Defines data needed to perform real eigenvalue analysis. </p>
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                  <p class="para_td">EIGC </p>
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                  <p class="para_td">Defines data needed to perform complex eigenvalue analysis. </p>
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                  <p class="para_td">EIGRL </p>
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                  <p class="para_td">Defines data needed to perform real eigenvalue (vibration or buckling) analysis with the Lanczos method. </p>
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                  <p class="para_td">EIGP </p>
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                  <p class="para_td">Defines poles that are used in complex eigenvalue extraction by the Determinant method. </p>
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      </table><br><div class="title_division">Cyclic Symmetry </div>
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                  <p class="para_td">CYSYM </p>
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                  <p class="para_td">Defines parameters for cyclic symmetry analysis. </p>
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      </table><br><div class="title_division">Frequency Response </div>
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                  <p class="para_td">FREQ </p>
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                  <p class="para_td">Defines a set of frequencies to be used in the solution of frequency response problems. </p>
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                  <p class="para_td">FREQi </p>
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                  <p class="para_td">Defines a set of frequencies for problem solution. </p>
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                  <p class="para_td">TABDMP1 </p>
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                  <p class="para_td">Defines modal damping as a tabular function of natural frequency. </p>
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      </table><br><div class="title_division">Random Response </div>
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                  <p class="para_td">RANDPS </p>
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                  <p class="para_td">Defines load set power spectral density factors for use in random analysis. </p>
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                  <p class="para_td">RANDT1 </p>
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                  <p class="para_td">Defines time lag constants for use in random analysis autocorrelation function calculation. </p>
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                  <p class="para_td">TABRND1 </p>
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                  <p class="para_td">Defines power spectral density as a tabular function of frequency for use in random analysis.  This is referenced by the RANDPS entry. </p>
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      </table><br><div class="title_division">Transient Response </div>
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                  <p class="para_td">TIC </p>
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                  <p class="para_td">Defines values for the initial conditions of variables used in structural transient analysis. </p>
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                  <p class="para_td">TSTEP </p>
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                  <p class="para_td">Defines time step intervals at which a solution will be generated and output in transient analysis. </p>
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                  <p class="para_td">TSTEPNL </p>
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                  <p class="para_td">Defines parametric controls and data for nonlinear transient structural or heat transfer analysis.  TSTEPNL is intended for SOLs 129, 159, and 99. </p>
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      </table><br><div class="title_division">Nonlinear Static Analysis </div>
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                  <p class="para_td">ITER </p>
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                  <p class="para_td">Defines options for the iterative solver in SOLs 1, 8, 11, 66, 101, 106, 108, 111 and 153. </p>
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                  <p class="para_td">NLPARM </p>
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                  <p class="para_td">Defines a set of parameters for nonlinear static analysis iteration strategy. </p>
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                  <p class="para_td">NLPCI </p>
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                  <p class="para_td">Defines a set of parameters for the arc-length incremental solution strategies in nonlinear static analysis (SOL 106). </p>
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      </table><br><div class="title_division">Original Design Sensitivity Analysis (DSA) </div>
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                  <p class="para_td">DSCONS </p>
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                  <p class="para_td">Defines a design constraint in design sensitivity analysis (original DSA). </p>
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                  <p class="para_td">DVAR </p>
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                  <p class="para_td">Defines a design variable for design sensitivity analysis (original DSA). </p>
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                  <p class="para_td">DVSET </p>
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                  <p class="para_td">Defines a set of element properties that vary in a fixed relation to a design variable for design sensitivity analysis (original DSA). </p>
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      </table><br><div class="title_division">Optimization (SOL 200 Only) </div>
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                  <p class="para_td">BNDGRID </p>
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                  <p class="para_td">Specifies a list of grid point identification numbers on design boundaries or surfaces for shape optimization (SOL 200). </p>
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                  <p class="para_td">DCONADD </p>
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                  <p class="para_td">Defines the design constraints for a subcase as a union of DCONSTR entries. </p>
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                  <p class="para_td">DCONSTR </p>
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                  <p class="para_td">Defines design constraints. </p>
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                  <p class="para_td">DDVAL </p>
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                  <p class="para_td">Defines real, discrete design variable values for discrete variable optimization. </p>
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                  <p class="para_td">DEQATN </p>
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                  <p class="para_td">Defines a design variable for design optimization. </p>
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                  <p class="para_td">DESVAR </p>
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                  <p class="para_td">Defines a design variable for design optimization. </p>
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                  <p class="para_td">DLINK </p>
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                  <p class="para_td">Relates one design variable to one or more other design variables. </p>
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                  <p class="para_td">DOPTPRM </p>
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                  <p class="para_td">Overrides default values of parameters used in design optimization. </p>
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                  <p class="para_td">DRESP1 </p>
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                  <p class="para_td">Defines a set of structural responses that is used in the design either as constraints or as an objective. </p>
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                  <p class="para_td">DRESP2 </p>
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                  <p class="para_td">Defines equation responses that are used in the design, either as constraints or as an objective. </p>
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                  <p class="para_td">DSCREEN </p>
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                  <p class="para_td">Defines screening data for constraint deletion. </p>
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                  <p class="para_td">DTABLE </p>
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                  <p class="para_td">Defines a table of real constants that are used in equations (see the DEQATN entry). </p>
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                  <p class="para_td">DVBSHAP </p>
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                  <p class="para_td">Associates a design variable identification number to a linear combination of boundary shape vectors from a particular auxiliary model. </p>
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                  <p class="para_td">DVCREL1 </p>
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                  <p class="para_td">Defines the relation between a connectivity property and design variables. </p>
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                  <p class="para_td">DVCREL2 </p>
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                  <p class="para_td">Defines the relation between a connectivity property and design variables with a user-supplied equation. </p>
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                  <p class="para_td">DVGEOM </p>
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                  <p class="para_td">Associates a design variable with a GMCURV or GMSURF geometry definition. </p>
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                  <p class="para_td">DVGRID </p>
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                  <p class="para_td">Defines the relationship between design variables and grid point locations. </p>
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                  <p class="para_td">DVMREL1 </p>
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                  <p class="para_td">Defines the relation between a material property and design variables. </p>
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                  <p class="para_td">DVMREL2 </p>
               </td>
               <td align="left" colspan="1" rowspan="1" valign="top">
                  <p class="para_td">Defines the relation between a material property and design variables with a user-supplied equation. </p>
               </td>
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                  <p class="para_td">DVPREL1 </p>
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                  <p class="para_td">Defines the relation between an analysis model property and design variables. </p>
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                  <p class="para_td">DVPREL2 </p>
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               <td align="left" colspan="1" rowspan="1" valign="top">
                  <p class="para_td">Defines the relation between an analysis model property and design variables with a user-supplied equation. </p>
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                  <p class="para_td">DVSHAP </p>
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                  <p class="para_td">Defines a shape basis vector by relating a design variable identification number (DVID) to columns of a displacement matrix. </p>
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                  <p class="para_td">MODTRAK </p>
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                  <p class="para_td">Specifies parameters for mode tracking in design optimization (SOL 200). </p>
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      </table><br><div class="title_division">Aerodynamic Matrix Generation </div>
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                  <p class="para_td">MKAERO1 </p>
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                  <p class="para_td">Provides a table of Mach numbers (m) and reduced frequencies (k) for aerodynamic matrix calculation. </p>
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                  <p class="para_td">MKAERO2 </p>
               </td>
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                  <p class="para_td">Provides a list of Mach numbers (m) and reduced frequencies (k) for aerodynamic matrix calculation. </p>
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      </table><br><div class="title_division">Aeroelastic Stability AnalysIs </div>
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                  <p class="para_td">FLFACT </p>
               </td>
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                  <p class="para_td">Used to specify density ratios, Mach numbers, reduced frequencies, and velocities for flutter analysis. </p>
               </td>
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                  <p class="para_td">FLUTTER </p>
               </td>
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                  <p class="para_td">Defines data needed to perform flutter analysis. </p>
               </td>
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                  <p class="para_td">DIVERG </p>
               </td>
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                  <p class="para_td">Defines Mach numbers (m) for a divergence analysis in SOLs 144 and 200. </p>
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      </table><br><div class="title_division">Aeroelastic Response Analysis </div>
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                  <p class="para_td">AEDW </p>
               </td>
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                  <p class="para_td">Defines a downwash vector associated with a particular control vector of the associated aerodynamic configuration (AECONFIG). From this downwash vector, a force vector on the aerodynamic grids will be defined for use in nonlinear static aeroelastic trim. </p>
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                  <p class="para_td">AEFORCE </p>
               </td>
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                  <p class="para_td">Defines a vector of absolute forces (it will <b class="uiTerm">not </b> be scaled by dynamic pressure) associated with a particular control vector. 
                  </p>
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                  <p class="para_td">AEPARM </p>
               </td>
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                  <p class="para_td">Defines a general aerodynamic trim variable degree of freedom (aerodynamic extra point). </p>
               </td>
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                  <p class="para_td">AEPRESS </p>
               </td>
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                  <p class="para_td">Defines a vector of pressure/unit dynamic pressure associated with a particular control vector. </p>
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                  <p class="para_td">GUST </p>
               </td>
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                  <p class="para_td">Defines a stationary vertical gust for use in aeroelastic response analysis. </p>
               </td>
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                  <p class="para_td">TABRNDG </p>
               </td>
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                  <p class="para_td">Defines the power spectral density (PSD) of a gust for aeroelastic response analysis. </p>
               </td>
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                  <p class="para_td">TRIM </p>
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                  <p class="para_td">Specifies constraints for aeroelastic trim variables. The SPLINE1 and SPLINE4 entries need to be here for the finite plate spline. </p>
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      </table><br><div class="title_division">Aerodynamic Parameters </div>
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            <col span="1" width="21.24*">
            <col span="1" width="78.76*">
         </colgroup>
         <tbody>
            <tr>
               <td align="left" colspan="1" rowspan="1" valign="top">
                  <p class="para_td">AERO </p>
               </td>
               <td align="left" colspan="1" rowspan="1" valign="top">
                  <p class="para_td">Gives basic aerodynamic parameters for unsteady aerodynamics. </p>
               </td>
            </tr>
            <tr>
               <td align="left" colspan="1" rowspan="1" valign="top">
                  <p class="para_td">AEROS </p>
               </td>
               <td align="left" colspan="1" rowspan="1" valign="top">
                  <p class="para_td">Defines basic parameters for static aeroelasticity. </p>
               </td>
            </tr>
         </tbody>
      </table><br><div class="title_division">p-element and Adaptivity Analysis </div>
      <table cellpadding="8" width="100%" align="center">
         <colgroup span="1">
            <col span="1" width="21.51*">
            <col span="1" width="78.49*">
         </colgroup>
         <tbody>
            <tr>
               <td align="left" colspan="1" rowspan="1" valign="top">
                  <p class="para_td">ADAPT </p>
               </td>
               <td align="left" colspan="1" rowspan="1" valign="top">
                  <p class="para_td">Defines controls for p-version adaptive analysis. </p>
               </td>
            </tr>
            <tr>
               <td align="left" colspan="1" rowspan="1" valign="top">
                  <p class="para_td">PSET </p>
               </td>
               <td align="left" colspan="1" rowspan="1" valign="top">
                  <p class="para_td">Describes polynomial order distribution and is selected by the ADAPT Case Control command. </p>
               </td>
            </tr>
            <tr>
               <td align="left" colspan="1" rowspan="1" valign="top">
                  <p class="para_td">PVAL </p>
               </td>
               <td align="left" colspan="1" rowspan="1" valign="top">
                  <p class="para_td">Describes polynomial order distribution and is selected by the ADAPT Bulk Data entry. </p>
               </td>
            </tr>
         </tbody>
      </table><br></body>
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