@@ -333,124 +333,124 @@ var NAVTREE =
333333 ] ] ,
334334 [ "Example Cases" , "examples.html" , [
335335 [ "Example Cases" , "examples.html#autotoc_md215" , [
336- [ "Viscous Shock Tube (2D)" , "examples.html#autotoc_md216" , null ] ,
337- [ "Backward Facing Step (2D)" , "examples.html#autotoc_md219" , [
338- [ "Final Condition (Density)" , "examples.html#autotoc_md220" , null ]
336+ [ "2D IBM-Walled Power-Law Poiseuille Channel" , "examples.html#autotoc_md216" , [
337+ [ "Geometry and parameters" , "examples.html#autotoc_md217" , null ] ,
338+ [ "Analytic solution" , "examples.html#autotoc_md218" , null ] ,
339+ [ "How to run" , "examples.html#autotoc_md219" , null ] ,
340+ [ "Validation results" , "examples.html#autotoc_md220" , null ] ,
341+ [ "References" , "examples.html#autotoc_md221" , null ]
339342 ] ] ,
340- [ "Lax shock tube problem (1D)" , "examples.html#autotoc_md221" , [
341- [ "Initial Condition" , "examples.html#autotoc_md222" , null ] ,
342- [ "Result" , "examples.html#autotoc_md223" , null ]
343+ [ "Rayleigh-Taylor Instability (3D)" , "examples.html#autotoc_md222" , [
344+ [ "Final Condition and Linear Theory" , "examples.html#autotoc_md223" , null ]
343345 ] ] ,
344- [ "1D Multi-Component Reactive Shock Tube " , "examples.html#autotoc_md224" , [
346+ [ "Titarev-Toro problem (1D) " , "examples.html#autotoc_md224" , [
345347 [ "Initial Condition" , "examples.html#autotoc_md225" , null ] ,
346- [ "Results " , "examples.html#autotoc_md226" , null ]
348+ [ "Result " , "examples.html#autotoc_md226" , null ]
347349 ] ] ,
348- [ "Lid-Driven Cavity Problem (2D)" , "examples.html#autotoc_md227" , [
349- [ "Final Condition" , "examples.html#autotoc_md228" , null ] ,
350- [ "Centerline Velocities" , "examples.html#autotoc_md229" , null ]
350+ [ "2D Power-Law (Shear-Thinning) Poiseuille Channel" , "examples.html#autotoc_md227" , [
351+ [ "Regime and parameters" , "examples.html#autotoc_md228" , null ] ,
352+ [ "Governing physics and analytic solution" , "examples.html#autotoc_md229" , null ] ,
353+ [ "How to run" , "examples.html#autotoc_md230" , null ] ,
354+ [ "Validation result" , "examples.html#autotoc_md231" , null ] ,
355+ [ "References" , "examples.html#autotoc_md232" , null ]
351356 ] ] ,
352- [ "2D Riemann Test (2D)" , "examples.html#autotoc_md230" , [
353- [ "Density Initial and Final Conditions" , "examples.html#autotoc_md231" , null ]
357+ [ "Viscous Shock Tube (2D)" , "examples.html#autotoc_md233" , null ] ,
358+ [ "IBM Bow Shock (3D)" , "examples.html#autotoc_md236" , [
359+ [ "Final Condition" , "examples.html#autotoc_md237" , null ]
354360 ] ] ,
355- [ "IBM Bow Shock (3D)" , "examples.html#autotoc_md232" , [
356- [ "Final Condition" , "examples.html#autotoc_md233" , null ]
361+ [ "Richtmyer-Meshkov Instability (2D)" , "examples.html#autotoc_md238" , null ] ,
362+ [ "Perfectly Stirred Reactor" , "examples.html#autotoc_md241" , [
363+ [ "Validation" , "examples.html#autotoc_md242" , null ]
357364 ] ] ,
358- [ "2D Power-Law (Shear-Thickening) Poiseuille Channel" , "examples.html#autotoc_md234" , [
359- [ "Regime and parameters" , "examples.html#autotoc_md235" , null ] ,
360- [ "Governing physics and analytic solution" , "examples.html#autotoc_md236" , null ] ,
361- [ "How to run" , "examples.html#autotoc_md237" , null ] ,
362- [ "Validation result" , "examples.html#autotoc_md238" , null ] ,
363- [ "References" , "examples.html#autotoc_md239" , null ]
365+ [ "Scaling and Performance test" , "examples.html#autotoc_md243" , [
366+ [ "Weak Scaling" , "examples.html#autotoc_md244" , null ] ,
367+ [ "Strong Scaling" , "examples.html#autotoc_md245" , null ] ,
368+ [ "Example" , "examples.html#autotoc_md246" , null ]
364369 ] ] ,
365- [ "1D Multi-Component Inert Shock Tube" , "examples.html#autotoc_md240 " , [
366- [ "Initial Condition" , "examples.html#autotoc_md241 " , null ] ,
367- [ "Results" , "examples.html#autotoc_md242 " , null ]
370+ [ "1D Multi-Component Inert Shock Tube" , "examples.html#autotoc_md247 " , [
371+ [ "Initial Condition" , "examples.html#autotoc_md248 " , null ] ,
372+ [ "Results" , "examples.html#autotoc_md249 " , null ]
368373 ] ] ,
369- [ "Rayleigh-Taylor Instability (3D )" , "examples.html#autotoc_md243 " , [
370- [ "Final Condition and Linear Theory " , "examples.html#autotoc_md244 " , null ]
374+ [ "Forward Facing Step (2D )" , "examples.html#autotoc_md250 " , [
375+ [ "Final Condition (Density) " , "examples.html#autotoc_md251 " , null ]
371376 ] ] ,
372- [ "Taylor-Green Vortex (3D)" , "examples.html#autotoc_md245" , [
373- [ "Final Condition" , "examples.html#autotoc_md246" , null ]
377+ [ "Lid-Driven Cavity Problem (2D)" , "examples.html#autotoc_md252" , [
378+ [ "Final Condition" , "examples.html#autotoc_md253" , null ] ,
379+ [ "Centerline Velocities" , "examples.html#autotoc_md254" , null ]
374380 ] ] ,
375- [ "Perfectly Stirred Reactor " , "examples.html#autotoc_md247 " , [
376- [ "Validation " , "examples.html#autotoc_md248 " , null ]
381+ [ "Gas Jet (2D) " , "examples.html#autotoc_md255 " , [
382+ [ "Final Condition " , "examples.html#autotoc_md256 " , null ]
377383 ] ] ,
378- [ "2D Bingham (Yield-Stress) Poiseuille Channel" , "examples.html#autotoc_md249" , [
379- [ "Regime and parameters" , "examples.html#autotoc_md250" , null ] ,
380- [ "Governing physics and analytic solution" , "examples.html#autotoc_md251" , null ] ,
381- [ "How to run" , "examples.html#autotoc_md252" , null ] ,
382- [ "Validation result" , "examples.html#autotoc_md253" , null ] ,
383- [ "References" , "examples.html#autotoc_md254" , null ]
384+ [ "2D Hardcodied IC Example" , "examples.html#autotoc_md257" , [
385+ [ "Initial Condition and Result" , "examples.html#autotoc_md258" , null ]
384386 ] ] ,
385- [ "Isentropic vortex problem (2D )" , "examples.html#autotoc_md255 " , [
386- [ "Density " , "examples.html#autotoc_md256 " , null ] ,
387- [ "Density Norms " , "examples.html#autotoc_md257 " , null ]
387+ [ "Lax shock tube problem (1D )" , "examples.html#autotoc_md259 " , [
388+ [ "Initial Condition " , "examples.html#autotoc_md260 " , null ] ,
389+ [ "Result " , "examples.html#autotoc_md261 " , null ]
388390 ] ] ,
389- [ "Rayleigh-Taylor Instability (2D)" , "examples.html#autotoc_md258" , [
390- [ "Final Condition and Linear Theory" , "examples.html#autotoc_md259" , null ]
391+ [ "Isentropic vortex problem (2D)" , "examples.html#autotoc_md262" , [
392+ [ "Density" , "examples.html#autotoc_md263" , null ] ,
393+ [ "Density Norms" , "examples.html#autotoc_md264" , null ]
391394 ] ] ,
392- [ "Titarev-Toro problem (1D)" , "examples.html#autotoc_md260" , [
393- [ "Initial Condition" , "examples.html#autotoc_md261" , null ] ,
394- [ "Result" , "examples.html#autotoc_md262" , null ]
395+ [ "Backward Facing Step (2D)" , "examples.html#autotoc_md265" , [
396+ [ "Final Condition (Density)" , "examples.html#autotoc_md266" , null ]
395397 ] ] ,
396- [ "2D Triple Point (2D)" , "examples.html#autotoc_md263" , [
397- [ "Numerical Schlieren at Final Time" , "examples.html#autotoc_md264" , null ]
398+ [ "2D Shear-Thinning Lid-Driven Cavity" , "examples.html#autotoc_md267" , [
399+ [ "Regime and parameters" , "examples.html#autotoc_md268" , null ] ,
400+ [ "Governing physics" , "examples.html#autotoc_md269" , null ] ,
401+ [ "How to run" , "examples.html#autotoc_md270" , null ] ,
402+ [ "References" , "examples.html#autotoc_md271" , null ]
398403 ] ] ,
399- [ "2D Shear-Thinning Lid-Driven Cavity" , "examples.html#autotoc_md265" , [
400- [ "Regime and parameters" , "examples.html#autotoc_md266" , null ] ,
401- [ "Governing physics" , "examples.html#autotoc_md267" , null ] ,
402- [ "How to run" , "examples.html#autotoc_md268" , null ] ,
403- [ "References" , "examples.html#autotoc_md269" , null ]
404+ [ "2D General Herschel-Bulkley Poiseuille Channel" , "examples.html#autotoc_md272" , [
405+ [ "Regime and parameters" , "examples.html#autotoc_md273" , null ] ,
406+ [ "Governing physics and analytic solution" , "examples.html#autotoc_md274" , null ] ,
407+ [ "How to run" , "examples.html#autotoc_md275" , null ] ,
408+ [ "Validation result" , "examples.html#autotoc_md276" , null ] ,
409+ [ "References" , "examples.html#autotoc_md277" , null ]
404410 ] ] ,
405- [ "2D Power-Law (Shear-Thinning) Poiseuille Channel" , "examples.html#autotoc_md270" , [
406- [ "Regime and parameters" , "examples.html#autotoc_md271" , null ] ,
407- [ "Governing physics and analytic solution" , "examples.html#autotoc_md272" , null ] ,
408- [ "How to run" , "examples.html#autotoc_md273" , null ] ,
409- [ "Validation result" , "examples.html#autotoc_md274" , null ] ,
410- [ "References" , "examples.html#autotoc_md275" , null ]
411+ [ "2D Riemann Test (2D)" , "examples.html#autotoc_md278" , [
412+ [ "Density Initial and Final Conditions" , "examples.html#autotoc_md279" , null ]
411413 ] ] ,
412- [ "2D Hardcodied IC Example" , "examples.html#autotoc_md276" , [
413- [ "Initial Condition and Result" , "examples.html#autotoc_md277" , null ]
414+ [ "Kelvin-Helmholtz Instability (2D)" , "examples.html#autotoc_md280" , null ] ,
415+ [ "Taylor-Green Vortex (3D)" , "examples.html#autotoc_md283" , [
416+ [ "Final Condition" , "examples.html#autotoc_md284" , null ]
414417 ] ] ,
415- [ "3D Turbulent Mixing layer (3D )" , "examples.html#autotoc_md278 " , [
416- [ "Liutex visualization at transitional state " , "examples.html#autotoc_md279 " , null ]
418+ [ "2D Triple Point (2D )" , "examples.html#autotoc_md285 " , [
419+ [ "Numerical Schlieren at Final Time " , "examples.html#autotoc_md286 " , null ]
417420 ] ] ,
418- [ "Scaling and Performance test" , "examples.html#autotoc_md280" , [
419- [ "Weak Scaling" , "examples.html#autotoc_md281" , null ] ,
420- [ "Strong Scaling" , "examples.html#autotoc_md282" , null ] ,
421- [ "Example" , "examples.html#autotoc_md283" , null ]
421+ [ "2D IBM CFL dt (2D)" , "examples.html#autotoc_md287" , [
422+ [ "Result" , "examples.html#autotoc_md288" , null ]
422423 ] ] ,
423- [ "2D IBM CFL dt (2D)" , "examples.html#autotoc_md284" , [
424- [ "Result" , "examples.html#autotoc_md285" , null ]
425- ] ] ,
426- [ "Kelvin-Helmholtz Instability (2D)" , "examples.html#autotoc_md286" , null ] ,
427- [ "Shock Droplet (2D)" , "examples.html#autotoc_md289" , [
424+ [ "1D Multi-Component Reactive Shock Tube" , "examples.html#autotoc_md289" , [
428425 [ "Initial Condition" , "examples.html#autotoc_md290" , null ] ,
429- [ "Result" , "examples.html#autotoc_md291" , null ]
426+ [ "Results" , "examples.html#autotoc_md291" , null ]
427+ ] ] ,
428+ [ "Rayleigh-Taylor Instability (2D)" , "examples.html#autotoc_md292" , [
429+ [ "Final Condition and Linear Theory" , "examples.html#autotoc_md293" , null ]
430430 ] ] ,
431- [ "2D General Herschel-Bulkley Poiseuille Channel" , "examples.html#autotoc_md292" , [
432- [ "Regime and parameters" , "examples.html#autotoc_md293" , null ] ,
433- [ "Governing physics and analytic solution" , "examples.html#autotoc_md294" , null ] ,
434- [ "How to run" , "examples.html#autotoc_md295" , null ] ,
435- [ "Validation result" , "examples.html#autotoc_md296" , null ] ,
436- [ "References" , "examples.html#autotoc_md297" , null ]
431+ [ "Shock Droplet (2D)" , "examples.html#autotoc_md294" , [
432+ [ "Initial Condition" , "examples.html#autotoc_md295" , null ] ,
433+ [ "Result" , "examples.html#autotoc_md296" , null ]
437434 ] ] ,
438- [ "Gas Jet (2D )" , "examples.html#autotoc_md298 " , [
439- [ "Final Condition " , "examples.html#autotoc_md299 " , null ]
435+ [ "3D Turbulent Mixing layer (3D )" , "examples.html#autotoc_md297 " , [
436+ [ "Liutex visualization at transitional state " , "examples.html#autotoc_md298 " , null ]
440437 ] ] ,
441- [ "Richtmyer-Meshkov Instability (2D)" , "examples.html#autotoc_md300" , null ] ,
442- [ "Shu-Osher problem (1D)" , "examples.html#autotoc_md303" , [
443- [ "Initial Condition" , "examples.html#autotoc_md304" , null ] ,
444- [ "Result" , "examples.html#autotoc_md305" , null ]
438+ [ "2D Bingham (Yield-Stress) Poiseuille Channel" , "examples.html#autotoc_md299" , [
439+ [ "Regime and parameters" , "examples.html#autotoc_md300" , null ] ,
440+ [ "Governing physics and analytic solution" , "examples.html#autotoc_md301" , null ] ,
441+ [ "How to run" , "examples.html#autotoc_md302" , null ] ,
442+ [ "Validation result" , "examples.html#autotoc_md303" , null ] ,
443+ [ "References" , "examples.html#autotoc_md304" , null ]
445444 ] ] ,
446- [ "Forward Facing Step (2D)" , "examples.html#autotoc_md306" , [
447- [ "Final Condition (Density)" , "examples.html#autotoc_md307" , null ]
445+ [ "Shu-Osher problem (1D)" , "examples.html#autotoc_md305" , [
446+ [ "Initial Condition" , "examples.html#autotoc_md306" , null ] ,
447+ [ "Result" , "examples.html#autotoc_md307" , null ]
448448 ] ] ,
449- [ "2D IBM-Walled Power-Law Poiseuille Channel" , "examples.html#autotoc_md308" , [
450- [ "Geometry and parameters" , "examples.html#autotoc_md309" , null ] ,
451- [ "Analytic solution" , "examples.html#autotoc_md310" , null ] ,
449+ [ "2D Power-Law (Shear-Thickening) Poiseuille Channel" , "examples.html#autotoc_md308" , [
450+ [ "Regime and parameters" , "examples.html#autotoc_md309" , null ] ,
451+ [ "Governing physics and analytic solution" , "examples.html#autotoc_md310" , null ] ,
452452 [ "How to run" , "examples.html#autotoc_md311" , null ] ,
453- [ "Validation results " , "examples.html#autotoc_md312" , null ] ,
453+ [ "Validation result " , "examples.html#autotoc_md312" , null ] ,
454454 [ "References" , "examples.html#autotoc_md313" , null ]
455455 ] ]
456456 ] ]
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