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Searched refs:VELOCITY (Results 1 – 25 of 739) sorted by relevance

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/dports/math/mdal/MDAL-release-0.9.0/tests/data/flo2d/BarnHDF5/
H A DBASE.OUT61VELOCITY 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 …
73VELOCITY 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.03 …
85VELOCITY 0.58 0.33 0.30 0.10 0.00 0.00 0.00 0.00 …
97VELOCITY 0.00 0.00 0.00 0.29 0.44 0.31 0.68 0.72 …
109VELOCITY 0.00 0.00 0.00 0.00 0.00 0.00 0.00 0.00 …
121VELOCITY 0.61 0.86 1.10 0.88 0.34 0.00 0.00 0.00 …
133VELOCITY 0.00 0.00 0.00 0.00 0.00 0.30 0.81 1.14 …
145VELOCITY 0.02 0.00 0.00 0.00 0.01 0.01 0.00 0.00 …
157VELOCITY 0.01 0.20 0.86 1.11 1.26 0.00 0.00 0.00 …
169VELOCITY 0.83 1.10 0.01 0.00 0.00 0.00 0.00 0.61 …
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H A DVELTIMEST.OUT3 NODE MAXIMUM VELOCITY DEPTH AT MAX. VELOCITY TIME OF OCCURRENCE
H A DVELTIMEFP.OUT3 NODE MAXIMUM VELOCITY DEPTH AT MAX. VELOCITY TIME OF OCCURRENCE
/dports/science/lammps/lammps-stable_29Sep2021/lib/atc/
H A DATC_CouplingMomentum.cpp60 fieldSizes_[DISPLACEMENT] = fieldSizes_[VELOCITY]; in ATC_CouplingMomentum()
113 intrinsicMask_(VELOCITY,i) = fieldMask_(VELOCITY,i); in initialize()
227 foundMatch = timeIntegrators_[VELOCITY]->modify(narg-argIndex,&arg[argIndex]); in modify()
335 DENS_MAT & velocity(nodalAtomicFields_[VELOCITY].set_quantity()); in output()
336 DENS_MAT & rhs(rhs_[VELOCITY].set_quantity()); in output()
371 const MATRIX & M = massMats_[VELOCITY].quantity(); in kinetic_energy()
372 const DENS_MAT & velocity(fields_[VELOCITY].quantity()); in kinetic_energy()
381 massMask(0) = VELOCITY; in kinetic_energy()
385 const MATRIX & Ma = Ma_[VELOCITY].quantity(); in kinetic_energy()
402 mask(0) = VELOCITY; in potential_energy()
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H A DATC_CouplingMomentumEnergy.cpp60 fieldSizes_[DISPLACEMENT] = fieldSizes_[VELOCITY]; in ATC_CouplingMomentumEnergy()
112 intrinsicMask_(VELOCITY,i) = fieldMask_(VELOCITY,i); in initialize()
309 …if (atomicRegulator_->coupling_mode(VELOCITY)==AtomicRegulator::FLUX || atomicRegulator_->coupling… in init_filter()
311 … atomicRegulator_->reset_lambda_contribution(nodalAtomicFieldsRoc_[VELOCITY].quantity(),VELOCITY); in init_filter()
342 const MATRIX & M = massMats_[VELOCITY].quantity(); in kinetic_energy()
344 const DENS_MAT & velocity(fields_[VELOCITY].quantity()); in kinetic_energy()
361 mask(0) = VELOCITY; in potential_energy()
369 double potentialEnergy = energy[VELOCITY].col_sum(); in potential_energy()
457 DENS_MAT & velocity(nodalAtomicFields_[VELOCITY].set_quantity()); in output()
458 DENS_MAT & rhs(rhs_[VELOCITY].set_quantity()); in output()
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H A DElasticTimeIntegrator.cpp153 velocity_(atc_->field(VELOCITY)), in MomentumIntegrationMethod()
154 acceleration_(atc_->field_roc(VELOCITY)), in MomentumIntegrationMethod()
156 velocityRhs_(atc_->field_rhs(VELOCITY)), in MomentumIntegrationMethod()
275 VELOCITY); in post_final_integrate2()
368 VELOCITY); in post_final_integrate2()
514 VELOCITY); in post_initial_integrate1()
525 VELOCITY); in post_initial_integrate1()
531 VELOCITY); in post_initial_integrate1()
565 VELOCITY); in post_final_integrate2()
606 VELOCITY); in compute_old_time_data()
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H A DKinetostat.cpp216 if (md_fixed_nodes(VELOCITY)) { in construct_methods()
232 if (md_flux_nodes(VELOCITY)) { in construct_methods()
1103 fieldMask_(VELOCITY,FLUX) = true; in StressFlux()
1308 rhs[VELOCITY] += nodalAtomicLambdaForce_->quantity() + boundaryFlux_[VELOCITY].quantity(); in add_to_rhs()
1364 fieldMask_(VELOCITY,FLUX) = false; in StressFluxGhost()
1387 boundaryFlux_[VELOCITY] = 0.; in compute_boundary_flux()
1511 rhs[VELOCITY] += lambdaForceFiltered_->quantity() + boundaryFlux_[VELOCITY].quantity(); in add_to_rhs()
1541 velocity_(atc_->field(VELOCITY)), in KinetostatGlcFs()
1803 fieldMask_(VELOCITY,FLUX) = true; in KinetostatFlux()
2039 fieldMask_(VELOCITY,FLUX) = false; in KinetostatFluxGhost()
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H A DKinetoThermostat.cpp49 if (field==VELOCITY) { in reset_lambda_contribution()
85 …:TimeIntegrationType myMomentumIntegrationType = (atc_->time_integrator(VELOCITY))->time_integrati… in construct_methods()
153 velocity_(atc_->field(VELOCITY)), in VelocityRescaleCombined()
176 rhs = ((atc_->mass_mat_md(VELOCITY)).quantity())*(velocity_.quantity()); in set_kinetostat_rhs()
230 nodalVelocities_(atc_->field(VELOCITY)), in KinetoThermostatRescale()
458 velocity_(atc_->field(VELOCITY)), in KinetoThermostatGlcFs()
576 atc_->apply_inverse_mass_matrix(deltaMomentum_,VELOCITY); in apply_pre_predictor()
620 atc_->apply_inverse_mass_matrix(deltaMomentum_,VELOCITY); in apply_pre_corrector()
669 atc_->apply_inverse_mass_matrix(deltaMomentum_,VELOCITY); in apply_post_corrector()
H A DFieldManager.cpp222 if (name == "default") { name = field_to_string(VELOCITY); } in velocity()
232 …DENS_MAN * restricted = restricted_atom_quantity(VELOCITY,field_to_restriction_name(VELOCITY),atom… in velocity()
233 v = new AtfShapeFunctionMdProjection(atc_,restricted,VELOCITY); in velocity()
242 interscaleManager_.add_dense_matrix(v,field_to_string(VELOCITY)); in velocity()
271 u = new AtfShapeFunctionMdProjection(atc_,restricted,VELOCITY); in displacement()
450 PAQ * vbar = per_atom_quantity(field_to_prolongation_name(VELOCITY)); in atomic_twice_fluctuating_kinetic_energy()
478 PAQ * atomMeanVelocity = per_atom_quantity(field_to_prolongation_name(VELOCITY)); in atomic_fluctuating_velocity()
/dports/science/liggghts/LIGGGHTS-PUBLIC-3.8.0-26-g6e873439/lib/atc/
H A DATC_CouplingMomentum.cpp60 fieldSizes_[DISPLACEMENT] = fieldSizes_[VELOCITY]; in ATC_CouplingMomentum()
113 intrinsicMask_(VELOCITY,i) = fieldMask_(VELOCITY,i); in initialize()
227 foundMatch = timeIntegrators_[VELOCITY]->modify(narg-argIndex,&arg[argIndex]); in modify()
335 DENS_MAT & velocity(nodalAtomicFields_[VELOCITY].set_quantity()); in output()
336 DENS_MAT & rhs(rhs_[VELOCITY].set_quantity()); in output()
371 const MATRIX & M = massMats_[VELOCITY].quantity(); in kinetic_energy()
372 const DENS_MAT & velocity(fields_[VELOCITY].quantity()); in kinetic_energy()
381 massMask(0) = VELOCITY; in kinetic_energy()
385 const MATRIX & Ma = Ma_[VELOCITY].quantity(); in kinetic_energy()
402 mask(0) = VELOCITY; in potential_energy()
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H A DATC_CouplingMomentumEnergy.cpp59 fieldSizes_[DISPLACEMENT] = fieldSizes_[VELOCITY]; in ATC_CouplingMomentumEnergy()
111 intrinsicMask_(VELOCITY,i) = fieldMask_(VELOCITY,i); in initialize()
305 …if (atomicRegulator_->coupling_mode(VELOCITY)==AtomicRegulator::FLUX || atomicRegulator_->coupling… in init_filter()
307 … atomicRegulator_->reset_lambda_contribution(nodalAtomicFieldsRoc_[VELOCITY].quantity(),VELOCITY); in init_filter()
340 const MATRIX & M = massMats_[VELOCITY].quantity(); in kinetic_energy()
342 const DENS_MAT & velocity(fields_[VELOCITY].quantity()); in kinetic_energy()
359 mask(0) = VELOCITY; in potential_energy()
367 double potentialEnergy = energy[VELOCITY].col_sum(); in potential_energy()
455 DENS_MAT & velocity(nodalAtomicFields_[VELOCITY].set_quantity()); in output()
456 DENS_MAT & rhs(rhs_[VELOCITY].set_quantity()); in output()
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H A DElasticTimeIntegrator.cpp153 velocity_(atc_->field(VELOCITY)), in MomentumIntegrationMethod()
154 acceleration_(atc_->field_roc(VELOCITY)), in MomentumIntegrationMethod()
156 velocityRhs_(atc_->field_rhs(VELOCITY)), in MomentumIntegrationMethod()
275 VELOCITY); in post_final_integrate2()
368 VELOCITY); in post_final_integrate2()
514 VELOCITY); in post_initial_integrate1()
525 VELOCITY); in post_initial_integrate1()
531 VELOCITY); in post_initial_integrate1()
565 VELOCITY); in post_final_integrate2()
606 VELOCITY); in compute_old_time_data()
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H A DKinetostat.cpp725 nodalVelocities_(atc_->field(VELOCITY)) in VelocityGlc()
1035 nodalForce_(atc_->field_rhs(VELOCITY)), in StressFlux()
1041 fieldMask_(VELOCITY,FLUX) = true; in StressFlux()
1246 rhs[VELOCITY] += nodalAtomicLambdaForce_->quantity() + boundaryFlux_[VELOCITY].quantity(); in add_to_rhs()
1302 fieldMask_(VELOCITY,FLUX) = false; in StressFluxGhost()
1325 boundaryFlux_[VELOCITY] = 0.; in compute_boundary_flux()
1449 rhs[VELOCITY] += lambdaForceFiltered_->quantity() + boundaryFlux_[VELOCITY].quantity(); in add_to_rhs()
1479 velocity_(atc_->field(VELOCITY)) in KinetostatGlcFs()
1697 fieldMask_(VELOCITY,FLUX) = true; in KinetostatFlux()
1926 fieldMask_(VELOCITY,FLUX) = false; in KinetostatFluxGhost()
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H A DFieldManager.cpp222 if (name == "default") { name = field_to_string(VELOCITY); } in velocity()
232 …DENS_MAN * restricted = restricted_atom_quantity(VELOCITY,field_to_restriction_name(VELOCITY),atom… in velocity()
233 v = new AtfShapeFunctionMdProjection(atc_,restricted,VELOCITY); in velocity()
242 interscaleManager_.add_dense_matrix(v,field_to_string(VELOCITY)); in velocity()
271 u = new AtfShapeFunctionMdProjection(atc_,restricted,VELOCITY); in displacement()
450 PAQ * vbar = per_atom_quantity(field_to_prolongation_name(VELOCITY)); in atomic_twice_fluctuating_kinetic_energy()
478 PAQ * atomMeanVelocity = per_atom_quantity(field_to_prolongation_name(VELOCITY)); in atomic_fluctuating_velocity()
/dports/math/mdal/MDAL-release-0.9.0/tests/data/flo2d/channel/
H A DHYCHAN.OUT11 …TIME ELEV. THALWEG DEPTH VELOCITY DISCHARGE FROUDE NO. FLOW AREA WETTED PERIME…
71 …TIME ELEV. THALWEG DEPTH VELOCITY DISCHARGE FROUDE NO. FLOW AREA WETTED PERIME…
131 …TIME ELEV. THALWEG DEPTH VELOCITY DISCHARGE FROUDE NO. FLOW AREA WETTED PERIME…
191 …TIME ELEV. THALWEG DEPTH VELOCITY DISCHARGE FROUDE NO. FLOW AREA WETTED PERIME…
251 …TIME ELEV. THALWEG DEPTH VELOCITY DISCHARGE FROUDE NO. FLOW AREA WETTED PERIME…
311 …TIME ELEV. THALWEG DEPTH VELOCITY DISCHARGE FROUDE NO. FLOW AREA WETTED PERIME…
371 …TIME ELEV. THALWEG DEPTH VELOCITY DISCHARGE FROUDE NO. FLOW AREA WETTED PERIME…
431 …TIME ELEV. THALWEG DEPTH VELOCITY DISCHARGE FROUDE NO. FLOW AREA WETTED PERIME…
491 …TIME ELEV. THALWEG DEPTH VELOCITY DISCHARGE FROUDE NO. FLOW AREA WETTED PERIME…
551 …TIME ELEV. THALWEG DEPTH VELOCITY DISCHARGE FROUDE NO. FLOW AREA WETTED PERIME…
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/dports/science/elmerfem/elmerfem-release-9.0/elmerice/IceSheet/Greenland/DATA/
H A DGET_DATA.sh62 VELOCITY=greenland_vel_mosaic250_v1.nc
63 if [ ! -f "$VELOCITY" ]; then
65 echo "$VELOCITY not found"
67 sh scripts/VELOCITY_TO_NETCDF.sh $VELOCITY_X $VELOCITY_Y $VELOCITY
69 FILE_IS_HERE $VELOCITY
/dports/net-mgmt/netdisco-mibs/netdisco-mibs-4.010/EXTRAS/indexes/cache/
H A Dnet-snmp20 VELOCITY-MIB VELOCITY-MIB.txt
21 VELOCITY-TYPES VELOCITY-TYPES.txt
/dports/devel/raylib/raylib-3.7.0/examples/physics/
H A Dphysics_movement.c19 #define VELOCITY 0.5f macro
75 if (IsKeyDown(KEY_RIGHT)) body->velocity.x = VELOCITY; in main()
76 else if (IsKeyDown(KEY_LEFT)) body->velocity.x = -VELOCITY; in main()
79 if (IsKeyDown(KEY_UP) && body->isGrounded) body->velocity.y = -VELOCITY*4; in main()
/dports/audio/rosegarden/rosegarden-21.06.1/src/commands/notation/
H A DInterpretCommand.cpp152 <Int>(VELOCITY, velocity); in applyTextDynamics()
274 <Int>(VELOCITY, velocityToApply); in applyHairpins()
291 !(*itr)->has(VELOCITY)) { in applyHairpins()
302 <Int>(VELOCITY, startingVelocity); in applyHairpins()
359 <Int>(VELOCITY, velocity); in applyHairpins()
390 <Int>(VELOCITY, velocity); in stressBeats()
397 <Int>(VELOCITY, velocity); in stressBeats()
552 <Int>(VELOCITY, velocity); in articulate()
559 <Int>(VELOCITY, velocity); in articulate()
/dports/www/firefox/firefox-99.0/third_party/rust/midir/examples/
H A Dtest_play.rs50 const VELOCITY: u8 = 0x64; in run() const
52 let _ = conn_out.send(&[NOTE_ON_MSG, note, VELOCITY]); in run()
54 let _ = conn_out.send(&[NOTE_OFF_MSG, note, VELOCITY]); in run()
/dports/science/cp2k/cp2k-2e995eec7fd208c8a72d9544807bd8b8ba8cd1cc/tests/QS/regtest-mp2-grad/
H A DCH_dyn_screen.inp78 &VELOCITY
81 &END VELOCITY
85 # &END VELOCITY
/dports/science/cp2k-data/cp2k-7.1.0/tests/QS/regtest-mp2-grad/
H A DCH_dyn_screen.inp78 &VELOCITY
81 &END VELOCITY
85 # &END VELOCITY
/dports/audio/rosegarden/rosegarden-21.06.1/src/commands/edit/
H A DChangeVelocityCommand.cpp45 <Int>(VELOCITY, velocity); in modifySegment()
59 (*i)->set<Int>(VELOCITY, velocity); in modifySegment()
/dports/audio/rosegarden/rosegarden-21.06.1/src/commands/matrix/
H A DMatrixInsertionCommand.cpp56 if (!m_event->has(VELOCITY)) { in modifySegment()
58 <Int>(VELOCITY, 100); in modifySegment()
/dports/graphics/dataplot/dataplot-2c1b27601a3b7523449de612613eadeead9a8f70/lib/data/
H A DBOXWELD.DAT1 FIT OF INERTIAL WELD BREAKING STRENGTH AS A FUNCTION OF VELOCITY
9 2. X = VELOCITY (IN 100 FT/MIN)

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