Media Summary: A column of initially-confined frictionless particles is released to form a wave of Step 2 for our new feature, a step by step validation ! This is a 14 million frictionless, spherical particles flow under their own weight between two chambers, separated by a slightly lifted cylinder ...

Chrono Granular Dam Break - Detailed Analysis & Overview

A column of initially-confined frictionless particles is released to form a wave of Step 2 for our new feature, a step by step validation ! This is a 14 million frictionless, spherical particles flow under their own weight between two chambers, separated by a slightly lifted cylinder ... 40 million spherical particles in a sinusoidally-driven wave tank. Simulated using Initial tank volume 1x0.4x0.7 m³. Inter-particle distance 12.5 mm (default value). Number of fluid particles 140800. Initial tank volume 1x0.4x0.7 m³. Inter-particle distance 6.25 mm (half the default value). Number of fluid particles 1136640.

Tires are modeled with 8640 layered, orthotropic nonlinear shell elements. Terrain is composed of over 600k spherical rigid ...

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Chrono::Granular - Dam Break
DualSPHysics example: CaseSolidsCHRONO
Dam break on a deformable solid using neptune_cfd
Chrono::Granular - Mass Flow Rate from a Hopper
Chrono::Granular - Communicating Vessels
Chrono DEM-Engine Simulation, excavator plowing
Chrono::Granular - Wave Tank
Three-dimensional dam-break example, Project Chrono implementation (default compute resolution)
Three-dimensional dam-break example, Project Chrono implementation (enhanced compute resolution)
DualSPHysics example: CaseFlexibleObstacle
Chrono::Engine collapsing structures demo reel
122 Chrono humvee model with ANCF tires traveling on granular, cohesive soil
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Chrono::Granular - Dam Break

Chrono::Granular - Dam Break

A column of initially-confined frictionless particles is released to form a wave of

DualSPHysics example: CaseSolidsCHRONO

DualSPHysics example: CaseSolidsCHRONO

Available at DualSPHysics_v5.0/examples/

Dam break on a deformable solid using neptune_cfd

Dam break on a deformable solid using neptune_cfd

Step 2 for our new feature, a step by step validation ! This is a

Chrono::Granular - Mass Flow Rate from a Hopper

Chrono::Granular - Mass Flow Rate from a Hopper

Granular

Chrono::Granular - Communicating Vessels

Chrono::Granular - Communicating Vessels

14 million frictionless, spherical particles flow under their own weight between two chambers, separated by a slightly lifted cylinder ...

Sponsored
Chrono DEM-Engine Simulation, excavator plowing

Chrono DEM-Engine Simulation, excavator plowing

DEM-Engine is Project

Chrono::Granular - Wave Tank

Chrono::Granular - Wave Tank

40 million spherical particles in a sinusoidally-driven wave tank. Simulated using

Three-dimensional dam-break example, Project Chrono implementation (default compute resolution)

Three-dimensional dam-break example, Project Chrono implementation (default compute resolution)

Initial tank volume 1x0.4x0.7 m³. Inter-particle distance 12.5 mm (default value). Number of fluid particles 140800.

Three-dimensional dam-break example, Project Chrono implementation (enhanced compute resolution)

Three-dimensional dam-break example, Project Chrono implementation (enhanced compute resolution)

Initial tank volume 1x0.4x0.7 m³. Inter-particle distance 6.25 mm (half the default value). Number of fluid particles 1136640.

DualSPHysics example: CaseFlexibleObstacle

DualSPHysics example: CaseFlexibleObstacle

Available at DualSPHysics_v5.2/examples/

Chrono::Engine collapsing structures demo reel

Chrono::Engine collapsing structures demo reel

Simulation of masonry structures that

122 Chrono humvee model with ANCF tires traveling on granular, cohesive soil

122 Chrono humvee model with ANCF tires traveling on granular, cohesive soil

Tires are modeled with 8640 layered, orthotropic nonlinear shell elements. Terrain is composed of over 600k spherical rigid ...

How we model floods, tsunamis and dam breaks

How we model floods, tsunamis and dam breaks

Catastrophic events like floods,