Boundary Element Method (BEM) Technologies
Predict steady or unsteady flows around or inside bodies, including the modeling of cavities and/or free-surfaces.
Our BEM technologies include
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Cathodic Protection
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Underwater Acoustics
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Soil-Structure Interaction
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Acoustic Radiation & Scattering
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Ground Vibrations & Isolation
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Electromagnetics
About Boundary Element Method
The Boundary Element Method (BEM) casts its focus on the perimeters of systems. This surface is meticulously divided into small elemental surfaces or “boundary elements” described by differential equations that need to be solved. The differential equations are expressed only for the boundary of the region and not for its interior. It’s about deciphering the behavior of intricate systems without the need to dissect every nook and cranny.
Benefits of BEM technologies
Industry applications of Boundary Element Method
Stress analysis
Analyze the stress distribution in engineering structures such as bridges, aircrafts, and ships.
Potential flow analysis
Study the behaviour of fluid flow around bodies, including flow past airfoils, ships, and submarines.
Electrostatics
Analyze electrical potential distribution in electrical and electronic devices such as capacitors, transformers, and printed circuit boards.
Acoustics
Study sound propagation and wave behavior in ducts, cavities, and around structures.
Fracture mechanics
Analyze the stress intensity factors and fracture toughness of engineering components.
Geotechnical engineering
Analyze soil-structure interaction and the behavior of retaining walls and foundations.
Heat transfer
Study heat transfer in engineering components such as heat exchangers and boilers.
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