CAESES
CAESES
About CAESES
31~60 item / All 83 items
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Parametric modeling of turbine cooling blades
It is now possible to automatically optimize the cooling structure and cooling performance in conjunction with changes to the blade shape!
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Parametric modeling of turbo ducts
Explanation of the geometry settings for turbo ducts and model variations!
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Optimization of catalytic converter performance using CAESES.
Optimization of the duct of the catalytic converter using CAESES!
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Optimization of the performance of the AIPOD battery pack water cooling plate.
Under the restriction of a pressure loss dp of less than 25 kPa for the water-cooled plate, the temperature difference across the section is reduced by 13.403%!
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[AIPOD] Shape Optimization of Heat Sinks for IGBTs
Optimization calculations are conducted in the design space using the optimization algorithm SilverBullet installed in AIPOD!
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Automatic Optimization using Adjoint Flow Solvers
It is possible to efficiently obtain optimal candidate geometry that can be directly supplied to the downstream CAD design process!
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Parametric modeling of the F1 rear wing
Introducing the parametric model of the rear wing created using CAESES' special CAD features!
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Parametric modeling of air float transformers
Introducing representative results that visualize the characteristics of turbulence (vorticity magnitude)!
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Morphing of the injector nozzle
Implement shape deformation on the injector nozzle using the morphing function!
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Optimization design of the intake port
Introducing the design of intake ports using CAESES and automatic optimization in collaboration with CFD analysis tools!
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Optimization of the rear wing shape
Utilizing CAESES for the optimization of the rear wing shape attached to racing cars!
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Tire tread pattern optimization
A system for automatic optimization has been built using CAESES and commercial CFD analysis tools, resulting in significant improvements to the tire tread pattern!
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Collaboration feature of CONVERGE and CAESES using the intake port.
Supporting development design operations! Introducing features that can be effectively utilized.
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Shape optimization of the rear wing using sensitivity analysis.
The parametric model is created in CAESES, and the adjoint solutions obtained from the commercial CFD tool are mapped to the design variables!
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Torque converter shape optimization
CAESES provides beneficial results across various fields, regardless of the products in question!
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Optimization of the piston bowl
In the development of engine combustion processes, 3D CFD analysis is an important tool!
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Parametric modeling and optimization of electric vehicle battery fins.
Parametrize the fin shape and arrangement of the heat sink to build a model that can flexibly evaluate various design patterns!
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Optimization of Motor Thermal Design for Electric Vehicles
Optimization aimed at minimizing the maximum temperature based on a flexible parametric model has been implemented!
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Optimization of thermal design for electric vehicle battery packs
The parametric model created with CAESES can robustly output various complex shapes for use in optimization calculations!
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Optimization calculations for the internal pipeline of an automobile engine.
Quickly obtain optimal designs by effectively utilizing simulation-driven optimization calculations!
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Propeller optimization using machine learning
The main objective of the contest was to design a propeller that could achieve maximum efficiency at a wide range of operating speeds.
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Optimization of Container Ship Shape
Partial parametric modeling adopted! Deformation of the hull shape is defined.
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Dimensional reduction of hull shape using principal component analysis in CAESES.
Introducing the dimensional reduction function based on the drag optimization of KCS ships!
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CAESES Chip Rake Propeller Optimization and Surrogate Modeling
Achieving innovative and suitable solutions! Introducing parametric models of unconventional propellers, among others.
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AIPOD: Optimization of Ship Performance
The selection of a rational optimization strategy is particularly important! The model in question is the KCS hull form.
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Propeller design for efoil using CAESES
Here is a brief introduction to the design of the propeller included with the foil board!
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CAESES Propeller Design Workflow
It also offers high flexibility to try out new designs! Here are the main advantages.
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Automatic creation of parametric propeller models in CAESES.
Introducing the creation of propeller models from existing data and the extraction of camber distribution and blade thickness distribution!
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Parametric model of twin-skeg boats in CAESES
It is possible to flexibly control various parts related to hull characteristics!
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Propeller Boss Cap Fin Shape Optimization Project
There are many considerations to achieve efficient ship design even in the early stages of design!
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