Introducing a case of optimizing the shape of the defroster nozzle!
We will introduce a case study where our "modeFRONTIER" was applied to optimize the shape of the defroster nozzle. The air conditioning in a vehicle's cabin plays a role in ensuring passenger comfort and visibility, and fluid analysis can predict the temperature distribution caused by airflow and hot/cold air. Regarding visibility, the goal is to eliminate fogging on the front and side windshields, for which the design of the defroster nozzle is crucial. By investigating and predicting the temperature distribution of the airflow ejected from the defroster nozzle along the windshield surface, we can optimize the shape of the defroster while considering the fog removal pattern. [Case Study] - Software Used: modeFRONTIER, ANSYS CFX - Objective: Ensuring passenger comfort and visibility through vehicle cabin air conditioning - Challenge: Optimization of the defroster nozzle shape - Result: Achieved shape optimization considering the fog removal pattern *For more details, please refer to the external link or feel free to contact us.
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**Features of the Multi-Objective Robust Design Optimization Support Tool "modeFRONTIER"** - Equipped with advanced optimization methods, experimental design methods, and response surface approximation methods - Supports multi-objective robust design optimization and multi-objective tolerance design optimization - Includes a variety of post-processing functions such as statistical analysis, multivariate analysis, and CAP - Interface compatible with Japanese (Windows) and English environments - Standardly equipped with dedicated nodes for direct access to various tools (such as CATIA V5, ANSYS Workbench, MATLAB, LabVIEW, etc.) *For more details, please refer to the external link or feel free to contact us.*
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For more details, please refer to the external link or feel free to contact us.
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While focusing on MBD and CAE technologies and their surrounding technical areas, we specialize in building virtual products and collaborative design processes through cutting-edge digital engineering. We have formed partnerships with leading software vendors of the era to provide top-level digital engineering technologies in Japan, including solutions for thermal fluid analysis, structural analysis, electromagnetic field analysis, acoustic analysis, system simulation, optimization technologies, embedded software development environments, and simulation process data management (SPDM) solutions. We offer a comprehensive engineering environment necessary to solve the diverse and complex challenges faced by our customers. Official Blog: https://www.idaj.co.jp/blog/ IDAJ YouTube Channel: https://www.youtube.com/channel/UCGCd8pB5Lwq_noIoxpgJrrw/featured X: https://twitter.com/IDAJ_CAE Facebook: https://www.facebook.com/IDAJ.CAE