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Today's ANSYS: Analysis of Water Purification Treatment Using Ultraviolet Sterilization Equipment

Introduction to the analysis of water purification treatment using ultraviolet sterilization devices.

I would like to introduce information that highlights how CAE and CFD are beneficial to society, along with interesting application examples, primarily through articles from the information magazine "ADVANTAGE" published by ANSYS, Inc. and ANSYS Japan Co., Ltd. This time, I will present an analysis of water purification treatment using ultraviolet sterilization devices. ANSYS Fluent is equipped with numerous radiation models, and in this case, we will simulate using the Discrete Ordinates (DO) model and model various microorganisms with DPM (Discrete Phase Model), which is a somewhat unique example. When I first saw this case, I thought it might not fall within the realm of CFD (Computational Fluid Dynamics), but depending on how it is used, there seems to be potential for increased applications. We will incorporate the total amount of ultraviolet light (UV Dose) that bacteria receive while flowing through the ultraviolet sterilization device using a User Defined Function (UDF). In the drinking water supply that we use in our daily lives, ultraviolet irradiation devices are reportedly always used for sterilization (to kill chlorine-resistant bacteria such as Cryptosporidium). In other words, if we could improve the sterilization efficiency by even an average of 1% at the countless water purification plants across the country, it would result in a very significant effect.

  • Company:IDAJ
  • Price:Other
  • Development support tools (ICE, emulators, debuggers, etc.)
  • simulator
  • Other analyses

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Thermal Fluid Analysis Service*

Specialized analysis engineers with a wealth of experience provide total support from factor identification to improvement proposals. If you have something you want to solve with CAE, please consult us first.

Our company has been a member of the UBE Group and Osaka Gas Group for approximately 40 years since its establishment, providing support for the design and troubleshooting of various equipment such as chemical plants and industrial machinery through analytical technology. Leveraging our extensive experience in fluid analysis, we will assist in improving your productivity. For example... - Improving yield by addressing temperature variations in kilns - Confirming mixing characteristics in the scale-up study of mixing tanks - Enhancing energy efficiency through improvements in heat transfer short paths and retention - Verifying airflow in clean rooms due to the addition of equipment - Improving the working environment for operators by changing VOC exhaust plans Please feel free to consult with us.

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TCAE CAA analysis of NACA0012

The mesh model used has eight boundary layers created with TCAE's SnappyHexMesh.

Comprehensive engineering simulation software with unlimited licensing This article introduces CAA analysis of NACA airfoils using TCAE. This project focuses on the NACA 0012 airfoil BANCIIIc3 benchmark [1] (3D code: 0.4[m], span: 10%) and delves into the field of computational aeroacoustics (CAA). By adopting advanced techniques such as acoustic analogy and Ffowcs Williams-Hawkings, we explore unsteady simulations with a physical time of 1[s] through finite volume CFD simulations in a cell-centered framework. *For more detailed information, you can view it through the related links. For more details, please download the PDF or feel free to contact us.*

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  • Other analyses

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