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上课地点:【上海】:同济大学(沪西)/新城金郡商务楼(11号线白银路站) 【深圳分部】:电影大厦(地铁一号线大剧院站)/深圳大学成教院 【北京分部】:北京中山学院/福鑫大楼 【南京分部】:金港大厦(和燕路) 【武汉分部】:佳源大厦(高新二路) 【成都分部】:领馆区1号(中和大道) 【沈阳分部】:沈阳理工大学/六宅臻品 【郑州分部】:郑州大学/锦华大厦 【石家庄分部】:河北科技大学/瑞景大厦 【广州分部】:广粮大厦 【西安分部】:协同大厦
最近开课时间(周末班/连续班/晚班):2020年3月16日
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课程大纲
 

课程简介

Optimize acoustic performance through better simulations!

Watch this Webinar Series to learn how the largest civil and military aircraft and aircraft engine manufacturers, leading producers of loudspeakers and other audio devices use Actran for powerful Acoustic modeling and analysis to design better products. 

课程目录

第1章:Aero-acoustic Simulation of a HVAC Duct

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第2章:Acoustic Radiation Analysis

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    During this webinar you will first get introduced to the main features of Actran. Then, the webinar will focus on the use of Actran for Acoustic Radiation Analysis. A typical application example is the prediction of the noise radiated by a powertrain, a gearbox or any vibrating structure. This type of simulation is what is called a weakly coupled vibro-acoustic analysis, where the dynamic behavior of the structure is computed with MSC Nastran in a first step and the acoustic radiation is computed with Actran in a second step. You will discover the underlying assumptions as well as the key ingredients of the related Actran model. The webinar will also include a live demo.

     

     

第3章:Introduction to Actran for Vibro-Acoustic Analysis

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    This webinar will provide an overview of the main features of Actran with special focus on coupled vibro-acoustic problems and its rich library of elements, materials, boundary conditions and solution schemes, which enable users to perform coupled and uncoupled analyses in both frequency and time domains. Typical applications include noise transmission through an aircraft fuselage panel or an automotive side window, coupling between shell noise and pipe noise of an exhaust system, acoustic efficiency of a loudspeaker or vibration & noise attenuation of any system using porous media such as foams or rock wool. You will discover the major ingredients of Actran to tackle this kind of problems. The webinar will also include a live demo.

     

     

第4章:Introduction to Actran for Aero-Acoustic Analysis

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    This webinar will focus on the use of Actran for performing aero-acoustic analysis. Examples of applications cases include the noise generated by air conditioning modules (HVAC) such as automotive instrument panels ducts or blowers, aircraft airframe noise like the landing gear system or other types of noise generated by a flow impacting an obstacle such as a car side mirror. For such application, Actran recovers aerodynamic noise sources from unsteady flow simulations performed with major commercial CFD solvers using the concept of acoustic analogy. During this webinar this concept as implemented in Actran will be introduced along with the different steps of the simulation process. The webinar will also include a series of cases studies, including an aero-vibro-acoustic example.

     

     

第5章:Noise Attenuation_ Model Poro-elastic Materials using Actran

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    This webinar will provide an overview of the Actran, a pioneering acoustics software, in modeling those poro-elastic materials. The so-called Biot properties required to characterize the mechanical behavior of the porous components will be explained. Several applications examples of numerical models involving poro-elastic elements will be presented. The webinar will also include a live demo.

     

     

第6章:Intake & Exhaust Systems_ How to use Actran for predicting the pipe noise & shell noise

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    This webinar will provide an overview of the Actran capabilities in modeling these intake and exhaust systems, including a review of all the ingredients listed above. Several applications examples of numerical models will be presented. The webinar will also include a live demo.

     

     

第7章:Actran R13.0 Release Highlights

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    This webinar provides an overview of the release highlights of Actran R13.0. The new release offers improved performance, several ease of use features and multiple new capabilities. Some of the new capabilities include support for new boundary conditions and elements, ability to directly listen to the computed sound pressure levels and other post-processing enhancements. Users can also translate the information from Nastran input files into equivalent Actran data blocks and map CFD results that are either periodic in space or symmetric.

     

     

第8章:Automate your Actran Simulations using the API (Scripts & Sessions)

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    During this webinar you will first get introduced to the main features of the Actran Application Programming Interface (API) for pre-and post-processing steps of a CAE analysis. Then the webinar will focus on the use of this API through scripts and sessions for different purposes, such as saving an actual state of the Graphical User Interface, re-launching a part of a post-processing step, automating your Actran simulations or performing parametric studies. For that purpose, you will also discover how the features contained in the Actran VI GUI can be included in a session file to be used further in automated steps. The webinar will also include a live demo.

     

     

第9章:Simulation of the noise radiated by a vibrating structure

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    Noise radiation by vibrating structures is an important factor of consideration in design of products like gearbox, engines, and electronic devices. Simulation helps users better understand the noise radiation into the environment, so that their acoustic performance can be improved and noise pollution reduced, along with improving the product life. This webinar will provide an overview of acoustic radiation analysis capabilities of Actran, a pioneering acoustic simulation solution from FFT, an MSC Software Company. The webinar includes a demo with an introduction to modeling and post-processing capabilities of Actran, including computation of sound pressure level, sound power level, structure panel contribution factor, and structure element contribution.

     

     

第10章:Noise Prediction of Moving Mechanisms using Coupled MBD Acoustics analysis

 
 
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