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班級規(guī)模及環(huán)境--熱線:4008699035 手機(jī):15921673576( 微信同號) |
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每期人數(shù)限3到5人。 |
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上課時間和地點(diǎn) |
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上課地點(diǎn):【上?!浚和瑵?jì)大學(xué)(滬西)/新城金郡商務(wù)樓(11號線白銀路站) 【深圳分部】:電影大廈(地鐵一號線大劇院站)/深圳大學(xué)成教院 【北京分部】:北京中山學(xué)院/福鑫大樓 【南京分部】:金港大廈(和燕路) 【武漢分部】:佳源大廈(高新二路) 【成都分部】:領(lǐng)館區(qū)1號(中和大道) 【沈陽分部】:沈陽理工大學(xué)/六宅臻品 【鄭州分部】:鄭州大學(xué)/錦華大廈 【石家莊分部】:河北科技大學(xué)/瑞景大廈 【廣州分部】:廣糧大廈 【西安分部】:協(xié)同大廈
最近開課時間(周末班/連續(xù)班/晚班):2020年3月16日 |
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實(shí)驗(yàn)設(shè)備 |
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質(zhì)量保障 |
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1、培訓(xùn)過程中,如有部分內(nèi)容理解不透或消化不好,可免費(fèi)在以后培訓(xùn)班中重聽;
2、培訓(xùn)結(jié)束后,授課老師留給學(xué)員聯(lián)系方式,保障培訓(xùn)效果,免費(fèi)提供課后技術(shù)支持。
3、培訓(xùn)合格學(xué)員可享受免費(fèi)推薦就業(yè)機(jī)會。 |
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課程大綱 |
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課程簡介
ACTRAN 是著名的聲學(xué)軟件提供商--比利時FFT公司的旗艦產(chǎn)品。本課程由海基科技副總李奇博士講授,李奇博士畢業(yè)于同濟(jì)大學(xué)聲學(xué)所、瑞典皇家工學(xué)院航空與車輛工程系MWL實(shí)驗(yàn)室,具有十年以上聲學(xué)仿真經(jīng)驗(yàn),是資深CAE專家。本課程為ACTRAN Acoustic workshop基礎(chǔ)課程,為您詳細(xì)、全面介紹ACTRAN Acoustic workshop。
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課程目錄
1 1A Description of Actran workshop
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1 To import an ACTRAN input file and check the content of it
2 To export both the mesh and the input file
3 To launch in different ways the input file
2 1B-1 Example of sound source in a treated cavity(foam layer)
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1 One considers the same cavity as in workshop 1A but one layer of fluid elements is replaced by a foam layer
2 Sound in enclosure: a spherical source is placed in one corner of a 1m3 cavity wuth 5 rigid walls and a foam layer
3 A 0.125m thick foam layer is glued against one of the cavity walls(from y=0.375m to y=0.5m)
4 Use rigid porous elements
3 1B-2 Training of Kundt's tube
4 1C Using equivalent admittance
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1 One considers the same cavity as in previous workshop
2 The spherical source placed in one of the box corner at (x,y,z)=(-0.375,-0.375,-0.375)
3 Use an admittance boundary condition for modeling the foam
4 Computed results(compare with workshop 1A)
4.1 The mean square pressure amplitude from 1Hz to 500Hz
4.2 The sound pressure level at the center of the box
4.3 Plot a color map at 295Hz
5 2 Model extraction: acoustic cavity
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1 One considers a 1m3 cavity, centered on the origin(0,0,0)
2 One considers default air properties for the fluid and assumes the walls to be rigid
3 Use quadratic, 0.125m sized elements
4 Post- processing:
4.1 Extract the modes in the 1Hz to 500Hz frequency range
4.2 Plot a color map of 7th mode(order(m,n,l)=(1,1,1)) and compare it with the workshop 1A map
課時6 3 Free field radiation of a monopole
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1 Purpose: free-field radiation of a monopole in air at standard conditions
2 Plot the real part of the pressure from 1Hz to 500Hz measured at (x,y,z)=(1,0,0)
3 Plot the sound pressure level from 1Hz to 500Hz measured at (x,y,z)=(1,0,0)
4 Visualize a map using cutplanes functions
7 4 Duct radiating in free field
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1 One considers a simple duct radiating in a half free space
2 The duct is excited with each mode propagating at 700Hz
3 Compute the pressure variation along the duct axis
4 Plot a color map
8 5A BC_MESH application: structure radiating in a free field
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1 The objective of this workshop is to evaluate the acoustic radiation of a simple vibrating structure
2 The parameters of the problem
3 The displacement of the edges of the panel are set to 0
4 The excitation is displacement at the center of the plate
9 5B Training
10 6 Visco-thermal effects in Actran
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1 Visco-thermal elements in Actran
2 Purpose: understand the visco-thermal effects occurring in a thin circular tube connecting to acoustic cavities
3 Plot the SPL of the pressure from 10Hz to 3000Hz measured at (x,y,z)=(0.05,0.6,0) for 2 cases: with and without visco-thermal effects in the thin tube
4 Plot the average SPL in the different cavities
5 Visualize pressure maps at some frequencies of interest
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