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Visual MODFLOW Flex | 三維地下水和污染物運移模擬軟件培訓 |
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班級人數--熱線:4008699035 手機:15921673576/13918613812( 微信同號) |
增加互動環節,
保障培訓效果,堅持小班授課,每個班級的人數限3到5人,超過限定人數,安排到下一期進行學習。 |
授課地點及時間 |
上課地點:【上?!浚和瑵髮W(滬西)/新城金郡商務樓(11號線白銀路站) 【深圳分部】:電影大廈(地鐵一號線大劇院站)/深圳大學成教院 【北京分部】:北京中山/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】:領館區1號(中和大道) 【廣州分部】:廣糧大廈 【西安分部】:協同大廈 【沈陽分部】:沈陽理工大學/六宅臻品 【鄭州分部】:鄭州大學/錦華大廈 【石家莊分部】:河北科技大學/瑞景大廈
開班時間(連續班/晚班/周末班):2025年3月24日........................(歡迎您垂詢,視教育質量為生命!) |
課時 |
◆資深工程師授課
☆注重質量
☆邊講邊練
☆若學員成績達到合格及以上水平,將獲得免費推薦工作的機會
★查看實驗設備詳情,請點擊此處★ |
質量以及保障 |
☆
1、如有部分內容理解不透或消化不好,可免費在以后培訓班中重聽;
☆ 2、在課程結束之后,授課老師會留給學員手機和E-mail,免費提供半年的課程技術支持,以便保證培訓后的繼續消化;
☆3、合格的學員可享受免費推薦就業機會。
☆4、合格學員免費頒發相關工程師等資格證書,提升您的職業資質。 |
☆課程大綱☆ |
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- HYDROGEOCHEM - Hydrologic Transport and Mixed Geochemical Kinetic/Equilibrium Model
- HYDROGEOCHEM 1 is a coupled model of hydrologic transport and geochemical reaction in saturated-unsaturated media. It is designed to simulate transient and/or steady-state transport of Na, aqueous components and transient and/or steady-state mass balance of Ns adsorbent components and ion-exchange sites. Along the transport path, HYDROGEOCHEM computes the species distribution of N component species, Mx complexed species, My adsorbed species. Mz ion-exchanged species, and Mp potentially precipitated species. HYDROGEOCHEM is the only commercially-available model for the simulation of reactive multispecies-multicomponent chemical transport through saturated-unsaturated media. It is not a path model; it is a true transport model coupled with homogeneous and heterogeneous geochemical reactions.
- HYDROGEOCHEM 2 is a modification of HYDROGEOCHEM which was designed to solve coupled hydrologic transport and geochemical equilibrium problems. The modification includes replacement of the EQMOD chemical equilibrium subroutines by a mixed chemical Kinetic and Equilibrium Model (KEMOD) to deal with species whose concentrations are controlled by either thermodynamics or kinetics. HYDROGEOCHEM2 is a coupled model of hydrologic transport and geochemical reaction in saturated-unsaturated media. HYDROGEOCHEM 2 comprises two basic modules: the transport module and the geochemical reaction module. The transport module is designed to simulate: (1) transient and/or steady-state transport of N saqueous components, (2) transient and/or steady-state mass balance of N sadsorbent components and NSITE ion-exchange sites. The geochemical reaction module is designed to compute the species distribution of N = (Na+ Ns) component species, Mx-Kx equilibrium-controlled complexed species, (My– Ky) equilibrium-controlled adsorbed species, Ky kinetic-controlled adsorbed species, (Mz– Kz) equilibrium-controlled ion-exchanged species, Kz kinetic-controlled ion exchanged species, (Mp– Kp) equilibrium-controlled potentially precipitated species, and Kp kinetic controlled precipitated species. The transport module includes advection, dispersion/diffusion, and slight deformation.
- INTRODUCTION TO HYDROGEOCHEM
- The purpose of HYDROGEOCHEM is to simulate transient and/or steady-state density-dependent flow fields and temperature distribution and to compute transient and/or steady-state distribution of reactive multispecies chemical concentrations in subsurface media.
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- HYDROGEOCHEM computes and predicts the distribution of pressure head, moisture content, flow velocity, and total head over a three-dimensional plane in either completely saturated, completely unsaturated, partially unsaturated, or partially saturated subsurface media. It also computes and predicts the spatial-temporal distribution of multi-chemical components. The media may consist of as many types of soils and geologic units as desired with different material properties. Each soil type may be isotropic or anisotropic. The processes governing the distribution of chemical distribution include (1) geochemical equilibrium of aqueous complexation, reduction-oxidation, sorption, and precipitation and dissolution, and (2) hydrological transport by flow advection, dispersion, and effect of unsaturation.
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- The generalized Richards' equation and Darcy's law governing pressure distribution and water flow in saturated-unsaturated media are simulated with the Galerkin finite-element method subject to appropriate initial and four types of boundary conditions. The hydrological transport equations (a set of PDEs) are derived based on the principle of conservation of mass, and the geochemical equilibrium equations (a set of AEs) are derived based on the mass balance and mass action. The coupled set of PDEs and AEs are simulated with either the conventional finite-element methods or the hybrid Langrangian-Eulerian finite-element method with peak capturing scheme subject to appropriate initial and four types of boundary conditions. Hexahedral elements, triangular prism, and tetrahedral elements are used to facilitate the discretization of the region of interest.
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- HYDROGEOCHEM is a coupled model of hydrologic transport and geochemical reaction in saturated-unsaturated media. It is designed to simulate transient and/or steady-state transport of Na, aqueous components and transient and/or steady-state mass balance of Ns adsorbent components and ion-exchange sites. Along the transport path, HYDROGEOCHEM computes the species distribution of N component species, Mx complexed species, My adsorbed species. Mz ion-exchanged species, and Mp potentially precipitated species. The physical, hydrological and chemical settings are as follows.
- Media: Heterogeneous and Anisotropic.
- Flow Conditions: Saturated-Unsaturated Flows.
- Hydrologic Processes: Advection, Dispersion and Diffusion.
- Chemical Processes: Aqueous Complexation, Adsorption/Desorption (Surface Complexation, Constant Capacitance, and Double Layer Approaches), Ion-Exchange, Precipitation/Dissolution, Redox, and Acid-Base Reactions.
- Source/Sink: Spatially- and Temporally-Dependent Element and Point Sources/Sinks.
- Initial Conditions: Prescribed Initial Condition or the Simulated Steady-State Solution as the Initial Condition.
- Boundary Conditions: Prescribed Total Analytical Concentrations on Dirichlet Boundaries, Prescribed Fluxes on Flow-In Boundaries, Natural Advective Fluxes on Flow-Out Boundaries - All Boundary Values (Concentrations or Fluxes) are Spatially- and Temporally-Dependent.
- Numerical Discretization: Finite-Element Methods with Quadrilateral Elements, Triangular Elements, or the Mixtures of These Two Types.
- Approximation Options: Consistent Matrix or Mass Lumping, Nodal Quadrature or Gaussian Quadrature for Surface and Element Integrations.
- Solvers: Direct Band Matrix Solver, Basic Point Iterations, and 4 PCG Methods (polynomial PCG, Incomplete Cholesky PCG, Modified Incomplete Cholesky PCG, and Symmetric Successive Over-Relaxation PCG).
- Time Stepping: Implicit Difference, Crank-Nicholson Central Difference, or Mid-Difference.
- Solution Methods for Geochemical Reactions: Newton-Raphson with Full Pivoting to Solve the Jacobian Matrix Equation and Constraints on Species Concentrations.
- HYDROGEOCHEM is the only commercially-available model for the simulation of reactive multispecies-multicomponent chemical transport through saturated-unsaturated media. It is not a path model; it is a true transport model coupled with homogeneous and heterogeneous geochemical reactions.
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- HYDROGEOCHEM SPECIAL FEATURES
- The special features of HYDROGEOCHEM are its flexibility and versatility in modeling as wide a range of problems as possible. The model is designed to (1) treat heterogeneous and anisotropic media, (2) consider spatially and temporally-distributed as well as point sources/sinks, (3) accept the prescribed initial conditions or obtain initial conditions by simulating the steady-state version of the system under consideration, (4) deal with prescribed transient concentrations distributed over a Dirichlet boundary, (5) handle time-dependent fluxes over variable boundaries, (6) deal with time-dependent total fluxes over Cauchy boundaries, (7) include the off-diagonal dispersion coefficient tensor components in the governing equation for dealing with cases when the coordinate system does not coincide with the principal directions of the dispersion coefficient tensor, (8) provide two options for treating the mass matrix - consistent and lumping, (9) give three options (exact relaxation, under- and over-relaxation) for estimating the nonlinear matrix, (10) include two options (direct solution with Gaussian elimination method and successive point iterations) for solving the linearized matrix equations, (11) include both quadrilateral and triangular elements to facilitate the discretization of the region, (12) automatically reset time step size when boundary conditions or sources/sinks change abruptly, and (13) include simultaneous chemical processes of aqueous complexation, precipitation/dissolution, adsorption, ion exchange, redox, and acid-base reactions.
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- HYDROGEOCHEM INPUT
- (1) Geometry in terms of nodes and elements, and boundaries in terms of nodes and segments; (2) soil properties including (a) saturated hydraulic conductivities or permeabilities; (b) compressibility of water and the media, respectively; (c) bulk density; (d) three soil characteristic curves for each type of soil or geologic unit which are the retention curve, relative conductivity vs head curve, and water capacity curve; (e) effect porosity; and (f) dispersivities, and effective molecular diffusion coefficient for each soil type or geologic unit; (3) initial distribution of pressure head over the region of interest; (4) net precipitation, allowed ponding depth, potential evaporation, and allowed minimum pressure head in the soil; (5) prescribed head on Dirichlet boundaries; (6) prescribed fluxes on Cauchy and/or Neumann boundaries; (7) artificial withdrawals or injections of water; (8) number of chemical components as well as chemical species and their thermodynamic data base; (9) artificial sources/sinks of water and all chemical components; (10) prescribed total concentrations of all chemical components on Dirichlet boundaries; (11) prescribed fluxes of all chemical components on variable boundaries; and (12) initial distribution of all chemical component concentrations. All inputs in items 4 through 11 can be time-dependent or constant with time.
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- HYDROGEOCHEM OUTPUT
- (1) pressure head, total head, moisture content, and flow velocity over the two-dimensional grid at any desired time; (2) water fluxes through all types of boundaries and amount of water accumulated in the media at any desired time; (3) distribution of total analytical concentrations, total dissolved concentrations, total sorbed concentrations, total precipitated concentrations, and free ion concentrations of all chemical components over a three-dimensional grid at any desired time; (4) amount of waste fluxes through the variable boundary; and (5) equivalent kds as a function of time and space in the region of interest.
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- HYDROGEOCHEM Requirements: Pentium with 16 MB RAM and FORTRAN Compiler, any Workstation, e.g., IBM RS6000, DEC Alpha, Silicon Graphics, Sun SparcStation, and HP 9000 Series
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合作伙伴與授權機構 |
Altera全球合作培訓機構
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諾基亞Symbian公司授權培訓中心 |
Atmel公司全球戰略合作伙伴
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微軟全球嵌入式培訓合作伙伴 |
英國ARM公司授權培訓中心 |
ARM工具關鍵合作單位 |
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我們培訓過的企業客戶評價: |
曙海的andriod 系統與應用培訓完全符合了我公司的要求,達到了我公司培訓的目的。
特別值得一提的是授課講師針對我們公司的開發的項目專門提供了一些很好程序的源代碼, 基本滿足了我們的項目要求。
——上海貝爾,李工
曙海培訓DSP2000的老師,上課思路清晰,口齒清楚,由淺入深,重點突出,培訓效果是不錯的,
達到了我們想要的效果,希望繼續合作下去。
——中國電子科技集團技術部主任 馬工
曙海的FPGA 培訓很好地填補了高校FPGA培訓空白,不錯。總之,有利于學生的發展,
有利于教師的發展,有利于課程的發展,有利于社會的發展。
——上海電子,馮老師
曙海給我們公司提供的Dsp6000培訓,符合我們項目的開發要求,解決了很多困惑我
們很久的問題,與曙海的合作非常愉快。
——公安部第三研究所,項目部負責人李先生
MTK培訓-我在網上找了很久,就是找不到。在曙海居然有MTK驅動的培訓,老師經驗
很豐富,知識面很廣。下一個還想培訓IPHONE蘋果手機。跟他們合作很愉快,老師很有人情味,態度很和藹。
——臺灣雙揚科技,研發處經理,楊先生
曙海對我們公司的iPhone培訓,實驗項目很多,確實學到了東西。受益無窮
??!特別是對于那種正在開發項目的,確實是物超所值。
——臺灣歐澤科技,張工
通過參加Symbian培訓,再做Symbian相關的項目感覺更加得心應手了,理
論加實踐的授課方式,很有針對性,非常的適合我們。學完之后,很輕松的就完成了我們的項目。
——IBM公司,沈經理
有曙海這樣的DSP開發培訓單位,是教育行業的財富,聽了他們的課,茅塞頓開。
——上海醫療器械高等學校,羅老師
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我們新培訓過的企業客戶以及培訓的主要內容: |
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一汽海馬汽車 DSP培訓
蘇州金屬研究院 DSP培訓
南京南瑞集團技術 FPGA培訓
西安愛生技術集團 FPGA培訓,DSP培訓
成都熊谷加世電氣 DSP培訓
福斯賽諾分析儀器(蘇州) FPGA培訓
南京國電工程 FPGA培訓
北京環境特性研究所 達芬奇培訓
中國科微系統與信息技術研究所 FPGA高級培訓
重慶網視只能流技術開發 達芬奇培訓
無錫力芯微電子股份 IC電磁兼容
河北科研究所 FPGA培訓
上海微小衛星工程中心 DSP培訓
廣州航天航空 POWERPC培訓
桂林航天工 DSP培訓
江蘇五維電子科技 達芬奇培訓
無錫步進電機自動控制技術 DSP培訓
江門市安利電源工程 DSP培訓
長江力偉股份 CADENCE 培訓
愛普生科技(無錫 ) 數字模擬電路
河南平高 電氣 DSP培訓
中國航天員科研訓練中心 A/D仿真
常州易控汽車電子 WINDOWS驅動培訓
南通大學 DSP培訓
上海集成電路研發中心 達芬奇培訓
北京瑞志合眾科技 WINDOWS驅動培訓
江蘇金智科技股份 FPGA高級培訓
中國重工第710研究所 FPGA高級培訓
蕪湖伯特利汽車安全系統 DSP培訓
廈門中智能軟件技術 Android培訓
上??坡囕v部件系統EMC培訓
中國電子科技集團第五十研究所,軟件無線電培訓
蘇州浩克系統科技 FPGA培訓
上海申達自動防范系統 FPGA培訓
四川長虹佳華信息 MTK培訓
公安部第三研究所--FPGA初中高技術開發培訓以及DSP達芬奇芯片視頻、圖像處理技術培訓
上海電子信息職業技術--FPGA高級開發技術培訓
上海點逸網絡科技有限公司--3G手機ANDROID應用和系統開發技術培訓
格科微電子有限公司--MTK應用(MMI)和驅動開發技術培訓
南昌航空大學--fpga 高級開發技術培訓
IBM 公司--3G手機ANDROID系統和應用技術開發培訓
上海貝爾--3G手機ANDROID系統和應用技術開發培訓
中國雙飛--Vxworks 應用和BSP開發技術培訓
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上海水務建設工程有限公司--Alter/Xilinx FPGA應用開發技術培訓
恩法半導體科技--Allegro Candence PCB 仿真和信號完整性技術培訓
中國計量--3G手機ANDROID應用和系統開發技術培訓
冠捷科技--FPGA芯片設計技術培訓
芬尼克茲節能設備--FPGA高級技術開發培訓
川奇光電--3G手機ANDROID系統和應用技術開發培訓
東華大學--Dsp6000系統開發技術培訓
上海理工大學--FPGA高級開發技術培訓
同濟大學--Dsp6000圖像/視頻處理技術培訓
上海醫療器械高等專科學校--Dsp6000圖像/視頻處理技術培訓
中航工業無線電電子研究所--Vxworks 應用和BSP開發技術培訓
北京交通大學--Powerpc開發技術培訓
浙江理工大學--Dsp6000圖像/視頻處理技術培訓
臺灣雙陽科技股份有限公司--MTK應用(MMI)和驅動開發技術培訓
滾石移動--MTK應用(MMI)和驅動開發技術培訓
冠捷半導體--Linux系統開發技術培訓
奧波--CortexM3+uC/OS開發技術培訓
迅時通信--WinCE應用與驅動開發技術培訓
海鷹醫療電子系統--DSP6000圖像處理技術培訓
博耀科技--Linux系統開發技術培訓
華路時代信息技術--VxWorks BSP開發技術培訓
臺灣歐澤科技--iPhone開發技術培訓
寶康電子--Allegro Candence PCB 仿真和信號完整性技術培訓
上海天能電子有限公司--Allegro Candence PCB 仿真和信號完整性技術培訓
上海亨通光電科技有限公司--andriod應用和系統移植技術培訓
上海智搜文化傳播有限公司--Symbian開發培訓
先先信息科技有限公司--brew 手機開發技術培訓
鼎捷集團--MTK應用(MMI)和驅動開發技術培訓
傲然科技--MTK應用(MMI)和驅動開發技術培訓
中軟國際--Linux系統開發技術培訓
龍旗控股集團--MTK應用(MMI)和驅動開發技術培訓
研祥智能股份有限公司--MTK應用(MMI)和驅動開發技術培訓
羅氏診斷--Linux應用開發技術培訓
西東控制集團--DSP2000應用技術及DSP2000在光伏并網發電中的應用與開發
科大訊飛--MTK應用(MMI)和驅動開發技術培訓
東北農業大學--IPHONE 蘋果應用開發技術培訓
中國電子科技集團--Dsp2000系統和應用開發技術培訓
中國船舶重工集團--Dsp2000系統開發技術培訓
晶方半導體--FPGA初中高技術培訓
肯特智能儀器有限公司--FPGA初中高技術培訓
哈爾濱大學--IPHONE 蘋果應用開發技術培訓
昆明電器科學研究所--Dsp2000系統開發技術
奇瑞汽車股份--單片機應用開發技術培訓
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