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ZondProtocol培訓 |
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班級人數--熱線:4008699035 手機:15921673576( 微信同號) |
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授課地點及時間 |
上課地點:【上海】:同濟大學(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】:北京中山學院/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):2020年3月16日 |
課時 |
◆資深工程師授課
☆注重質量
☆邊講邊練
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質量以及保障 |
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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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- ZondTEM1D 是地球物探分析軟件Zond的模塊之一,是一款專業的一維瞬變電磁測深軟件。
- ZondTEM1D software is designed for one-dimensional multi-stations interpretation of Transient ElectroMagnetic(TEM) sounding for various observation systems [Line/Loop, Loop/Loop, Loop/Line, Line/Line ).
- Comfortable interface and wide possibilities of data presentation allow to solve given geological problem with maximum effectiveness. While developing software special attention was payed to comfort and simplicity of its use, variety of visualization features and account of a priori data.
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- TEM sounding – the methods of time domain electroprospecting based on studying of field attenuation of vortical currents (transients) arising in electroconducting section at sharp curent off. The primary field is generated by transmission of rectangular impulses passing in not grounded loop or grounded line. At current off in the source, measured voltage in receiver not instantly fall to zero but decreases gradually. It is connected to, that at the moment of current off in conducting areas the secondary currents are induced. At the first moment of time it concentrated in near surface areas and then flow to more deep layers, fading with distance from the source. A physical basis of impulse electroprospecting application is contrast of electric conductivity and polarizability of rocks and ores in natural stratification. Depth of penetration of the non-stationary electromagnetic field in the earth is defined by time. Transients are studied at the moment of current off by induction receivers, usually loops or small multicoil receivers[Elgeo].
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- Depending on the interpreter’s choice, software gives different variants of data interpretation algorithms. Comfortable control system allows to choose from the great number of equivalents results that will appear to be the best in geophysical and geological point of view.
- Conception of multi-station interpretation is basis of the ZondTEM1D software. Consequently, profile line data is considered as a reflection of geological section. It’s mean that multi-station data of profile line is whole, and not set of separated curves. Special windowed algorithms developed for interpretation of profile line data are provided in the software. But most software features can be used also during work with the separated points of TEM. Also You can use areal XY survey with arbitrary lines orientation in multi-line mode.
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- ZondTEM1D allows to work with any types of TEM acquisition systems or their combinations. The program supports as traditional systems(coincident loops, in loop, fixed loops, line-loop, loop-line, line-line), and the most exotic with arbitrary orientation. The geometry of sources and receivers can be various on the plane. Electromagnetic fields and/or their time’s derivatives can be used. Data in most popular formats , such as IX1D(TEM, USF), TEM-FAST, Amira, Geonics, Emma software, ERA or Podbor can be loaded into the software.
- As the basic task of the program is inversion of geoelectric section parameters – few variants of inverse problem are realized inZondTEM1D, basic of them are: smoothed inversion – to get smooth, and focusing – to get the piece-smooth distributing of geoelectric parameters vs depth.
- Because of equivalence of inverse geophysical problems, quality of the obtained results strongly depends on the amount of used a priori data. In ZondTEM1d there is possibility of weight setting(Error gates) for measurements, fixing and limiting of different layers parameters, using of a priori model as reference in inversion. If the values of some section parameters are known exactly (a priori or on interpretation results), their fixing is possible before the beginning of automatic interpretation. The fixed parameters do not change during the process of inversion. Fixing of parameters is the method for hard regularization of inversion process. The robust schemas of noise estimation are realized in the program.
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