会议论文详细信息
Southeast Asian Conference on Geophysics
The use of Graphic User Interface for development of a user-friendly CRS-Stack software
Sule, Rachmat^1 ; Prayudhatama, Dythia^1 ; Perkasa, Muhammad D.^1 ; Hendriyana, Andri^1 ; Fatkhan^1 ; Sardjito^2 ; Adriansyah^2
Institut Teknologi Bandung, Jalan Ganeca No. 10, Bandung, Indonesia^1
Upstream Technology Center, PT Pertamina, Indonesia^2
关键词: Common reflection surfaces;    Graphic user interface;    Graphical user interfaces (GUI);    Processing procedures;    Seismic data processing;    Seismic processing;    Text-based interfaces;    User-friendly-software;   
Others  :  https://iopscience.iop.org/article/10.1088/1755-1315/62/1/012050/pdf
DOI  :  10.1088/1755-1315/62/1/012050
来源: IOP
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【 摘 要 】

The development of a user-friendly Common Reflection Surface (CRS) Stack software that has been built by implementing Graphical User Interface (GUI) is described in this paper. The original CRS-Stack software developed by WIT Consortium is compiled in the unix/linux environment, which is not a user-friendly software, so that a user must write the commands and parameters manually in a script file. Due to this limitation, the CRS-Stack become a non popular method, although applying this method is actually a promising way in order to obtain better seismic sections, which have better reflector continuity and S/N ratio. After obtaining successful results that have been tested by using several seismic data belong to oil companies in Indonesia, it comes to an idea to develop a user-friendly software in our own laboratory. Graphical User Interface (GUI) is a type of user interface that allows people to interact with computer programs in a better way. Rather than typing commands and module parameters, GUI allows the users to use computer programs in much simple and easy. Thus, GUI can transform the text-based interface into graphical icons and visual indicators. The use of complicated seismic unix shell script can be avoided. The Java Swing GUI library is used to develop this CRS-Stack GUI. Every shell script that represents each seismic process is invoked from Java environment. Besides developing interactive GUI to perform CRS-Stack processing, this CRS-Stack GUI is design to help geophysicists to manage a project with complex seismic processing procedures. The CRS-Stack GUI software is composed by input directory, operators, and output directory, which are defined as a seismic data processing workflow. The CRS-Stack processing workflow involves four steps; i.e. automatic CMP stack, initial CRS-Stack, optimized CRS-Stack, and CRS-Stack Supergather. Those operations are visualized in an informative flowchart with self explanatory system to guide the user inputting the parameter values for each operation. The knowledge of CRS-Stack processing procedure is still preserved in the software, which is easy and efficient to be learned. The software will still be developed in the future. Any new innovative seismic processing workflow will also be added into this GUI software.

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