Research Article
Design and Implementation of High Precision Data Acquisition System for Offshore Engineering Seismic Exploration Based on Distributed Architecture
@INPROCEEDINGS{10.4108/eai.28-2-2017.152301, author={Changxian Zhou and Shaopeng Zheng and Youquan Ye and Yonggu Zhang and Congrong Ren }, title={Design and Implementation of High Precision Data Acquisition System for Offshore Engineering Seismic Exploration Based on Distributed Architecture}, proceedings={The 1st EAI International Conference on Multimedia Technology and Enhanced Learning}, publisher={EAI}, proceedings_a={ICMTEL}, year={2017}, month={3}, keywords={Annular layered structure; SEG-D format; seismic data storage; quality control}, doi={10.4108/eai.28-2-2017.152301} }
- Changxian Zhou
Shaopeng Zheng
Youquan Ye
Yonggu Zhang
Congrong Ren
Year: 2017
Design and Implementation of High Precision Data Acquisition System for Offshore Engineering Seismic Exploration Based on Distributed Architecture
ICMTEL
EAI
DOI: 10.4108/eai.28-2-2017.152301
Abstract
Oil and natural gas are non renewable resources, is an important energy mineral resources and strategic resources, related to the national economic and social development, the relationship between national security. Countries have a fierce competition for oil, the impact of international oil prices on domestic oil prices gradually increased. With the rapid development of China's economy, China's oil and gas gap will be more and more big. In order to alleviate the shortage of oil and gas resources, China has added to the exploration and development of domestic oil and gas. China's sea area is broad, with rich oil and gas resources. Since "eight five", the increment of marine oil has become the main force of oil and gas production in China. The seismic acquisition system of marine high precision towing cable is mainly divided into the underwater acquisition part and the indoor record part. In this paper, we focus on the design and implementation of the terminal part quality control and recording work station software. This paper discusses the specific implementation details of the quality control and recording work station software. The software module includes bus interface design, network communication, data processing, data display, data storage, data drawing, and each QC test algorithm