Sediment classification in a Brazilian reservoir: Pros and cons of parametric low frequencies

Q3 Earth and Planetary Sciences Advances in Oceanography and Limnology Pub Date : 2019-05-27 DOI:10.4081/AIOL.2019.7953
Klajdi Sotiri, S. Hilgert, S. Fuchs
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引用次数: 9

Abstract

Sediment is the main factor that limits the reservoir lifetime. Therefore, sediment classification is an essential tool for planning and operating reservoir management measures. There has been important development in the hydroacoustic classification of lakebed, especially with linear systems. The main restrictions while using linear hydroacoustic systems for lakebed classification are the shallow penetration in high-frequency applications or the low vertical and horizontal resolution when using low frequencies. With the new developments in the area of echo sounders, parametric systems can achieve high penetration while preserving the high vertical and lateral resolution. To investigate the performance of parametric systems, a new lakebed classification approach was implemented by using a SES2000 Compact. The area studied was the Passauna reservoir in Parana State, Brazil. We used the first echo division method for processing the acoustic data combined with sediment core and grab sampling. The two physical parameters investigated, were the share of the finest fraction (<63 µm) and wet bulk density (WBD). The results showed a high correlation between the primary frequency of 100 kHz (166 µs pulse length) and the physical parameters. Additionally, a significant correlation was observed with the acoustic parameters at 10 kHz frequency. The best correlating acoustic parameter was Attack/Decay (E1´/E1). The gas presence was found to be an important factor determining the penetration depth of the parametric system and the performance of the classification. The advantages of parametric systems, such small directivity and layering effect, represent the major restrictions in sediment classification applications.
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巴西水库沉积物分类:参数低频的利弊
沉积物是限制储层寿命的主要因素。因此,泥沙分类是规划和实施水库管理措施的重要工具。湖床的水声分类,特别是线性系统的水声分类有了重要的进展。使用线性水声系统进行湖床分类的主要限制是高频应用时的浅穿透或低频应用时的低垂直和水平分辨率。随着测深领域的新发展,参数系统可以在保持高垂直和横向分辨率的同时实现高穿透。为了研究参数系统的性能,利用SES2000 Compact实现了一种新的湖床分类方法。研究的区域是巴西巴拉那州的帕绍纳水库。结合沉积物岩心和抓斗采样,采用第一次回波分割法对声学数据进行处理。研究的两个物理参数是最细组分(<63µm)的份额和湿体积密度(WBD)。结果表明,100 kHz(166µs脉冲长度)的主频率与物理参数之间存在较高的相关性。此外,在10 kHz频率下,观察到与声学参数显著相关。最佳相关声学参数为攻击/衰减(E1´/E1)。发现气体存在是决定参数系统穿透深度和分类性能的重要因素。参数系统的指向性小、分层效应等优点是制约其应用的主要因素。
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来源期刊
Advances in Oceanography and Limnology
Advances in Oceanography and Limnology Agricultural and Biological Sciences-Aquatic Science
CiteScore
2.00
自引率
0.00%
发文量
2
审稿时长
12 weeks
期刊介绍: Advances in Oceanography and Limnology was born in 2010 from the 35 years old Proceedings of the national congress of the Italian Association of Oceanology and Limnology. The AIOL Journal was funded as an interdisciplinary journal embracing both fundamental and applied Oceanographic and Limnological research, with focus on both single and multiple disciplines. Currently, two regular issues of the journal are published each year. In addition, Special Issues that focus on topics that are timely and of interest to a significant number of Limnologists and Oceanographers are also published. The journal, which is intended as an official publication of the AIOL, is also published in association with the EFFS (European Federation for Freshwater Sciences), which aims and objectives are directed towards the promotion of freshwater sciences throughout Europe. Starting from the 2015 issue, the AIOL Journal is published as an Open Access, peer-reviewed journal. Space is given to regular articles, review, short notes and opinion paper
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