首页> 外文期刊>IEEE Geoscience and Remote Sensing Letters >Multifractal Detrended Fluctuation Analysis to Compare Coral Bank and Seafloor Seepage Area-Related Characterization Along the Central Western Continental Margin of India
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Multifractal Detrended Fluctuation Analysis to Compare Coral Bank and Seafloor Seepage Area-Related Characterization Along the Central Western Continental Margin of India

机译:多重分形趋势波动分析,用于比较印度中西部大陆边缘沿岸的珊瑚银行和海底渗流面积相关特征

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摘要

In this letter, the characterization of two coral banks is initiated employing the multifractal detrended fluctuation analysis (MFDFA) for multibeam bathymetry and associated backscatter data. The seafloor roughness was estimated using the Hurst exponent of a second-order moment. The two coral banks are located around the buried channels off Malpe, western continental margin of India (WCMI). The Gaveshani bank is lying on a submerged headland with high backscatter strength. The presence of greater seafloor roughness and medium multifractality in the backscatter data series indicates less heterogeneity of the involved process. In an evolutionary process, the Gaveshani bank may not be affected by the paleochannels. Contrary to the Gaveshani bank, another unnamed coral bank located on lowland and with lower backscatter strength shows lower seafloor roughness and greater multifractality, comparatively. This smoothness is due to the considerable heterogeneity of the seafloor process of a paleochannel system. During the Holocene period, the waves and the current action have further modified the morphology of the coral banks. To support the present analysis, we have juxtaposed the multifractal data analysis of seepage and nonseepage seafloor off Goa, WCMI, along with the coral banks.
机译:在这封信中,对多束测深和相关的反向散射数据采用多重分形趋势波动分析(MFDFA)来启动两个珊瑚堤的表征。使用二阶矩的赫斯特(Hurst)指数估算海底粗糙度。这两个珊瑚堤位于印度西部大陆边缘马尔佩(Malpe)附近的掩埋河道周围。 Gaveshani银行坐落在具有高反向散射强度的淹没岬角上。反向散射数据序列中较大的海底粗糙度和中等多重分形的存在表明所涉及过程的异质性较低。在演化过程中,Gaveshani河岸可能不受古河道的影响。与Gaveshani河岸相反,另一个位于低地且反向散射强度较低的未命名珊瑚河岸则具有较低的海底粗糙度和较大的多重分形性。这种平滑性是由于古河道系统的海底过程存在很大的异质性。在全新世时期,海浪和当前的作用进一步改变了珊瑚堤的形态。为了支持当前的分析,我们将果阿,WCMI和珊瑚堤附近的渗漏和非渗漏海底的多重分形数据分析并列。

著录项

  • 来源
    《IEEE Geoscience and Remote Sensing Letters》 |2016年第10期|1542-1546|共5页
  • 作者单位

    Council of Scientific and Industrial Research National Institute of Oceanography (CSIR-NIO), Dona Paula, India;

    Council of Scientific and Industrial Research National Institute of Oceanography (CSIR-NIO), Dona Paula, India;

    Council of Scientific and Industrial Research National Institute of Oceanography (CSIR-NIO), Dona Paula, India;

    Council of Scientific and Industrial Research National Institute of Oceanography (CSIR-NIO), Dona Paula, India;

    Council of Scientific and Industrial Research National Institute of Oceanography (CSIR-NIO), Dona Paula, India;

    Council of Scientific and Industrial Research National Institute of Oceanography (CSIR-NIO), Dona Paula, India;

    Earth System Science Organization National Centre for Antarctic and Oceanic Research (ESSO–NCAOR), Vasco da Gama, India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Fractals; Backscatter; Sea surface; Geology; Sea measurements; Spatial databases; Earth;

    机译:分形;后向散射;海面;地质;海域测量;空间数据库;地球;

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