Citation: | Li Gaocong,Liang Rongxin,Tong Changliang, et al. Qualitative comparative analysis on grain-size parameters of derived from graphic and moment methods: a case study of the surficial sediment of coastal beaches of Qiongzhou Strait[J]. Haiyang Xuebao,2023, 45(2):98–109 doi: 10.12284/hyxb2023005 |
[1] |
Gao S, Collins M. Net sediment transport patterns inferred from grain-size trends, based upon definition of “transport vectors”[J]. Sedimentary Geology, 1992, 81(1/2): 47−60.
|
[2] |
Michael N A, Zühlke R. Source-to-sink: regional grain size trends to reconstruct sediment budgets and catchment areas[J]. Basin Research, 2022, 34(1): 393−410. doi: 10.1111/bre.12624
|
[3] |
Wu Li, Krijgsman W, Liu Jian, et al. CFLab: a MATLAB GUI program for decomposing sediment grain size distribution using Weibull functions[J]. Sedimentary Geology, 2020, 398: 105590. doi: 10.1016/j.sedgeo.2020.105590
|
[4] |
Chiverrell R C, Sear D A, Warburton J, et al. Using lake sediment archives to improve understanding of flood magnitude and frequency: recent extreme flooding in northwest UK[J]. Earth Surface Processes and Landforms, 2019, 44(12): 2366−2376. doi: 10.1002/esp.4650
|
[5] |
Folk R L, Ward W C. Brazos river bar: a study in the significance of grain size parameters[J]. Journal of Sedimentary Petrology, 1957, 27(1): 3−26. doi: 10.1306/74D70646-2B21-11D7-8648000102C1865D
|
[6] |
Swan D, Clague J J, Luternauer J L. Grain-size statistics I: evaluation of the Folk and Ward graphic measures[J]. Journal of Sedimentary Petrology, 1978, 48(3): 863−878.
|
[7] |
Cera A, Pierdomenico M, Sodo A, et al. Spatial distribution of microplastics in volcanic lake water and sediments: relationships with depth and sediment grain size[J]. Science of the Total Environment, 2022, 829: 154659. doi: 10.1016/j.scitotenv.2022.154659
|
[8] |
Friedman G M. Comparison of moment measures for sieving and thin-section data in sedimentary petrological studies[J]. Journal of Sedimentary Petrology, 1962, 32(1): 15−25.
|
[9] |
McManus J. Grain size determination and interpretation[M]//Tucker M E. Techniques in Sdimentology. Oxford: Blackwell Scientific Publications, 1988: 63–85.
|
[10] |
Blott S J, Pye K. GRADISTAT: a grain size distribution and statistics package for the analysis of unconsolidated sediments[J]. Earth Surface Processes and Landforms, 2001, 26(11): 1237−1248. doi: 10.1002/esp.261
|
[11] |
赵珍清. 南黄海沉积物粒度分布参数计算方法的比较[J]. 海洋地质与第四纪地质, 1992, 12(3): 95−107. doi: 10.16562/j.cnki.0256-1492.1992.03.010
Zhao Zhenqing. Comparison of calculating methods for grain-size distribution parameters of sediments in South Yellow Sea[J]. Marine Geology & Quaternary Geology, 1992, 12(3): 95−107. doi: 10.16562/j.cnki.0256-1492.1992.03.010
|
[12] |
贾建军, 高抒, 薛允传. 图解法与矩法沉积物粒度参数的对比[J]. 海洋与湖沼, 2002, 33(6): 577−582. doi: 10.3321/j.issn:0029-814X.2002.06.002
Jia Jianjun, Gao Shu, Xue Yunchuan. Grain-size parameters derived from graphic and moment methods: a comparative study[J]. Oceanologia et Limnologia Sinica, 2002, 33(6): 577−582. doi: 10.3321/j.issn:0029-814X.2002.06.002
|
[13] |
徐树建, 潘保田, 张慧, 等. 末次冰期旋回风成沉积物图解法与矩值法粒度参数的对比[J]. 干旱区地理, 2005, 28(2): 194−198. doi: 10.3321/j.issn:1000-6060.2005.02.011
Xu Shujian, Pan Baotian, Zhang Hui, et al. Grain size parameters of Loess-palaeosol Deposits from graphic and moment methods: a comparative study[J]. Arid Land Geography, 2005, 28(2): 194−198. doi: 10.3321/j.issn:1000-6060.2005.02.011
|
[14] |
刘志杰, 龙海燕. 南海沉积物图解法和矩值法粒度参数计算及对比[J]. 中国海洋大学学报, 2009, 39(2): 313−316, 336.
Liu Zhijie, Long Haiyan. Comparing study on the grain-size parameters estimated from the graphical method and the moment method of the sediments from South China Sea[J]. Periodical of Ocean University of China, 2009, 39(2): 313−316, 336.
|
[15] |
蔡国富, 范代读, 尚帅, 等. 图解法与矩值法计算的潮汐沉积粒度参数之差异及其原因解析[J]. 海洋地质与第四纪地质, 2014, 34(1): 195−204.
Cai Guofu, Fan Daidu, Shang Shuai, et al. Difference in grain-size parameters of tidal deposits derived form the graphic and its potential causes[J]. Marine Geology & Quaternary Geology, 2014, 34(1): 195−204.
|
[16] |
曾方明, 张萍. 图解法和矩值法计算西台吉乃尔盐湖沉积物粒度参数的差异[J]. 盐湖研究, 2015, 23(3): 1−4, 22.
Zeng Fangming, Zhang Ping. Differences of particle parameters calculated by graphic and moment methods in sediments at the West Taijinar Salt Lake region[J]. Journal of Salt Lake Research, 2015, 23(3): 1−4, 22.
|
[17] |
王兆夺, 于东生, 罗福生, 等. 图解法和矩法计算泉州湾表层沉积物粒度参数的对比[J]. 海洋地质前沿, 2016, 32(7): 19−27. doi: 10.16028/j.1009-2722.2016.07003
Wang Zhaoduo, Yu Dongsheng, Luo Fusheng, et al. Comparison of grain size parameters from graphical and moment methods for surface sediments in Quanzhou Bay[J]. Marine Geology Frontiers, 2016, 32(7): 19−27. doi: 10.16028/j.1009-2722.2016.07003
|
[18] |
陈松, 陈剑, 乔春生, 等. 图解法与矩值法在金沙江上游雪隆囊古滑坡堰塞湖溃坝堆积物粒度分析中的应用[J]. 现代地质, 2017, 31(6): 1278−1283. doi: 10.3969/j.issn.1000-8527.2017.06.018
Chen Song, Chen Jian, Qiao Chunsheng, et al. Application of graphic and moment methods on the analysis of particle sizes of dam-break accumulations by Xuelongnang Ancient Landslide Lake in the upper Jinsha River[J]. Geoscience, 2017, 31(6): 1278−1283. doi: 10.3969/j.issn.1000-8527.2017.06.018
|
[19] |
戴建, 张平. 几种沉积物图解法与矩值法粒度参数的对比研究及其意义[J]. 地质学刊, 2017, 41(2): 239−244. doi: 10.3969/j.issn.1674-3636.2017.02.011
Dai Jian, Zhang Ping. Comparison and its significance of grain-size parameters of several sediments with graphic method and moment method[J]. Journal of Geology, 2017, 41(2): 239−244. doi: 10.3969/j.issn.1674-3636.2017.02.011
|
[20] |
李高聪, 李志强, 朱士兵, 等. 图解法和矩值法海洋沉积物粒度参数的对比[J]. 广东海洋大学学报, 2020, 40(6): 96−101. doi: 10.3969/j.issn.1673-9159.2020.06.012
Li Gaocong, Li Zhiqiang, Zhu Shibing, et al. Comparative study on grain-size parameters of marine sediment derived from graphic and moment methods[J]. Journal of Guangdong Ocean University, 2020, 40(6): 96−101. doi: 10.3969/j.issn.1673-9159.2020.06.012
|
[21] |
Li Gaocong, Du Rihong, Tang Jieping, et al. Comparison of the graphic and moment methods for analyzing grain-size distributions: a case study for the Chinese inner continental shelf seas[J]. International Journal of Sediment Research, 2022, 37(6): 729−736. doi: 10.1016/j.ijsrc.2022.05.001
|
[22] |
刘志杰, 公衍芬, 周松望, 等. 海洋沉积物粒度参数3种计算方法的对比研究[J]. 海洋学报, 2013, 35(3): 179−188.
Liu Zhijie, Gong Yanfen, Zhou Songwang, et al. A comparative study on the grain-size parameters of marine sediments derived from three different computing methods[J]. Haiyang Xuebao, 2013, 35(3): 179−188.
|
[23] |
陶敏, 邓山, 王婷乐, 等. 矩值法和图解法计算山区河流沉积物粒度参数的差异[J]. 三峡大学学报(自然科学版), 2011, 33(6): 27−32.
Tao Min, Deng Shan, Wang Tingle, et al. The difference between moment method and graphic method for calculating grain-size parameters of sediments in mountain streams[J]. Journal of China Three Gorges University (Natural Sciences), 2011, 33(6): 27−32.
|
[24] |
Swan D, Clague J J, Luternauer J L. Grain-size statistics II: evaluation of grouped moment measures[J]. Journal of Sedimentary Petrology, 1979, 49(2): 487−500.
|
[25] |
Wang Shanshan, Pan Cunhong, Xie Dongfeng, et al. Grain size characteristics of surface sediment and its response to the dynamic sedimentary environment in Qiantang Estuary, China[J]. International Journal of Sediment Research, 2022, 37(4): 457−468. doi: 10.1016/j.ijsrc.2021.12.002
|
[26] |
Yang Yang, Piper D J W, Xu Min, et al. Northwestern Pacific tropical cyclone activity enhanced by increased Asian dust emissions during the little ice age[J]. Nature Communications, 2022, 13(1): 1712.
|
[27] |
van Rijn L C. Unified view of sediment transport by currents and waves. I: initiation of motion, bed roughness, and bed-load transport[J]. Journal of Hydraulic Engineering, 2007, 133(6): 649−667. doi: 10.1061/(ASCE)0733-9429(2007)133:6(649)
|
[28] |
李自超, 蒲晓强, 赵辉, 等. 湖光岩玛珥湖表层沉积物粒度特征及其物源指示意义[J]. 广东海洋大学学报, 2017, 37(3): 93−99. doi: 10.3969/j.issn.1673-9159.2017.03.014
Li Zichao, Pu Xiaoqiang, Zhao Hui, et al. Grain size characteristics of the surface sediments in Huguangyan Maar Lake and its significance to sediment source analysis[J]. Journal of Guangdong Ocean University, 2017, 37(3): 93−99. doi: 10.3969/j.issn.1673-9159.2017.03.014
|
[29] |
张才学, 孙省利, 陈春亮. 湛江港湾表层沉积物重金属的分布特征及潜在生态危害评价[J]. 湛江海洋大学学报, 2006, 26(3): 45−49.
Zhang Caixue, Sun Xingli, Chen Chunliang. Distribution features and evaluation on potential ecological risk of heavy metals in submarine surface sediments of Zhanjiang Bay[J]. Journal of Zhanjiang Ocean University, 2006, 26(3): 45−49.
|
[30] |
谭靖千, 高苑, Abarike G A, 等. 环雷州半岛海底表层沉积物brGDGTs组成分布特征及其环境意义[J]. 广东海洋大学学报, 2021, 41(5): 84−93. doi: 10.3969/j.issn.1673-9159.2021.05.011
Tan Jingqian, Gao Yuan, Abarike G A, et al. Composition and distribution characteristics of brGDGTs and significance of environment in surface sediments of Leizhou Peninsula[J]. Journal of Guangdong Ocean University, 2021, 41(5): 84−93. doi: 10.3969/j.issn.1673-9159.2021.05.011
|
[31] |
黄鑫, 蒲晓强. 热液活动对海底沉积物中有机质的影响[J]. 广东海洋大学学报, 2017, 37(1): 117−124. doi: 10.3969/j.issn.1673-9159.2017.01.019
Huang Xin, Pu Xiaoqiang. The influence of hydrothermal activities on the organic matter in sediment[J]. Journal of Guangdong Ocean University, 2017, 37(1): 117−124. doi: 10.3969/j.issn.1673-9159.2017.01.019
|