Journal of Desert Research ›› 2026, Vol. 46 ›› Issue (2): 95-103.DOI: 10.7522/j.issn.1000-694X.2025.00146
Previous Articles Next Articles
Huagang Zhao(
), Xiaoxu Wang, Jiaqi Chu, Yating Gao, Wenjie Yuan, Ping Yan(
)
Received:2025-03-17
Revised:2025-05-19
Online:2026-03-20
Published:2026-04-13
Contact:
Ping Yan
CLC Number:
Huagang Zhao, Xiaoxu Wang, Jiaqi Chu, Yating Gao, Wenjie Yuan, Ping Yan. Characteristics of surface sediments at the tops of climbing dunes in northwestern arid region of China[J]. Journal of Desert Research, 2026, 46(2): 95-103.
Add to citation manager EndNote|Ris|BibTeX
URL: http://www.desert.ac.cn/EN/10.7522/j.issn.1000-694X.2025.00146
| 沙丘编号 | 含量/% | ||||||
|---|---|---|---|---|---|---|---|
| 黏粒(<0.002 mm) | 粉砂(0.002~0.063 mm) | 极细砂(0.063~0.125 mm) | 细砂(0.125~0.25 mm) | 中砂(0.25~0.5 mm) | 粗砂 (0.5~1 mm) | 极粗砂(1~2 mm) | |
| YBL-1 | 0.00 | 0.18 | 3.81 | 47.36 | 46.70 | 1.96 | 0.00 |
| YBL-2 | 0.00 | 0.47 | 4.31 | 34.22 | 57.41 | 3.59 | 0.00 |
| MZTG-1 | 0.01 | 5.23 | 45.47 | 42.54 | 6.76 | 0.00 | 0.00 |
Table 1 Grain size composition of surface sediment of dune
| 沙丘编号 | 含量/% | ||||||
|---|---|---|---|---|---|---|---|
| 黏粒(<0.002 mm) | 粉砂(0.002~0.063 mm) | 极细砂(0.063~0.125 mm) | 细砂(0.125~0.25 mm) | 中砂(0.25~0.5 mm) | 粗砂 (0.5~1 mm) | 极粗砂(1~2 mm) | |
| YBL-1 | 0.00 | 0.18 | 3.81 | 47.36 | 46.70 | 1.96 | 0.00 |
| YBL-2 | 0.00 | 0.47 | 4.31 | 34.22 | 57.41 | 3.59 | 0.00 |
| MZTG-1 | 0.01 | 5.23 | 45.47 | 42.54 | 6.76 | 0.00 | 0.00 |
| 沙丘编号 | 参数 | SiO2 | Al2O3 | Fe2O3 | MgO | CaO | Na2O | K2O |
|---|---|---|---|---|---|---|---|---|
| YBL-1 | 变化范围 | 80.14~87.18 | 6.52~9.18 | 1.26~2.92 | 0.65~1.40 | 0.80~2.07 | 1.82~2.42 | 1.66~2.17 |
| 均值 | 83.53 | 8.04 | 2.08 | 0.99 | 1.30 | 2.11 | 1.94 | |
| YBL-2 | 变化范围 | 82.06~87.12 | 6.43~8.76 | 1.30~2.46 | 0.61~1.20 | 0.80~1.35 | 1.79~2.14 | 1.62~2.09 |
| 均值 | 85.46 | 7.25 | 1.65 | 0.82 | 1.03 | 1.93 | 1.85 | |
| MZTG-1 | 变化范围 | 65.55~74.87 | 10.17~11.40 | 2.32~3.78 | 1.56~2.78 | 5.34~11.74 | 2.66~3.11 | 2.25~2.68 |
| 均值 | 70.20 | 10.83 | 3.05 | 2.07 | 8.55 | 2.82 | 2.48 | |
| 黄土 | 均值 | 66.40 | 14.20 | 4.81 | 2.29 | 1.02 | 1.66 | 3.01 |
| 古土壤 | 均值 | 65.18 | 14.79 | 5.12 | 2.21 | 0.83 | 1.41 | 3.15 |
| UCC | 均值 | 66.00 | 15.20 | 5.00 | 2.20 | 4.20 | 3.90 | 3.40 |
| PAAS | 均值 | 62.80 | 18.90 | 7.22 | 2.20 | 1.30 | 1.20 | 3.70 |
Table 2 Constant oxide content of dune surface sediments (%)
| 沙丘编号 | 参数 | SiO2 | Al2O3 | Fe2O3 | MgO | CaO | Na2O | K2O |
|---|---|---|---|---|---|---|---|---|
| YBL-1 | 变化范围 | 80.14~87.18 | 6.52~9.18 | 1.26~2.92 | 0.65~1.40 | 0.80~2.07 | 1.82~2.42 | 1.66~2.17 |
| 均值 | 83.53 | 8.04 | 2.08 | 0.99 | 1.30 | 2.11 | 1.94 | |
| YBL-2 | 变化范围 | 82.06~87.12 | 6.43~8.76 | 1.30~2.46 | 0.61~1.20 | 0.80~1.35 | 1.79~2.14 | 1.62~2.09 |
| 均值 | 85.46 | 7.25 | 1.65 | 0.82 | 1.03 | 1.93 | 1.85 | |
| MZTG-1 | 变化范围 | 65.55~74.87 | 10.17~11.40 | 2.32~3.78 | 1.56~2.78 | 5.34~11.74 | 2.66~3.11 | 2.25~2.68 |
| 均值 | 70.20 | 10.83 | 3.05 | 2.07 | 8.55 | 2.82 | 2.48 | |
| 黄土 | 均值 | 66.40 | 14.20 | 4.81 | 2.29 | 1.02 | 1.66 | 3.01 |
| 古土壤 | 均值 | 65.18 | 14.79 | 5.12 | 2.21 | 0.83 | 1.41 | 3.15 |
| UCC | 均值 | 66.00 | 15.20 | 5.00 | 2.20 | 4.20 | 3.90 | 3.40 |
| PAAS | 均值 | 62.80 | 18.90 | 7.22 | 2.20 | 1.30 | 1.20 | 3.70 |
| 沙丘编号 | Na/K | Rb/Sr | 淋溶系数β | CIA | ICV | CPA |
|---|---|---|---|---|---|---|
| YBL-1 | 1.65 | 0.40 | 13.41 | 50.34 | 1.23 | 79.13 |
| YBL-2 | 1.59 | 0.42 | 15.28 | 50.64 | 1.20 | 78.91 |
| MZTG-1 | 1.73 | 0.33 | 4.54 | 47.5 | 1.34 | 79.33 |
| UCC | 1.03 | 0.32 | 4.82 | 48.00 | 1.50 | 70.32 |
| PAAS | 0.29 | 0.80 | 7.48 | 70.40 | 0.80 | 90.54 |
Table 3 Indicators of chemical weathering of dune surface sediments
| 沙丘编号 | Na/K | Rb/Sr | 淋溶系数β | CIA | ICV | CPA |
|---|---|---|---|---|---|---|
| YBL-1 | 1.65 | 0.40 | 13.41 | 50.34 | 1.23 | 79.13 |
| YBL-2 | 1.59 | 0.42 | 15.28 | 50.64 | 1.20 | 78.91 |
| MZTG-1 | 1.73 | 0.33 | 4.54 | 47.5 | 1.34 | 79.33 |
| UCC | 1.03 | 0.32 | 4.82 | 48.00 | 1.50 | 70.32 |
| PAAS | 0.29 | 0.80 | 7.48 | 70.40 | 0.80 | 90.54 |
| [1] | 孟小楠,严平,董苗.爬坡沙丘的研究进展[J].北京师范大学学报(自然科学版),2018,54(3):391-396. |
| [2] | Thomas D S G, Bateman M D, Mehrshahi D,et al.Development and environmental significance of an eolian sand ramp of last-glacial age, Central Iran[J].Quaternary Research,1997,48(2):155-161. |
| [3] | Blight G B, Blight J, Blight G F.South Africa's mountain-climbing sand dunes mechanism of formation and present status[J].Journal of the South African Institution of Civil Engineering,2013, 21(7). |
| [4] | 张正偲,董治宝.风沙地貌形态动力学研究进展[J].地球科学进展,2014,29(6):734-747. |
| [5] | Rasmussen K R.Some aspects of flow over coastal dunes[J].Proceedings of the Royal Society of Edinburgh,1989,96(4):1239-1248. |
| [6] | Arens S M.Transport rates and volume changes in a coastal foredune on a Dutch Wadden island[J].Journal of Coastal Conservation,1997,3(1):49-56. |
| [7] | Pye K, Tsoar H.Aeolian Sand and Sand Dunes[M].Springer Berlin,Germany:1990:185-195. |
| [8] | 钱广强,董治宝,罗万银,等.不同坡度障碍物前气流场特征及其对回涡沙丘形成的影响[J].中国科学:地球科学,2012,42(1):34-41. |
| [9] | 钱广强,董治宝,罗万银,等.横向沙丘背风侧气流重附风洞模拟[J].中国沙漠,2008,28(1):16-20. |
| [10] | 王晓旭.坡度与坡形对爬坡沙丘形成影响的风洞模拟试验[D].北京:北京师范大学,2021. |
| [11] | Walker I J, Nickling W G.Simulation and measurement of surface shear stress over isolated and closely spaced transverse dunes in a wind tunnel[J].Earth Surface Processes and Landforms,2003,28(10):1111-1124. |
| [12] | Tsoar H.Wind tunnel modeling of echo and climbing dunes[J].Developments in Sedimentology,1983,38:247-259. |
| [13] | Liu X W, Li S, Shen J Y.Wind tunnel simulation experiment of mountain dunes[J].Journal of Arid Environments,1999,42(1):49-59. |
| [14] | Wang X X, Yan P, Dong M,et al.The Effect of gradient and shape on the formation process of climbing dunes in a wind-tunnel experiment[J].Journal of Geophysical Research:Earth Surface,2022:e2022JF006858. |
| [15] | 杨岩岩,刘连友,屈志强,等.新月形沙丘研究进展[J].地理科学,2014,34(1):76-83. |
| [16] | 董苗,严平,王晓旭,等.青藏高原不同气候带爬坡沙丘沉积物特征及其环境指示[J].地理学报,2023,78(7):1825-1846. |
| [17] | 王晓枝,董治宝,南维鸽,等.拉萨河谷爬坡沙丘沉积物特征[J].中国沙漠,2022,42(4):22-31. |
| [18] | Lancaster N.Geomorphology of Desert Dunes[M].London,UK:Routledge,2013. |
| [19] | Nesbitt H W, Young G M.Early Proterozoic climates and plate motions inferred from major element chemistry of lutites[J].Nature,1982,299(5885):715-717. |
| [20] | Buggle B, Glaser B, Hambach U,et al.An evaluation of geochemical weathering indices in loess-paleosol studies[J].Quaternary International,2011,240(1/2):12-21. |
| [21] | Tirsch D, Craddock R A, Platz T,et al.Spectral and petrologic analyses of basaltic sands in Ka'u Desert (Hawaii):implications for the dark dunes on Mars[J].Earth Surface Processes and Landforms,2012,37(4):434-448. |
| [22] | 董苗,严平,孟小楠,等.青藏高原爬坡沙丘地表沉积物特征分析:以柴达木盆地托拉海河为例[J].水土保持学报,2018,32(4):101-108. |
| [23] | Thomas D S G.Arid Zone Geomorphology:Process,Form and Change in Drylands[M].Hoboken,USA:John Wiley & Sons,2011. |
| [24] | Rowell A, Thomas D, Bailey R,et al.Controls on sand ramp formation in Southern Namibia[J].Earth Surface Processes and Landforms,2018,43(1):150-171. |
| [25] | 陈京平,余子莹,杨帆,等.塔克拉玛干沙漠腹地沙尘暴对新月形沙丘表面粒度变化的影响[J].干旱区地理,2023,46(12):1995-2004. |
| [26] | 杨阳,杨帆,买买提艾力·买买提依明,等.塔克拉玛干沙漠塔中与巴丹吉林沙漠拐子湖地表辐射特征对比[J].中国沙漠,2018,38(5):1068-1077. |
| [27] | 杨逸畴,陆锦华.塔克拉玛干沙漠中麻扎塔格山的形成及其地理意义[J].地理研究,1990,9(3):24-32. |
| [28] | 丛殿阁.内蒙古阿拉善东部地区第四纪地层层序研究[D].北京:中国地质大学(北京), 2012. |
| [29] | 司建华,冯起,常宗强,等.阿拉善雅布赖风沙区荒漠植物群落结构和物种多样性研究[J].西北植物学报,2011,31(3):602-608. |
| [30] | 叶珂.阿拉善盟雅布赖山地区晚古生代岩浆岩的地球化学特征及构造意义[D].北京:中国地质大学(北京),2015. |
| [31] | Folk R L, Ward W C.Brazos River bar:a study in the significance of grain size parameters[J].Journal of Sedimentary Research,1957,27(1):3-26. |
| [32] | Taylor S R, McLennan S M.The Continental Crust:Its Composition and Evolution[M].Oxford,USA:Blackwell Scientific Publications,1985. |
| [33] | Wiggs G F S, Livingstone I, Warren A.The role of streamline curvature in sand dune dynamics:evidence from field and wind tunnel measurements[J].Geomorphology,1996,17(1/3):29-46. |
| [34] | Livingstone I, Wiggs G F S, Weaver C M.Geomorphology of desert sand dunes:a review of recent progress[J].Earth-Science Reviews,2007,80(3/4):239-257. |
| [35] | 罗霖炎,高鑫,赵永成.新月形沙丘表面流场特征[J].中国沙漠,2023,43(4):41-54. |
| [36] | Xiao J H, Qu J J, Yao Z Y,et al.Morphology and formation mechanism of sand shadow dunes on the Qinghai-Tibet Plateau[J].Journal of Arid Land,2015,7:10-26. |
| [37] | Hesp P.Foredunes and blowouts:initiation,geomorphology and dynamics[J].Geomorphology,2002,48(1/3):245-268. |
| [38] | Jackson P S, Hunt J C R.Turbulent wind flow over a low hill[J].Quarterly Journal of the Royal Meteorological Society,1975,101(430):929-955. |
| [39] | Hunt J C R, Leibovich S, Richards K J.Turbulent shear flows over low hills[J].Quarterly Journal of the Royal Meteorological Society,1988,114(484):1435-1470. |
| [40] | Huang N, Zheng X J, Zhou Y H,et al.Simulation of wind‐blown sand movement and probability density function of liftoff velocities of sand particles[J].Journal of Geophysical Research:Atmospheres,2006,111(D20):D20201. |
| [41] | Fedo C M, Wayne Nesbitt H, Young G M.Unraveling the effects of potassium metasomatism in sedimentary rocks and paleosols, with implications for paleoweathering conditions and provenance[J].Geology,1995,23(10):921-924. |
| [42] | 李恩菊.巴丹吉林沙漠与腾格里沙漠沉积物特征的对比研究[D].西安:陕西师范大学,2011. |
| [43] | Cox R, Lowe D R, Cullers R L.The influence of sediment recycling and basement composition on evolution of mudrock chemistry in the Southwestern United States[J].Geochimica et Cosmochimica Acta,1995,59(14):2919-2940. |
| [44] | Price J R, Velbel M A.Chemical weathering indices applied to weathering profiles developed on heterogeneous felsic metamorphic parent rocks[J].Chemical Geology,2003,202(3/4):397-416. |
| [45] | Geyh M A, Heine K.Several distinct wet periods since 420 ka in the Namib Desert inferred from U-series dates of speleothems[J].Quaternary Research,2014,81(2):381-391. |
| [1] | Yue Li, Xuemeng Hao, Fengjun Xiao, Weige Nan, Guangyin Hu, Yili Shang, Lijie Wang. Morphology and sediment grain size of Caragana tibetica nebkhas in the Gonghe Basin [J]. Journal of Desert Research, 2026, 46(2): 11-23. |
| [2] | Junguang Wang, Zhibao Dong, Rongliang Liu, Jiqiao Shi. Characterization of the grain size and geochemical elements of Ulan Buh Desert sediments and their environmental significance [J]. Journal of Desert Research, 2026, 46(2): 358-370. |
| [3] | Huicong Meng, Guangyin Hu, Zhibao Dong, Weige Nan, Haokun Mo, Jingjing Hu. Characteristics of grain size variation of dunes surface sediments before and after wandering dune control in Zoige Basin, China [J]. Journal of Desert Research, 2024, 44(3): 96-107. |
| [4] | Yaoquan Dun, Wanyin Luo, Mei Shao, Fang Wang, Junfeng Lu, Delu Li, Duoqing Man, Xuehua Che. Sand-dust horizontal flux and grain size of inland lake basin in arid region:a case of Qingtu Lake [J]. Journal of Desert Research, 2023, 43(6): 166-175. |
| [5] | Hongxue Zhang, Kecun Zhang, Zhishan An, Yanping Yu. Wind dynamic environment and sediment grain size characteristics of shrub desert along Dunhuang-Golmud Railway [J]. Journal of Desert Research, 2023, 43(5): 49-58. |
| [6] | Ruicong Xu, Zhibao Dong, Weige Nan, Guoxiang Chen, Funing Yang, Lingling Kong. Morphology and sedimentary characteristics of shadow dunes of dead Halogeton arachnoideus in the southern margin of Qaidam Basin, China [J]. Journal of Desert Research, 2023, 43(4): 55-63. |
| [7] | Jingyun Li, Tianyang Fu, Yulong Shen, Lihui Wang, Yongqiu Wu. Grain-size characteristics of surface sediments of barchan and parabolic dunes in the Mu Us Desert [J]. Journal of Desert Research, 2023, 43(2): 226-232. |
| [8] | Xiaozhi Wang, Zhibao Dong, Weige Nan, Chao Li, Chong Gao, Xin Zhang. Sediment characteristics of climbing dunes in Lhasa River Valley, China [J]. Journal of Desert Research, 2022, 42(4): 22-31. |
| [9] | Chong Gao, Zhibao Dong, Weige Nan, Zhengyao Liu, Chunming Zhu, Xiaozhi Wang, Nan Xiao, Xin Zhang. Physicochemical characteristics and sedimentary environment of honeycomb dunes in Gurbantunggut Desert [J]. Journal of Desert Research, 2022, 42(2): 14-24. |
| [10] | Miao Dong, Ping Yan, Xiaoxu Wang, Guoming Zhang, Xiaonan Meng, Xinran Ji, Yong Wang. Characteristics of surface sediments on the climbing dunes in Shannan wide valley section of Yarlung Tsangpo River, China [J]. Journal of Desert Research, 2022, 42(2): 153-163. |
| [11] | Ming Yan, Yinghua Zhang, Li He, Weiming Cheng, Suiji Wang, Jiongxin Xu. Blocking effect of upper reaches of Wuding River on desertification [J]. Journal of Desert Research, 2022, 42(2): 62-68. |
| [12] | Meihui Pan, Zewen Hao, Yuhan Qi, Annan Yang, Yougui Chen, Chenlu Li. Grain size characteristics of moving dune in different geomorphological locations in Pengqu Basin, Tibet, China [J]. Journal of Desert Research, 2021, 41(6): 138-147. |
| [13] | Xiangjie Li, Zhiwen Li, Jiangzhen Zhan, Li Sun, Lan Du, Chu Hou. Grain size characteristics and influencing factors of sediments in the Houtian sandy land of Nanchang, China [J]. Journal of Desert Research, 2021, 41(2): 92-99. |
| [14] | Yuejun Si, Baosheng Li, Zhiwen Li, Fengnian Wang, Dongfeng Niu, Shuhuan Du. A comparative analysis of grain size characteristics of modern aeolian sand and beach sand from the coast of Beibu Gulf in China [J]. Journal of Desert Research, 2020, 40(6): 43-52. |
| [15] | Xiaoxu Wang, Ping Yan, Yong Wang, Miao Dong, Yijiao Wang, Xiao Zhang. Effects of slope gradient and shape on climbing dunes: a wind tunnel experiment [J]. Journal of Desert Research, 2020, 40(6): 118-126. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||
©2018Journal of Desert Research
Tel:0931-8267545
Email:caiedit@lzb.ac.cn;desert@lzb.ac.cn
Support:Magtech