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1. 内蒙古农业大学 沙漠治理学院,内蒙古,呼和浩特,010018
2. 鄂托克前旗林业生态保护中心,内蒙古,鄂尔多斯,016200
3. 鄂尔多斯市地质调查监测院,内蒙古,鄂尔多斯,017010
Published:2024
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Ma Ze, Meng Zhongju, LuoJianguo, et al. Wind-prevention and Sand Fixation Effects of Checkerboard Sand Barrier Along Typical Yellow River Bank in Ulan Buh Desert[J]. Bulletin of Soiland Water Conservation, 2024, 44(2): 1-10.
Ma Ze, Meng Zhongju, LuoJianguo, et al. Wind-prevention and Sand Fixation Effects of Checkerboard Sand Barrier Along Typical Yellow River Bank in Ulan Buh Desert[J]. Bulletin of Soiland Water Conservation, 2024, 44(2): 1-10. DOI: 10.13961/j.cnki.stbctb.2024.02.001.
[目的] 探究乌兰布和沙漠典型沿黄段机械沙障的固沙效果,为沙区沿黄段的沙障合理配置及应用提供理论支撑和科学参考。 [方法] 以2 m×2 m规格的纱网沙障、聚乳酸(PLA)沙障、麦草沙障为研究对象,通过测定格状沙障近地表10,20,50,100和200 cm处的风速,同步收集近地表0—50 cm处的风蚀物颗粒,对3种格状沙障在形成稳定障面后的防风固沙效应进行研究。 [结果] ①纱网沙障、PLA沙障和麦草沙障均有效降低了近地表风速,尤以距地表10 cm高度处最为明显。在10.32 m/s风速下,其防风效能分别达到了49.73%,39.92%和38.33%。 ②PLA沙障的风速廓线呈现S形曲线特征,3种沙障的粗糙度均较裸沙丘有较大提升。 ③与裸沙丘相比,3种沙障降低了近地表10 cm处风的扰动度。 ④纱网沙障、PLA沙障和麦草沙障的输沙率随高度均呈指数关系,固沙效应分别为94.37%,44.80%和53.16%。3种沙障相较于裸沙丘有效抬升了沙粒的平均跃移高度,纱网沙障提升为对照的5.35倍。 [结论] 根据乌兰布和沙漠沿黄段风沙活动程度及材料可获取性,建议从河岸向流动沙丘依次布设麦草沙障固沙,聚乳酸纤维沙障固沙促生,纱网沙障防风固沙,实现3种格状沙障防风固沙综合效益的最大发挥。
[Objective] The sand fixation effects of mechanical sand barrier along typical Yellow River bank in Ulan Buh Desert were studied in order to provide theoretical supports and scientific references for the rational configuration and application of sand barriers in the desert areas along the Yellow River. [Methods] Checkerboard sand barriers comprised of 2 m×2 m gauze
polylactic acid (PLA)
and straw were evaluated. Measurements of wind speed at heights of 10
20
50
100
and 200 cm above the three checkerboard sand barrier treatments and the simultaneous collection of aeolian dust from 0 to 50 cm near the surfaces were used to determine the effects of three types of sand barrier on wind prevention and sand fixation after forming a stable barrier surface. [Results] ① The sand barriers of gauze
PLA
and straw all effectively reduced the near-surface wind speed
especially at the height of 10 cm. When the wind speed was 10.32 m/s
the wind protection efficiency of the three sand barriers reached 49.73%
39.92%
and 38.33%
respectively. ② The wind speed profile of the PLA sand barrier had an S-shaped curve
and the roughness of the three types of sand barriers was greater than observed for the bare dune. ③ Compared with the bare dune
the three types of sand barriers reduced the degree of wind disturbance at the height of 10 cm above the surface. ④ The sediment transport rate of the gauze
PLA
and straw sand barriers showed an exponential relationship with height
and the sand fixation effect was 94.37%
44.80%
and 53.16%
respectively. Compared with the bare dune
these three types of sand barriers effectively elevated the average saltation height of sand grains
and the gauze sand barrier elevated to 5.35 times that of the control. [Conclusion] According to the degree of wind and sand activity along the Yellow River bank in Ulan Buh Desert
and the availability of sand barrier materials
it is suggested that
from the river bank to the mobile sand dunes
people should sequentially arrange straw sand barriers to fix sand
polylactic acid fiber sand barriers to fix sand and promote vegetation growth
and gauze sand barriers to prevent wind and fix sand. Therefore
the best comprehensive benefit of three kinds of checkerboard sand barriers to prevent wind and fix sand could be achieved.
朱震达.土地荒漠化问题研究现状与展望[J].地理研究,1994,13(1):104-113. Zhu Zhenda. Current status and prospects of land desertification problem[J]. Geographical Research, 1994,13(1):104-113.
朱震达,崔书红.中国荒漠化土地分布地域特征及其治理措施的评估[J].中国环境科学,1996,16(5):328-334. Zhu Zhenda, Cui Shuhong. Features of distribution and assessment for control measures of desertification in China[J]. China Environmental Science, 1996,16(5):328-334.
孙保平.荒漠化防治工程学[M].北京:中国林业出版社,2000. Sun Baoping. Desertification Control Project[M]. Beijing:China Forestry Publishing House, 2000.
马鹏.格状沙障防风固沙技术研究[D].甘肃兰州:兰州大学,2015. Ma Peng. Research of checkerboard sand barrier sand-fixing technology[D]. Lanzhou, Gansu:Lanzhou University, 2015.
Bo Tianli, Ma Peng, Zheng Xiaojing. Numerical study on the effect of semi-buried straw checkerboard sand barriers belt on the wind speed[J]. Aeolian Research, 2015,16(4):101-107.
Zhang Chunlai, Li Qing, Zhou Na, et al. Field observations of wind profiles and sand fluxes above the windward slope of a sand dune before and after the establishment of semi-buried straw checkerboard barriers[J]. Aeolian Research, 2016,20(1):59-70.
Xie Yunhu, Dang Xiaohong, Zhou Yujuan, et al. Using sediment grain size characteristics to assess effectiveness of mechanical sand barriers in reducing erosion[J]. Scientific Reports, 2020,10(1):14009.
石麟,李红悦,赵雨兴,等.毛乌素沙地流动沙丘不同沙障组合措施的防风固沙效益评价[J].干旱区研究,2023,40(2):268-279. Shi Lin, Li Hongyue, Zhao Yuxing, et al. Benefit evaluation of wind prevention and sand fixation under the combined measures of sand barrier in mobile dunes in Mu Us sandy land[J]. Arid Zone Research, 2023, 40(2):268-279.
马瑞,王继和,屈建军,等.不同结构类型棉秆沙障防风固沙效应研究[J].水土保持学报,2010,24(2):48-51. Ma Rui, Wang Jihe, Qu Jianjun, et al. Study on protective effect of difference types of cotton haulm sand barriers[J]. Journal of Soil and Water Conservation, 2010, 24(2):48-51.
黄富祥,高琼.毛乌素沙地不同防风材料降低风速效应的比较[J].水土保持学报,2001,15(1):27-30. Huang Fuxiang, Gao Qiong. Comparison of wind velocity reduced by seven different windproof materials in Maowusu sandland[J]. Journal of Soil and Water Conservation, 2001, 15(1):27-30.
贾丽娜,丁国栋,吴斌,等.几种不同材料类型带状沙障防风阻沙效益对比研究[J].水土保持学报,2010,24(1):41-44. Jia Lina, Ding Guodong, Wu Bin, et al. Effect of different material types of sand barrier on wind prevention and sand resistance[J]. Journal of Soil and Water Conservation, 2010, 24(1):41-44.
屈建军,凌裕泉,刘宝军,等.我国风沙防治工程研究现状及发展趋势[J].地球科学进展,2019,34(3):225-231. Qu Jianjun, Ling Yuquan, Liu Baojun, et al. The research status and development trends of wind-sand engineering in China[J]. Advances in Earth Science, 2019, 34(3):225-231.
党晓宏,高永,虞毅,等.新型生物可降解PLA沙障与传统草方格沙障防风效益[J].北京林业大学学报,2015,37(3):118-125. Dang Xiaohong, Gao Yong, Yu Yi, et al. Windproof efficiency with new biodegradable PLA sand barrier and traditional straw sand barrier[J]. Journal of Beijing Forestry University, 2015, 37(3):118-125.
闫德仁,袁立敏,黄海广,等.直压立式纱网沙障对近地表输沙量及风速的影响[J].中国沙漠,2020,40(2):79-85. Yan Deren, Yuan Limin, Huang Haiguang, et al. Influence of gauze sand barrier on sediment transport and wind speed near surface[J]. Journal of Desert Research, 2020, 40(2):79-85.
李凯崇,谭立海,石龙,等.孔隙率对芦苇沙障风沙防护效果影响分析[J].铁道学报,2022,44(5):166-170. Li Kaichong, Tan Lihai, Shi Long, et al. Influence of porosity on blown sand protection effect of reed sand barrier[J]. Journal of the China Railway Society, 2022,44(5):166-170.
张帅,丁国栋,高广磊,等.硬质地HDPE沙障防风效益的风洞试验[J].北京林业大学学报,2020,42(3):127-133. Zhang Shuai, Ding Guodong, Gao Guanglei, et al. Wind tunnel test on windproof benefit of horniness HDPE sand barrier[J]. Journal of Beijing Forestry University, 2020,42(3):127-133.
Walker I J, Shugar D H. Secondary flow deflection in the lee of transverse dunes with implications for dune morphodynamics and migration[J]. Earth Surface Processes and Landforms, 2013,38(14):1642-1654.
周炎广,李红悦,武子丰,等.毛乌素沙地沙障固沙机制与效益评估[J].科学通报,2023,68(11):1312-1329. Zhou Yanguang, Li Hongyue, Wu Zifeng, et al. Sand fixation mechanism and effect evaluation of sand barriers in Mu Us sandy land, China[J]. Chinese Science Bulletin, 2023, 68(11):1312-1329.
田世民,姚文艺,郭建英,等.乌兰布和沙漠风沙入黄影响因子变化特征[J].中国沙漠,2016,36(6):1701-1707. Tian Shiming, Yao Wenyi, Guo Jianying, et al. Variation of impact factors on the aeolian sand blown into the Yellow River in the Ulanbuh Desert area[J]. Journal of Desert Research, 2016, 36(6):1701-1707.
杨根生,刘阳宣,史培军.黄河沿岸风成沙入黄沙量估算[J].科学通报,1988, 1(13):1017-1021. Yang Gensheng, Liu Yangxuan, Shi Peijun. Estimation of the amount of sand entering the Yellow River along the Yellow River[J]. Chinese Science Bulletin, 1988,33(13):1017-1021.
胡平,杨建英,张艳,等.乌海市沿黄河两岸沙丘风沙流结构差异与冰面风沙特征[J].干旱区研究,2020,37(3):765-773. Hu Ping, Yang Jianying, Zhang Yan, et al. Structure difference of w.nd sand flow and characteristics of wind sand on the ice surface of sand dunes on both sides of the Yellow River in Wuhai City[J]. Arid Zone Research, 2020,37(3):765-773.
韩雪莹,王涛,杨文斌,等.中国沙障研究进展与热点分析:基于Vosviewer和Citespace的图谱量化分析[J].中国沙漠,2021,41(2):153-163. Han Xueying, Wang Tao, Yang Wenbin, et al. Research progress and hotspot analysis of sand barrier in China quantitative analysis of atlas based on Vosviewer and Citespace[J]. Journal of Desert Research, 2021, 41(2):153-163.
Wiggs G F S. Desert dune dynamics and the evaluation of shear velocity:An integrated approach[J]. Geological Society of London Special Publications, 1993,72(1):37-46.
Wiggs G F S, Livingstone I, Thomas D S G, et al. Airflow and roughness characteristics over partially vegetated linear dunes in the southwest Kalahari Desert[J]. Earth Surface Processes and Landforms, 1996,21(1):19-34.
Sharratt B, Feng Guanglong. Friction velocity and aerodynamic roughness of conventional and undercutter tillage within the Columbia Plateau, USA[J]. Soil and Tillage Research, 2009,105(2):236-241.
王晨沣,王玉杰,袁立敏,等.不同形状沙袋沙障稳定性及防风效益[J].水土保持学报,2015,29(5):7-12. Wang Chenfeng, Wang Yujie, Yuan Limin, et al. Stability and wind-break effect of sandbag barriers of different shapes[J]. Journal of Soil and Water Conservation, 2015, 29(5):7-12.
齐之尧.风的扰动度[J].内蒙古林业科技,1978,4(4):15-17. Qi Zhiyao. Disturbance degree of wind[J]. Journal of Inner Mongolia Forestry Science and Technology, 1978,4(4):15-17.
朱泊年,党晓宏,蒙仲举,等.乌珠穆沁沙地生物基可降解聚乳酸(PLA)沙障防风固沙效益[J].水土保持研究,2023,30(2):431-437. Zhu Bonian, Dang Xiaohong, Meng Zhongju, et al. Effects of biodegradable poly lactic acid (PLA) sand barrier on wind prevention and sand fixation in Urumqi Sandy Land[J]. Research of Soil and Water Conservation, 2023,30(2):431-437.
高天笑,王涛,杨文斌,等.低覆盖度羽翼袋沙障防风积沙效应的风洞试验[J].中国沙漠,2019,39(6):177-183. Gao Tianxiao, Wang Tao, Yang Wenbin, et al. Wind tunnel experimental study on the effect of wind-proof and sand accumulation in low coverage wingbag sand barrier[J]. Journal of Desert Research, 2019,39(6):177-183.
王雨浩.麦草、PLA及其混合沙障防风固沙效益研究[D].内蒙古呼和浩特:内蒙古师范大学,2019. Wang Yuhao. Study on the Benefits of wind and sand fixing of wheat straw poly lactic acid fiber and their mixed sand barriers[D]. Hohhot, Inner Mongolia:Inner Mongolia Normal University, 2019.
周娜,张春来,田金鹭,等.半隐蔽式草方格沙障凹曲面形成的流场解析及沉积表征[J].地理研究,2014,33(11):2145-2156. Zhou Na, Zhang Chunlai, Tian Jinlu, et al. Flow field controlling the concave surface of the semi-buried checkerboards and its characterization by grain sizes of sediments[J]. Geographical Research, 2014, 33(11):2145-2156.
闫德仁,杨制国,高海燕,等.直压立式纱网沙障不同取样季节输沙量变化特征[J].水土保持通报,2022,42(4):129-134. Yan Deren, Yang Zhiguo, Gao Haiyan, et al. Variation characteristics of sediment transport for a vertical gauze sand barrier during different sampling seasons[J]. Bulletin of Soil and Water Conservation, 2022, 42(4):129-134.
方海燕,屈建军,俎瑞平,等.防沙工程的结皮效应研究[J].水土保持学报,2005,19(2):17-20. Fang Haiyan, Qu Jianjun, Zu Ruiping, et al. Research on effect of sand prevention and control engineering on formation of physical crust[J]. Journal of Soil and Water Conservation, 2005,19(2):17-20.
虞毅.沙袋沙障防沙治沙技术[M].北京:科学出版社,2014. Yu Yi. Sandbag Sand Barrier Sand Prevention and Control Technology[M]. Beijing:Science Press, 2014.
袁立敏,黄海广,闫德仁,等.不同沙埋程度下带状沙障的防风固沙效果研究[J].农业工程学报,2019,35(16):172-179. Yuan Limin, Huang Haiguang, Yan Deren, et al. Effect of wind-preventing and sand fixation of belt sand barrier under different degree of sand burial[J]. Transactions of the Chinese Society of Agricultural Engineering, 2019, 35(16):172-179.
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