|
|
Soil moisture characteristics and temporal stability on the slope of the Loess Plateau: A case study of Jiulongquan ditch in Yan'an city |
SHAN Yulin1,2, XIE Jiancang1, HAN Jichang2, LEI Na2, DONG Qiguang2 |
1. Key Laboratory of Eco-hydraulics in Northwest Arid Region of China, Xi'an University of Technology, 710048, Xi'an, China; 2. Shaanxi Provincial Land Engineering Construction Group Co., Ltd., 710075, Xi'an, China |
|
|
Abstract [Background] The Loess Plateau is one of the typical ecologically fragile areas of China, due to the lacking of research on the temporal stability of soil moisture, unreasonable vegetation selection and planting density in the long-term afforestation process have caused the problem of soil drying, here we try to clarify the characteristics of soil moisture in the slope of watershed of the gully land consolidation watershed in the Loess Plateau, and to further guide the implementation of the gully land consolidation project and vegetation restoration in this area,[Methods] This study selected a typical slope facing southwest with a gentle gradient of a watershed of the Loess Plateau as the research object. The soil moistures of different slope positions (up-slope, mid-slope and lower slope) were monitored by TRIME-PICO TDR, with 4 monitoring points per slope position. The monitoring time was from May to September 2017 of a total of 4 times. The soil moisture was analyzed with multiple statistical methods, and its temporal stability was analyzed using Spearman rank correlation coefficient, relative deviation, temporal stability index, mean absolute deviation and root mean square error.[Results] 1) The average soil moisture of different slope positions increased with the increase of soil depth, and the variability of soil moisture content decreased with the increase of depth at the up-slope and mid-slope, and decreased first and then increaseed at the lower slope. 2) On different slope positions, the distribution characteristics of soil moisture content were as follows:up-slopeP<0.05). 4)The temporal stability analysis of the soil moisture content showed that a high stability between August and September of the soil moisture content of the 0-50 cm soil layer, and the correlation of two month data was extremely significant (P<0.01), while the soil moisture content of the soil layer in the 50-100 cm range had a significant correlation between May and June. 5) The time stability of soil moisture in the mid-slope position was the highest, followed by the up-slope position, and the temporal stability of the soil moisture in the lower slope position was the lowest. 6) The best time stability point in the study area was the M3 point of the mid-slope position, as the representative point of optimal time stability of 0-100 cm soil layer on slope.[Conculsions] The temporal stability of the moisture on the mid-slopes of the Loess Plateau is stronger. The results are expected to provide a reference for the selection of vegetation structure and evaluation of soil moisture content in soil and water conservation and ecological restoration of the watershed of Loess Plateau.
|
Received: 12 March 2020
|
|
|
|
|
[1] |
艾宁,宗巧鱼,刘广全,等.陕北黄土区浅沟土壤水分空间分布特征[J].水土保持学报,2019,33(5):85. AI Ning, ZONG Qiaoyu, LIU Guangquan, et al. Spatial distribution characteristics of soil moisture in ephemeral gully in loess region of northern Shaanxi[J]. Journal of Soil and Water Conservation, 2019,33(5):85.
|
[2] |
WANG Yunqiang, HU Wei, ZHU Yuanjun, et al. Vertical distribution and temporal stability of soil water in 21 m profiles under different land uses on the Loess Plateau in China[J]. Journal of Hydrology, 2015, 527:543.
|
[3] |
张鹏,王冬梅,丁聪,等.青海高寒丘陵区土壤有效水的时间稳定性[J].中国水土保持科学,2019,17(5):9. ZHANG Peng, WANG Dongmei, DING Cong, et al. Time stability of soil effective moisture in alpine hilly region of Qinghai[J]. Science of Soil and Water Conservation, 2019,17(5):9.
|
[4] |
张帅普,邵明安,李丹凤.绿洲-荒漠过渡带土壤蓄水量的空间分布及其时间稳定性[J].应用生态学报,2017,28(8):2509. ZHANG Shuaipu, SHAO Ming'an, LI Danfeng. Spatial distribution and temporal stability of soil water storage in an oasis-desert ecotone[J]. Chinese Journal of Applied Ecology, 2017, 28(8):2509.
|
[5] |
JIN Zhao, GUO Li, WANG Yunqiang, et al. Valley reshaping and damming induce water table rise and soil salinization on the Chinese Loess Plateau[J]. Geoderma, 2019, 339:115.
|
[6] |
王力,邵明安.黄土高原退耕还林条件下的土壤干化问题[J].世界林业研究,2004,17(4):57. WANG Li, SHAO Ming'an. Soil desiccation under the returning farms to forests on the Loess Plateau[J]. World Forestry Research,2004,17(4):57.
|
[7] |
LIU Yansui, GUO Yanjun, LI Yurui, et al. GIS-based effect assessment of soil erosion before and after gully land consolidation:A case study of Wangjiagou project region, Loess Plateau[J]. Chinese Geographical Science, 2015, 25(2):137.
|
[8] |
陈洪松.坡面尺度土壤特性的空间变异性[J].水土保持通报,2004,24(6):45. CHEN Hongsong. Hillslope-scale spatial variability of some soil properties[J]. Bulletin of Soil and Water Conservation,2004,24(6):45.
|
[9] |
JACOBS J M, MOHANTY B P, HSU E C, et al. SMEX02:Field scale variability, time stability and similarity of soil moisture[J]. Remote Sensing of Environment, 2004, 92(4):436.
|
[10] |
董起广,张扬,陈田庆,等.黄土高原丘陵沟壑区小流域坡面土壤水分分布特征[J].中国农村水利水电,2018,60(7):65. DONG Qiguang, ZHANG Yang, CHEN Tianqing, et al. Soil moisture distribution characteristics of small catchment slope in the Loess Plateau hilly-gully region[J]. China Rural Water and Hydropower, 2018,60(7):65.
|
[11] |
何子淼,肖培青,郝仕龙,等.黄丘区野外坡面土壤水分变化对次降雨过程的响应[J].中国水土保持科学,2018,16(4):16. HE Zimiao, XIAO Peiqing, HAO Shilong, et al. Response of soil moisture variation to individual rainfall on the field slope in the loessial hilly-gully region[J]. Science of Soil and Water Conservation, 2018, 16(4):16.
|
[12] |
ZHANG Pingping,SHAO Minag'an. Temporal stability of surface soil moisture in a desert area of northwestern China[J]. Journal of Hydrology, 2013, 505:91.
|
[13] |
XU Guoce, REN Zongping, LI Peng, et al. Temporal persistence and stability of soil water storage after rainfall on terrace land[J]. Environmental Earth Sciences, 2016, 75(11):75.
|
[14] |
朱绪超,邵明安,朱军涛,等.高寒草甸生态系统表层土壤水分时间稳定性研究[J].农业机械学报,2017,48(8):212. ZHU Xuchao, SHAO Ming'an, ZHU Juntao, et al. Temporal stability of surface soil moisture in alpine meadow ecosystem on northern Tibetan Plateau[J]. Transactions of the Chinese Society for Agricultural Machinery, 2017, 48(8):212.
|
[15] |
MOHANTY B P, SKAGGS T H. Spatio-temporal evolution and time-stable characteristics of soil moisture within remote sensing footprints with varying soil, slope, and vegetation[J]. Advances in Water Resources, 2001, 24(9):1051.
|
[16] |
CASSEL D K, WENDROTH O, NIELSEN D R. Assessing spatial variability in an agricultural experiment station field:Opportunities arising from spatial dependence[J]. Agronomy Journal,2000, 92(4):706.
|
|
|
|