Arid
DOI10.1016/j.jhydrol.2016.11.005
Spatiotemporal soil and saprolite moisture dynamics across a semi-arid woody plant gradient
Niemeyer, Ryan J.1,2; Heinse, Robert3; Link, Timothy E.4; Seyfried, Mark S.5; Klos, P. Zion4; Williams, Christopher J.6; Nielson, Travis7
通讯作者Niemeyer, Ryan J.
来源期刊JOURNAL OF HYDROLOGY
ISSN0022-1694
EISSN1879-2707
出版年2017
卷号544页码:21-35
英文摘要

Woody plant cover has increased 10-fold over the last 140+ years in many parts of the semi-arid western USA. Woody plant cover can alter the timing and amount of plant available moisture in the soil and saprolite. To assess spatiotemporal subsurface moisture dynamics over two water years in a snow dominated western juniper stand we compared moisture dynamics horizontally across a discontinuous canopy, and vertically in soil and saprolite. We monitored soil moisture at 15 and 60 cm and conducted periodic electromagnetic induction and electrical resistivity tomography surveys aimed at sensing moisture changes within the root zone and saprolite. Timing of soil moisture dry down at 15 cm was very similar between canopy patches and interspace. Conversely, dry down at 60 cm occurred 22 days earlier in the interspace than under canopy patches. After rainfall, interspaces with more shrubs showed greater increases in soil moisture than interspaces with few shrubs. For the few rainfall events that were large enough to increase soil moisture at 60 cm, increases in moisture occurred almost exclusively below the canopy. Soil water holding capacity from 0 to 150 cm was a primary driver of areas that were associated with the greatest change in distributed electrical conductivity- an indicator of changes in soil moisture- across the growing season. Vegetation was also correlated with a greater seasonal change in electrical conductivity at these depths. The seasonal change in resistivity suggested moisture extraction by juniper well into the saprolite, as deep as 12 m below the surface. This change in deep subsurface resistivity primarily occurred below medium and large juniper trees. This study suggests how tree roots are both increasing infiltration below their canopy while also extracting moisture at depths of upwards of 12 m. Information from this study can help improve our understanding of juniper resilience to drought and the hydrologic impacts of semi-arid land cover change. (C) 2016 Elsevier B.V. All rights reserved.


英文关键词Infiltration Soil moisture Electromagnetic induction Electrical resistivity tomography Western juniper Sagebrush
类型Article
语种英语
国家USA
收录类别SCI-E
WOS记录号WOS:000392767000003
WOS关键词ELECTRICAL-RESISTIVITY TOMOGRAPHY ; PINYON-JUNIPER WOODLAND ; ELECTROMAGNETIC INDUCTION ; UNITED-STATES ; CRITICAL ZONE ; RIVER-BASIN ; WATER ; STREAMFLOW ; PATTERNS ; SCALE
WOS类目Engineering, Civil ; Geosciences, Multidisciplinary ; Water Resources
WOS研究方向Engineering ; Geology ; Water Resources
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/200559
作者单位1.Univ Idaho, Water Resources Program, Moscow, ID 83843 USA;
2.Univ Washington, Civil & Environm Engn, Seattle, WA 98195 USA;
3.Univ Idaho, Plant Soil & Entomol & Sci, Moscow, ID 83843 USA;
4.Univ Idaho, Coll Nat Resources, Moscow, ID 83843 USA;
5.ARS, USDA, Northwest Watershed Res Ctr, Boise, ID 83712 USA;
6.Univ Idaho, Dept Stat Sci, Moscow, ID 83843 USA;
7.Boise State Univ, Dept Geosci, Boise, ID 83725 USA
推荐引用方式
GB/T 7714
Niemeyer, Ryan J.,Heinse, Robert,Link, Timothy E.,et al. Spatiotemporal soil and saprolite moisture dynamics across a semi-arid woody plant gradient[J],2017,544:21-35.
APA Niemeyer, Ryan J..,Heinse, Robert.,Link, Timothy E..,Seyfried, Mark S..,Klos, P. Zion.,...&Nielson, Travis.(2017).Spatiotemporal soil and saprolite moisture dynamics across a semi-arid woody plant gradient.JOURNAL OF HYDROLOGY,544,21-35.
MLA Niemeyer, Ryan J.,et al."Spatiotemporal soil and saprolite moisture dynamics across a semi-arid woody plant gradient".JOURNAL OF HYDROLOGY 544(2017):21-35.
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