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LONG‐TERM AQUATIC HABITAT RESTORATION: MAHOGANY CREEK, NEVADA, AS A CASE STUDY 1
Author(s) -
Myers Thomas J.,
Swanson Sherman
Publication year - 1996
Publication title -
jawra journal of the american water resources association
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.957
H-Index - 105
eISSN - 1752-1688
pISSN - 1093-474X
DOI - 10.1111/j.1752-1688.1996.tb03448.x
Subject(s) - environmental science , hydrology (agriculture) , streams , rangeland , tributary , grazing , sedimentation , cobble , erosion , sediment , watershed , debris , deposition (geology) , coarse woody debris , habitat , geology , ecology , agroforestry , geography , geomorphology , oceanography , computer network , geotechnical engineering , cartography , machine learning , computer science , biology
We compared the recovery from abusive grazing of aquatic habitat due to different range management on two geomorphically similar rangeland streams in northwest Nevada. Managers excluded livestock from the Mahogany Creek watershed from 1976 to 1990 while allowing rotation of rest grazing on its tributary Summer Camp Creek. Bank stability, defined as the lack of apparent bank erosion or deposition, improved through the study period on both streams, but periodic grazing and flooding decreased stability more on Summer Camp Creek than flooding alone on Mahogany Creek. Pool quantity and quality on each stream decreased because of coarse woody debris removal and sediment deposition during a drought. Fine stream bottom sediments decreased five years after the removal of livestock, but sedimentation increased during low flows in both streams below road crossings. Tree cover increased 35 percent at both streams. Thus, recovery of stability and cover and decreased sedimentation are compatible with rotation of rest grazing on Summer Camp Creek. Width/depth ratio and gravel/cobble percent did not change because they are inherently stable in this stream type. Management activities such as coarse woody debris removal limited pool recover and road crossings increased sedimentation.

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