forested riparian zones affect the temperature regime: a collaborative research project jeffrey a....
TRANSCRIPT
![Page 1: Forested Riparian Zones Affect the Temperature Regime: A collaborative research project Jeffrey A. Simmons Mount St. Mary’s University Presented by Bob](https://reader035.vdocuments.mx/reader035/viewer/2022081519/56649e915503460f94b95e69/html5/thumbnails/1.jpg)
Forested Riparian Zones Affect the Temperature
Regime: A collaborative research
project
Jeffrey A. Simmons
Mount St. Mary’s University
Presented by Bob Pohlad
Ferrum College
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Overview
1. Study Design
2. Research Results
3. Two Curricula
4. Assessment
5. Reflections
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1. Study Design
• 100-m stream segments
• 1 Forested and 1 Open, otherwise similar
• Temperature dataloggers at beginning and end of segments
• Weather stations at midpoint
• Record temperatures every 20 min, June-Sept, 2011
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Temperature datalogger
Open segment
Forested segment
Weather station
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1. Study Design
• Common protocols used at 11 sites across North America
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1
786
910
2
11
435
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Participants
Michelle Anderson
U of Montana Western
Thomas Murray Elizabethtown College
William Dress Robert Morris University
John Niedzwicki Belmont University
Catherine Hanna Robert Morris University
Darlene Panvini Belmont University
Dan Hornbach Macalester College
Bob Pohlad Ferrum College
Alida Janmaat U of Fraser Valley
Frank Kuserk Moravian College Jeffrey Simmons Mount St. Mary’s
James G. March Washington & Jefferson College
Carolyn Thomas Ferrum College
Thomas Murray Elizabethtown College
Liette Vasseur Brock University
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1. Study Design
• Calculated several temperature parameters for each site (e.g., daily maximum T, daily fluctuation)
• Compared Forested vs. Open with paired t-test
• Used heat budget model (SSTEMP) to examine components of heat flux
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2. Research Results
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Site
Dif
fere
nce
in D
aily
Ran
ge (
C)
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2. Research Results
• Overall, forested segments were cooler and had less extreme temperatures than open segments
• Amount of light was the main cause of daily variability and site differences
• Groundwater inputs can offset canopy/light effects.
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2. Research Results
• Manuscript has been published (open access)
A comparison of the stream temperature regime under forested and non-forested
riparian zones at eleven sites across North America
Simmons, et al. 2014. River Research and Applications (online)
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3. Two Curricula
• Two inquiry-driven lab activities were developed to provide a link between the research project and teaching.
• Each includes student instructions, Instructor tips, worksheets, analysis questions, answer key and data from the project (erenweb.org/education/curricula).
• Instructors can replicate the study at their own site and compare their results with those of the EREN study.
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4. Assessment
• Pre-/Post-content test was administered to 58 students at six institutions
• Overall student scores increased by 28% (paired t-test, p < 0.001).
• Scores from 4 questions related to spatial scale increased by 22% (p < 0.01)
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5. Reflections
• Compared to other EREN projects• Limited duration, limited commitment for
participants• Less student involvement (automated data
collection)• Faster publication• Similar cost (low)
• Common written protocol was the key to success
• Maintaining equipment (floods, vandalism) and downloading frequently were challenges.
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The End
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