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Published byΞΟάκλΡιΟΞΏΟ Ξ£ΟΞ±Ξ½ΞΏΟ Modified over 6 years ago
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Exercise 3 Overview Slope calculations by hand Verifying using ArcGIS
Automating and applying to larger dataset using Modelbuilder Spatial Analysis of San Marcos Elevation and Precipitation Projecting rasters Examining and visualizing topography Zonal average calculations Thiessen polygons Surface smoothing to average precipitation
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Slope and Aspect π¦ Ξπ₯ πΌ = aspect clockwise from North Ξπ¦ πΌ π₯
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ArcGIS βSlopeβ tool c b f a e i d h g y a b c d e f g h i
πβπ 2β + πβπ 2β πβπ 2β + πβπ 2β 2 2 dz dx = a+2d+g β c+2f+i 8β Similarly dz dy = g+2h+i β a+2b+c 8β Slope magnitude = ππ§ ππ₯ ππ§ ππ¦ 2 x πβπ 2β πβπ 2β c πβπ 2β β b f a e i d h g 2β x y
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ArcGIS Aspect β the steepest downslope direction
Ξπ¦= Ξπ₯= Ξπ₯ Ξπ¦ πΌ Use atan2 to resolve ambiguity in atan direction βΞπ₯ βΞπ¦ πΌ+ 180 π
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Example 30 80 74 63 69 67 56 60 52 48 a b c d e f g h i 145.2o
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Hydrologic Slope (Flow Direction Tool) - Direction of Steepest Descent
30 30 80 74 63 69 67 56 60 52 48 80 74 63 69 67 56 60 52 48 Slope:
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Eight Direction Pour Point Model
32 16 8 64 4 128 1 2 ESRI Direction encoding
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The Dο₯ Algorithm ο z0 Elevations at each vertex zi z2 z1
If ο‘1 does not fit within the triangle the angle is chosen along the steepest edge or diagonal resulting in a slope and direction equivalent to D8
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Dβ Example 30 80 74 63 69 67 56 60 52 48 eo 14.9o e7 e8 284.9o From ArcGIS Pro Help:
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10 z0 26.0 26.4 25.8 4 3 2 πΌ= atan π§ 5 β π§ 6 π§ 0 β π§ 5 z5 5 1 π= π§ 5 β π§ 6 β π§ π β π§ 5 β 2 πΌ 6 7 8 z6
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Subwatershed Precipitation by Thiessen Polygons
Intersect with Subwatersheds Evaluate A*P Product Summarize by subwatershed P1 A2 A1 A3 P3 π= π1βπ΄1+π2βπ΄2+π3βπ΄3 π΄1+π΄2+π΄3
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Subwatershed Precipitation by Thiessen Polygons
Intersect with Subwatersheds Evaluate A*P Product Summarize by subwatershed π π = π π΄ ππ π π π π΄ ππ
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