How to Create Stream Networks using DEM and TauDEM

Similar documents
Delineation of Watersheds

Creating Watersheds from a DEM

The Geodatabase Working with Spatial Analyst. Calculating Elevation and Slope Values for Forested Roads, Streams, and Stands.

MERGING (MERGE / MOSAIC) GEOSPATIAL DATA

Handling Raster Data for Hydrologic Applications

Tutorial 8 Raster Data Analysis

Automatic Watershed Delineation using ArcSWAT/Arc GIS

Watershed Delineation

Calhoun County, Texas Under 5 Meter Sea Level Rise

(THIS IS AN OPTIONAL BUT WORTHWHILE EXERCISE)

Watershed Modeling Orange County Hydrology Using GIS Data

Using the Stock Hydrology Tools in ArcGIS

Data Structures & Database Queries in GIS

Creating Watersheds from a DEM in ArcGIS 9.x

Using a GIS to Calculate Area of Occupancy. Part 1: Creating a Shapefile Grid

Catchment Delineation Workflow

Exercise 2: Working with Vector Data in ArcGIS 9.3

Exercise 3: GIS data on the World Wide Web

Watershed Analysis of the Blue Ridge Mountains in Northwestern Virginia

Lab 1: Importing Data, Rectification, Datums, Projections, and Coordinate Systems

WORKING WITH DMTI DIGITAL ELEVATION MODELS (DEM)

SIE 509 Principles of GIS Exercise 5 An Introduction to Spatial Analysis

Using ArcGIS for Hydrology and Watershed Analysis:

CE 365K Exercise 1: GIS Basemap for Design Project Spring 2014 Hydraulic Engineering Design

Lab 1: Importing Data, Rectification, Datums, Projections, and Output (Mapping)

Exercise 4. Watershed and Stream Network Delineation

Exercise 6: Working with Raster Data in ArcGIS 9.3

Determining the Location of the Simav Fault

Exercise 6: Using Burn Severity Data to Model Erosion Risk

Task 1: Start ArcMap and add the county boundary data from your downloaded dataset to the data frame.

DEMs Downloading and projecting and using Digital Elevation Models (DEM)

Within this document, the term NHDPlus is used when referring to NHDPlus Version 2.1 (unless otherwise noted).

In this exercise we will learn how to use the analysis tools in ArcGIS with vector and raster data to further examine potential building sites.

Outcrop suitability analysis of blueschists within the Dry Lakes region of the Condrey Mountain Window, North-central Klamaths, Northern California

GIS IN ECOLOGY: ANALYZING RASTER DATA

Geo 327G Semester Project. Landslide Suitability Assessment of Olympic National Park, WA. Fall Shane Lewis

Outline. Chapter 1. A history of products. What is ArcGIS? What is GIS? Some GIS applications Introducing the ArcGIS products How does GIS work?

Spatial Data Analysis in Archaeology Anthropology 589b. Kriging Artifact Density Surfaces in ArcGIS

v WMS Tutorials GIS Module Importing, displaying, and converting shapefiles Required Components Time minutes

In order to follow this exercise you need to have completed exercise 1.

GIS IN ECOLOGY: ANALYZING RASTER DATA

Exercise 4. Watershed and Stream Network Delineation

EXERCISE 12: IMPORTING LIDAR DATA INTO ARCGIS AND USING SPATIAL ANALYST TO MODEL FOREST STRUCTURE

Watershed and Stream Network Delineation

How to Convert USGS Topographic GeoPDF 1 Maps to GeoTIFF using ArcGIS 10.4

Compilation of GIS data for the Lower Brazos River basin

ArcHYDRO: GIS for Water Resources

Part 1: GIS Data from the Web: Downloading and Projecting Digital Elevation Models (DEM) and BTS Road data

Exercise 4. Watershed and Stream Network Delineation

GEOG 487 Lesson 7: Step-by-Step Activity

Learning Unit Student Guide. Title: Estimating Areas of Suitable Grazing Land Using GPS, GIS, and Remote Sensing

The data for this lab comes from McDonald Forest. We will be working with spatial data representing the forest boundary, streams, roads, and stands.

caused displacement of ocean water resulting in a massive tsunami. II. Purpose

GIS in Management Planning. Lab 2 Coordinate Systems and Map Projections

Outline Anatomy of ArcGIS Metadata Data Types Vector Raster Conversion Adding Data Navigation Symbolization Methods Layer Files Editing Help Files

Delineation of high landslide risk areas as a result of land cover, slope, and geology in San Mateo County, California

v Prerequisite Tutorials GSSHA WMS Basics Watershed Delineation using DEMs and 2D Grid Generation Time minutes

Land Cover Data Processing Land cover data source Description and documentation Download Use Use

Watershed Modeling With DEMs

Exercise 2: Working with Vector Data in ArcGIS 9.3

i-tree Eco Random Plots Workbook: Pre - Stratification Tips red green

Lab 2: Projecting Geographic Data

Working with Digital Elevation Models in ArcGIS 8.3

GIS Workshop UCLS_Fall Forum 2014 Sowmya Selvarajan, PhD TABLE OF CONTENTS

Learning ArcGIS: Introduction to ArcCatalog 10.1

Downloading GPS Waypoints

Task 1: Open ArcMap and activate the Spatial Analyst extension.

Supplementary Information B

IDW-Plus Tutorial. Erin E. Peterson

Trail Flow: Analysis of Drainage Patterns Affecting a Mountain Bike Trail

Exercise 4. Watershed and Stream Network Delineation

How to create a new geodatabase using the extract data wizard. 1. How to Extract the Schema to create a Geodatabase using an existing design.

Open ArcToolbox Spatial Analyst Tools Hydrology. This should display the tools shown at the right:

Assessing Point Groundwater Contamination Potential

Exercise 4. Watershed and Stream Network Delineation

Preparing a NFIE-Geo Database for Travis County

Today: GEOL 452/552 - GIS for Geoscientists I. Lecture 3 - Chapter 1. GIS vector Data (review) Let s annotate this layer (draw on paper)

Lab 7: Cell, Neighborhood, and Zonal Statistics

Global Atmospheric Circulation Patterns Analyzing TRMM data Background Objectives: Overview of Tasks must read Turn in Step 1.

GIS CONCEPTS ARCGIS METHODS AND. 2 nd Edition, July David M. Theobald, Ph.D. Natural Resource Ecology Laboratory Colorado State University

ArcGIS 9 ArcGIS StreetMap Tutorial

Urban Canopy Tool User Guide `bo`

11. Kriging. ACE 492 SA - Spatial Analysis Fall 2003

Presenting Tree Inventory. Tomislav Sapic GIS Technologist Faculty of Natural Resources Management Lakehead University

SLR Calculator: Sea Level Rise (SLR) Inundation Surface Calculator Add-in for ArcGIS Desktop & 10.4

Week 7 Last week: This week s topics. GIS and Forest Engineering Applications. FE 257. GIS and Forest Engineering Applications.

Creating Faulted Geologic Surfaces with ArcGIS

Lab 5 - Introduction to the Geodatabase

Overlay Analysis II: Using Zonal and Extract Tools to Transfer Raster Values in ArcMap

Building a Hydrologic Base Map Prepared by David R. Maidment Waterways Centre for Freshwater Research University of Canterbury

In order to save time, the following data files have already been preloaded to the computer (most likely under c:\odmc2012\data\)

WMS 9.0 Tutorial GSSHA Modeling Basics Infiltration Learn how to add infiltration to your GSSHA model

Practical I ArcGIS (10.0) Basics

IDENTIFYING THE TYPE OF COORDINATE SYSTEM FOR DATA USING ARCMAP

GIS CONCEPTS ARCGIS METHODS AND. 3 rd Edition, July David M. Theobald, Ph.D. Warner College of Natural Resources Colorado State University

JJ Munoz. Explanation of the Project/Outline

GEOREFERENCING, PROJECTIONS Part I. PRESENTING DATA Part II

Lab 4 -Vector data and Attributes

How to Model Stream Temperature Using ArcMap

Identifying coordinate systems for data using ArcMap

Transcription:

How to Create Stream Networks using DEM and TauDEM Take note: These procedures do not describe all steps. Knowledge of ArcGIS, DEMs, and TauDEM is required. TauDEM software ( http://hydrology.neng.usu.edu/taudem/ ) must be installed as an ArcGIS plugin module before proceeding. We used 4 th code Hydrologic Unit Codes (HUCs) for this project. The use of HUC17060208 and the path \Base_Layers\DEM\17060208\ referenced throughout these instructions is for illustration purposes only. Use the HUC number and file path that is appropriate for your project. Bolded text indicates the creation of a new file. Preliminary Steps In ArcCatalog, create an ArcInfo Workspace. For example: C:\WorkSpace\TroutProject\Base_Layers\DEM\17060208 In ArcMap, open a 4 th code HUC layer that is in the Lat/Long projection and select the HUC. Create a new layer of the selected HUC (i.e., export the selection). Buffer the HUC boundary by 250m. (To add the Buffer Wizard tool in ArcMap, Select from the toolbar: Tools > Customize > Commands > Tools > Buffer Wizard. Drag the Buffer Wizard tool to a toolbar. Click Close.) In ArcMap click the Buffer Wizard, choose the HUC > Next select: At a specified distance > 250 meters > Next select: Dissolve barriers between buffers? > Yes select: outside polygon(s) and include inside select: In a new layer Save the shapefile to the correct path: \Base_Layers\17060208\Buffer_of_17060208.shp > Finish Jot down the Lat/Long coordinates that lie just outside of the HUC boundary, as indicated by the red dots/lines (these coordinates will be used for downloading the DEM). Round to the nearest minute. Example: 45 24 0 N 116 0 0 W 115 13 0 W 44 27 0 N - 1 -

Step 1. Download the DEM Go to http://seamless.usgs.gov/website/seamless/viewer.htm to download 30m DEM On the right side of the screen, click the Download tab Select 1 NED (red arrow) Click on XY coordinates (blue arrow) Type in the XY (i.e., Lat/Long) coordinates, then click Add Area 2

Click Download File downloading may take several minutes. However, if the following window appears, click here and the file download window should appear rapidly. Save the zip file to: \Base_Layers\DEM\17060208 and unzip it. Be sure that Use Folder Names is checked in WinZip Take Note: The DEM for large 4 th code HUCs may be split into two files, if this occurs, (1) be sure to download both files, and (2) skip Step 2 and complete steps 3-5: Re-project the DEMs (step 3) Merge the DEMs (step 4) Clip the merged DEM (step 5) 3

Step 2. Project the DEM (when the DEM is 1 file) (If there are 2 files, skip to Step 3) The DEM should be projected to a rectangular coordinate system such as UTM. Also, the coordinates must be divisible by 30 to ensure proper registration with other grids that may be incorporated in the future (this step will be described below). This example assumes a projection of NAD 83 Zone 11. Open ArcMap and add a 4 th code HUC layer that is projected to NAD 83 Zone 11 Zoom to HUC 17060208 Add the DEM to ArcMap Place the cursor outside of the DEM boundary and jot down the coordinates of the outermost edges of the DEM (e.g., red dots). For example, the left coordinate (X minimum) should be that which is near the point marked YES. The coordinate values appear at the bottom right hand corner of the ArcMap window when the cursor is placed alongside the DEM. TOP: Y maximum 638364 5029828 LEFT: X minimum 577200 5027454 RIGHT: X maximum 644206 4923203 BOTTOM: Y minimum 580121 4919368 Convert the yellow highlighted coordinates to new coordinates that are divisible by 30 o Divide the coordinate by 30 and multiply the resulting integer by 30. The new coordinates are highlighted green 1. TOP, Y maximum: 5029828 30 =167660.93, 167660 x 30 = 5029800 2. LEFT, X minimum: 577200 30 =19240.00, 19240 x 30 = 577200 3. BOTTOM, Y minimum: 4919368 30 =163978.93, 163978 x 30 = 4919340 4. RIGHT, X maximum: 644206 30 =21473.53, 21473 x 30 = 644190 4

Now to Project the DEM! Open ArcToolbox > Data Management Tools > Projections and Transformations > Raster > Project Raster Input raster: Output raster: Output coordinate system: Resampling Output cell size Base_Layers\DEM\17060208\the downloaded raster Base_Layers\DEM\17060208\DEM17060208 NAD_1983_UTM_Zone_11N BILINEAR Change to 30 (delete all digits past the decimal) Click on Environments button (black arrow) > General Settings. 5

Ignore top boxes and move down to: o o Extent: > choose As Specified Below Type the new coordinates in each box as shown below: 5029800 577200 644190 4919340 Click OK, (check that output cell size is 30). Click OK. Close window. Go to Step 5 (clip the DEM). 6

Step 3. Project the DEM (when the DEM is 2 files) The DEM should be projected to a rectangular coordinate system such as UTM. Also, the coordinates must be divisible by 30 to ensure proper registration with other grids that may be incorporated in the future (this step will be described below). This example assumes a projection of NAD 83 Zone 11. We use HUC 10020001 for this example. Open ArcMap and add a 4 th code HUC layer that is projected to NAD 83 Zone 11 Zoom to HUC 10020001 Add the 2 DEMs to ArcMap Only work with one DEM visible at a time (see below). Place the cursor outside of the DEM boundary and jot down the coordinates of the outermost edges of the DEM (see Step 2 for more information). The coordinate values appear at the bottom right hand corner of the ArcMap window when the cursor is placed alongside the DEM. Be sure to record coordinates well outside the DEM boundary or a gap between the DEMs may result (see yellow box below). TOP: Y maximum 851670 5019312 LEFT: X minimum 765773 5013284 RIGHT: X maximum 858775 4916838 BOTTOM: Y minimum 772016 4909949 7

Convert the yellow highlighted coordinates to new coordinates that are divisible by 30 o Divide the coordinate by 30 and multiply the resulting integer by 30. The new coordinates are highlighted green 1. TOP, Y maximum: 5019312 30 =167310.4, 167310 x 30 = 5019300 2. LEFT, X minimum: 765773 30 =25525.76, 25525 x 30 = 765750 3. BOTTOM, Y minimum: 4909949 30 =163664.96, 163664 x 30 = 4909920 4. RIGHT, X maximum: 858775 30 =28625.83, 28625 x 30 = 858750 Take Note: If the outermost coordinates are not used when projecting 2 neighboring DEMs (especially important when the DEMs are skewed), there will be a gap between them (a). TauDEM will not process correctly if there is a gap in the final DEM. The final merged DEM should be seamless (b). a b 8

Now to Project the DEM! Open ArcToolbox > Data Management Tools > Projections and Transformations > Raster > Project Raster Input raster: Output raster: Output coordinate system: Resampling Output cell size Base_Layers\DEM\10020001\the downloaded raster Base_Layers\DEM\10020001\DEMa10020001 NAD_1983_UTM_Zone_11N BILINEAR Change to 30 (delete everything past the decimal) Click on Environments button (black arrow) > General Settings. Ignore top boxes and move down to: o Extent: > choose As Specified Below o Override the coordinates in each box in this order: right, top, left, bottom (see Step 2 for more detail) REPEAT FOR THE 2 ND DEM, but Output raster is: DEMb10020001 9

Step 4. Merge 2 DEMs With both DEM s open in ArcMap, go to tool bar and click Spatial Analyst > Options > Extent. Change Analysis extent to: Union of inputs > OK Again, click Spatial Analyst > Raster Calculator Type the following in the white box: Merge( double click> DEMa10020001 type a comma, double click> DEMb10020001 ) It should appear as follows: DEMa10020001 DEMb10020001 merge([dema10020001], [DEMb10020001]) Click Evaluate In ArcMap, go to the newly formed DEM (it is probably called Calculation ) o o Right click on the grid and Choose Data > Make Permanent Save as Base_Layers\DEM\10020001\DEM10020001 10

Step 5. Clip the DEM In ArcMap open the buffered HUC 17060208 (for example) and DEM17060208 From the tool bar click Spatial Analyst > Options General Tab > Analysis mask: select Buffer_of_17060208 Extent Tab > Intersection of inputs Cell size Tab > Maximum of inputs OK Again, click Spatial Analyst > Raster Calculator, double click on DEM17060208 Click Evaluate In Arc Map, right click on the new layer, choose Data > Make Permanent, Save as: \Base_Layers\17060208\DEMC (The DEM file name should contain no more than 7 characters). 11

Step 6. Run TauDEM to Create Stream Layer Take Note: The TauDEM procedure works best if the DEM is clipped to a watershed boundary that encompasses the study area. A value of NoData should be present outside of the watershed boundary (but within the rectangular grid extent), with valid elevation values (units meters) inside the watershed boundary. Use ArcCatalog to create a new ArcInfo workspace for the TauDEM results. Copy the DEM grid to this workspace before beginning. The DEM should be the only GIS layer in the workspace. The DEM file name should contain no more than 7 characters (we named ours DEMC, to denote a clipped DEM). Be sure that the DEM workspace is not active (currently being viewed) in ArcCatalog when the TauDEM process is running. Run all steps within the same ArcMap window. For instance, do not close ArcMap after any of the steps and re-open a new view to continue the process later. Errors will occur! The output grids from the Basic Grid Analysis and Network Delineation steps may be removed from the ArcMap viewer after those procedures are completed. In a new ArcMap window, add DEMC (the clipped DEM). On the TauDEM toolbar choose Basic Grid Analysis > Select Base DEM grid. Select DEMC > OK 12

Select Basic Grid Analysis > Full River Network Raster. Under Stream delineation method : select DEM curvature based.. Under Stream delineation parameters and settings : Accumulation threshold = 25 These default settings should remain the same: Weight side.1 Weight center.4 Weight diag.05 UNCHECK : Check for Edge Contamination Hit Apply and then Cancel (you don t want to run it now, you just want to set up the parameters) Basic Grid Analysis > Do All > Click Compute. Process times will vary depending on the size of the DEM (e.g., from 10 min to 2 hours) Do not close ArcMap after this process! On the toolbar Select Network Delineation > Do All Network and Watershed Delineation Steps. 13

Click OK to delete the existing src output file Do not use an outlet point Do not do anything else between the previous Basic Grid Analysis and this step After 2-3 minutes, refresh ArcCatalog. The final TauDEM stream line layer will be called DEMCnet. Close ArcMap. Project the new TauDEM stream layer. o ArcToolbox > Data Management Tools > Projections and Transformations > Define Projection Input Dataset: DEMCnet.shp Coordinate System: Select > Projected Coordinate Systems > Utm > NAD 1983 > Zone 11 > Add > OK 14