Key Concepts from Exercise 4

Slides:



Advertisements
Similar presentations
Hydro Networks in GIS Network model Flow on Networks Hydrologic networks Linear referencing on networks Some slides in this presentation were prepared.
Advertisements

CEE 795 Water Resources Modeling and GIS Learning Objectives: Describe a Network model Identify Flow in a network model Develop a hydrologic network Perform.
WRAP Hydro Data Model: Its Structure and application to find Input Parameters for the Water Rights Analysis Package Centre For Research In Water Resources.
2/26/2014 Presented by: Cindy McKay Sponsored by: USGS NHDPlus Network Value Added Attributes.
Introduction to NHDPlus: A Framework for Advanced Water Applications Cindy McKay Horizon Systems Corporation Cindy McKay Horizon Systems Corporation.
CEE 795 Water Resources Modeling and GIS Learning Objectives: Perform raster based network delineation from digital elevation models Perform raster based.
Geometric Networks Francisco Olivera, Ph.D., P.E. Srikanth Koka Department of Civil Engineering Texas A&M University.
National Hydrography Data Use and Applications.
Arc Hydro: GIS for Water Resources David R
Hydrologic Analysis Francisco Olivera, Ph.D., P.E. Srikanth Koka
DEM-Based Stream and Watershed Delineation
Concept Course on Spatial Dr. A.K.M. Saiful Islam Application of GIS in Watershed Analysis Dr. A.K.M. Saiful Islam Institute of Water and Flood.
GIS Modeling Venkatesh Merwade, University of Texas at Austin Interdisciplinary aquatic modeling workshop, July 21, 2005.
Building a stream network for the 12 th Hydrologic region using ArcInfo CVEN 689 Prepared by: Héctor Olmos.
Geographic Information Systems : Data Types, Sources and the ArcView Program.
1 CEE 795 Water Resources Modeling and GIS Session #1 (some material from Dr. David Maidment, University of Texas) January 18, 2006 Learning Objectives:
Remote Sensing and GIS in Water Dr. A.K.M. Saiful Islam Hands on training on surface hydrologic analysis using GIS Dr. A.K.M. Saiful Islam.
Landscape and Urban Planning Volume 79, Issue 1Landscape and Urban Planning Volume 79, Issue 1, 15 January 2007, Pages Biological integrity in.
GIS in Water Resources: Lecture 1
NHD Watershed: Tools and Applications
HydroNetwork Applications This lecture continues on from the slides we began on the last class In this class, we talk about – how to create HydroNetworks,
Hydro Networks in GIS Network model Flow on Networks Hydrologic networks Linear referencing on networks Some slides in this presentation were prepared.
“Flood monitoring and mapping for Emergency Response in San Antonio-Texas” Part I by Silvana Alcoz Source photo Term.
Frank Kenny and Bryce Matthews Ontario Ministry of Natural Resources
Flow Time Time Series Hydro FeaturesHydro Network Channel System Drainage System ArcGIS Hydro Data Model.
Building Analytical Applications Using NHDPlusV2 Presented by: Cindy McKay Horizon Systems Corporation Sponsored by: US EPA, Office of Water.
1 GIS in Hydrology Watershed management Definitions Algorithms Watershed delineation Automatically delineating watersheds Flow length Raster to vector.
Digital Elevation Model Based Watershed and Stream Network Delineation Understanding How to use Reading
GIS in Water Resources: Lecture 1 In-class and distance learning Geospatial database of hydrologic features GIS and HIS Curved earth and a flat map.
NHD Products and Applications InterMountain GIS 2014 NHD Workshop April 7, 2014.
Creating Watersheds and Stream Networks
Esri UC 2014 | Technical Workshop | Creating Watersheds, Stream Networks and Hydrologically Conditioned DEMS Steve Kopp Dean Djokic.
U.S. Department of the Interior U.S. Geological Survey Processing ArcHydro Datasets with NHDPlus Version 2, Emphasizing StreamStats Data Development Webinar.
Processing Elevation Data. Limitations of DEMs for hydro work Dates Static, does not evolve Matching to linear line work due to scale Processing errors.
1 Contractor for the USGS at the EROS Data Center NHD Plus as a geospatial framework for drought indicators Jim Verdin.
ARC GIS IN THE SANTA RIVER BASIN IN PERU GIS in Water Resources Fall 2006 Professor: Dr. David Maidment Presented by Presented by Eusebio Ingol.
GISWR 2015 Midterm Review. Definition of Latitude,  (1) Take a point S on the surface of the ellipsoid and define there the tangent plane, mn (2) Define.
U.S. Department of the Interior U.S. Geological Survey Loading Data into ArcHydro Building the Global GeoDatabase.
U.S. Department of the Interior U.S. Geological Survey Idaho District Office (208) Data Requirements for StreamStats December 18,
Section 5. Chesapeake Bay Network Generation CB watershed –~ 64,000 square miles –~ 166,000 square kilometers Constructed 3 models Version I –ERF1, ~1300.
Arc Hydro Copyright © 2003 ESRI. All rights reserved. 3-1 Arc Hydro Tools  Arc Hydro tools  Key concepts  Global delineation – scaling issues  Tools.
Using the NHDPlus for drainage area delineation and site matching Kirsten Cassingham, NC Water Science Center Silvia Terziotti, NC Water Science Center.
Physical Structure of GDB
Bdsfbdsfb NHDPlus for Corpus Christi Bay Term Project Report Nishesh Mehta Nishesh Mehta 21 st November st November 2006.
STREAM NETWORK DELINEATION USING ARC HYDRO AND TauDEM: A comparison of approaches using The Upper Sevier and the Little Bear River Basins Alphonce C. Guzha.
Arc Hydro for EPA Basins
Watershed Analysis.
Digital Elevation Model Based Watershed and Stream Network Delineation
Digital Elevation Model Based Watershed and Stream Network Delineation
Data Sources for GIS in Water Resources by David R
Introduction to Networks
Review for Midterm Exam
Data Sources for GIS in Water Resources by David R
Hydro Networks in GIS Review of key concepts in Ex 4
Key Concepts from Exercise 4
Hydro Networks in GIS Network model Flow on Networks
GIS FOR HYDROLOGIC DATA DEVELOPMENT FOR DESIGN OF HIGHWAY DRAINAGE FACILITIES by Francisco Olivera and David Maidment Center for Research in Water Resources.
Reflections on Exercise 4
Hydro Networks in GIS Network model Flow on Networks
Overview of Exercise 4.
GISWR 2015 Midterm Review.
Hydrography for The Lower Rio Grande Valley A Comparison of Mapped versus Synthetic Streams By Jean Parcher GIS in Water Resources December 4, 2001.
Review for Midterm Exam
GIS in Water Resources: Lecture 1
Networks in GIS Network model Flow on Networks Hydrologic networks
From GIS to HMS U.S. Army Corps of Engineers Hydrologic Engineering Center University of Texas at Austin Center for Research in Water Resources Francisco.
Development of a Hydrologic Model for the Wichita Falls District
Creating Watersheds and Stream Networks
Networks in GIS Network model Flow on Networks Hydrologic networks
Review for Midterm Exam
Presentation transcript:

Key Concepts from Exercise 4 DEM Reconditioning as an example of quantitative raster analysis Vector to Raster Distance Raster Calculation Volume removed analysis "smdem" - 10 * “flowLineReclas" - 0.02 * (500 - "distance") * ("distance" < 500) Subtract 10 at all stream grid cells Subtract an amount that tapers from 0.02*500=10 when distance is 0, to 0 when distance is 500 from stream Only do taper when distance is less than 500, otherwise this is 0 and nothing is subtracted 500 10

3D Analyst Profiles smdem diff smrecon

Construct the Analysis Layer Fill Flow Direction Flow Accumulation Stream Definition Stream Links Catchments

Convert to Vector Vector streams Vector catchments Attribute feature with raster zonal statistics Geometric Network Tracing Selection statistics

and, correction of an error Pages 16, 20 – references to “ThinRaster” should be changed to “FlowLineReclas” To turn in: 2. Number of stream grid cells in FlowLineReclas and estimates of channel length and drainage density.

Hydro Networks in GIS Network model Flow on Networks Hydrologic networks Linear referencing on networks Some slides in this presentation were prepared by Dr Francisco Olivera

ArcGIS Resource Centers http://resources.arcgis/com Getting to Readings in ArcGIS Resource Center Help for Desktop 10 Desktop Help

Reading (1) ArcGIS Resource Center/Desktop 10/Help/Professional Library/Data Management/Geographic Data Types/Geometric Networks – What are geometric networks, A quick tour of geometric networks, Essential geometric networks

Reading (2) ArcGIS Resource Center/ Desktop 10/Help/Professional Library/Guide books/Linear Referencing - What is linear referencing; Essential linear referencing

Raster to Vector Transition During the last week, you have been dealing with the flow of water through the landscape based on the raster data structures Today we are making a transition in which we are going to use vector network data to describe water pathways. We will connect the land and water flow systems by attaching the catchments and watersheds derived from raster data processing to our vector networks

Some terminology Hydrography – the mapping of water features Blue line features on topographic maps (streams, rivers, lakes,…) More generally, hydrography also includes the mapping of bathymetry and extent of estuaries and coastal waters National Hydrography Dataset (NHD) – a data model for storing topographic map hydrography Medium resolution (1:100K) is complete for US High resolution (1:24K) is complete for most of the US NHDPlus – a new data model integrating 1:100K resolution NHD with catchments and derived attributes from the National Elevation Dataset

National Hydrography Dataset Key feature classes Five feature classes with NHDFLowline built into A geometric network NHDPoint, NHDLine, NHDArea are point, line and area water features on map apart from flowlines and waterbodies

National Hydrography Dataset

NHD Waterbody

NHD Geometric Network

Arc Hydro Framework Input Data Watersheds Waterbody Streams The Arc Hydro Framework is a simplified version of the full Arc Hydro data model designed for an entry level user who just wants to put together a basic data set for streams, watersheds, waterbodies and hydro points like stream gages and water quality monitoring points Hydro Points

Arc Hydro Framework For South Florida Basins Waterbody (NHD) The Arc Hydro Framework is a simplified version of the full Arc Hydro data model designed for an entry level user who just wants to put together a basic data set for streams, watersheds, waterbodies and hydro points like stream gages and water quality monitoring points Hydro Points Hydro Network (NHD)

Network Definition A network is a set of edges and junctions that are topologically connected to each other.

Network Model in GIS Three components Geometric model: (x,y,z,m) coordinates of edges and junctions Logical model: which edges are connected to what junctions Addressing model: location on the network using measure

Edges and Junctions Simple feature classes: points and lines Network feature classes: junctions and edges Edges can be Simple: one attribute record for a single edge Complex: one attribute record for several edges in a linear sequence A single edge cannot be branched No!!

Polylines and Edges

Junctions Junctions exist at all points where edges join If necessary they are added during network building (generic junctions) Junctions can be placed on the interior of an edge e.g. stream gage Any number of point feature classes can be built into junctions on a single network

Connectivity Table p. 132 of Modeling our World J125 Junction Adjacent Junction and Edge J123 J124, E1 J124 J123, E1 J125, E2 J126, E3 J125 J124, E2 J126 J124, E3 E2 J124 E3 E1 J123 J126 This is the “Logical Network”

Build Network Tables Establishes connectivity of Edge and Junction features Enables tracing Generates Generic Junctions Geometric Network Wizard in ArcCatalog

Snapping Features

Network Sources and Sinks Each junction feature class in a network can have junctions which are sources or sinks for flow

Ancillary Role of Sink

Flow to a sink

Flags

Trace Solvers

Upstream Trace Solvers

Hydrologic Networks Hydrologic data includes: Single-line streams Double-line streams Braided streams Manmade channel systems Waterbodies

Flow Line Traces movement of water in a one-dimensional flow system

Location of the Flowline

Introduction to the Hydro Network Hydro Edge – think of Arc Hydro Junction – think of Node Waterbody – think of Polygon

Flow Network Edge Junction A connected set of flow edges

Flowlines and Shorelines

Network Building Define flow-paths within double-line streams and waterbodies. Define network sinks and sources.

Network Connectivity Find connected Find loops

Network Flow Direction Enable flow in flow-paths. Disable flow in shorelines Sink Flow direction is unknown

Network Flow Direction Enable flow in flow-paths. Disable flow in shorelines Sink Flow direction is known

Uninitialized Flow Direction

Assigned Flow Direction

Network Tracing Trace Upstream Trace Downstream

Trace Path Find the shortest path between two points on the network

Hydro Network for Holland

Hydro Network for Colorado River Basin around Lake Travis

Guadalupe Basin Framework Dataset

Network Tracing on the Guadalupe Basin

Schematic Network

Hydro Network Junctions

Connecting Waterbodies using Relationships

Hydro Network through Canyon Lake

Linking Canyon Lake to the Network

Connecting Drainage Areas using Relationships

Connecting Drainage Areas to the Network Area goes to point on line

NHDPlus Reach Catchments ~ 3km2 Average reach length = 2km 2.3 million reaches for continental US About 1000 reach catchments in each 8-digit HUC

Reach Attributes Slope Elevation Mean annual flow Drainage area Corresponding velocity Drainage area % of upstream drainage area in different land uses Stream order

Linear Referencing Where are we on a line?

Addressing

Coordinates of a 2-D Polyline

Coordinates of a 2-D Polyline M

Setting Line Measure

Proportional Aliasing Distance is measured Relative to the length of the line as a percentage 0% – 100%

Setting Percent Measure pMSeg.SetAndInterpolate MsBetween 0, 100 pMSeg.SetAndInterpolate MsBetween 100, 0 0 – 100 going upstream 0 – 100 going downstream

Point and Line Events

Summary Concepts A network is a connected set of points (junctions) and lines (edges) that supports tracing functions Three data model components Geographic (x,y,z) Logical (point-line topology connections) Addressing (position m along the line) Features can be geometrically connected (network) or relationally connected (HydroID)

Summary Concepts (2) Land-water connections Area flows to a line model (one Catchment is connected to one flowline) – used in NHDPlus and by Arc Hydro DrainID connections Area flows to line at a point model (one Watershed contains many streams that drain to a Junction at the outlet) – used in Arc Hydro where HydroID of the HydroJunction is JunctionID of the Watershed

Summary Concepts (3) Linear referencing can be used to locate point and line “events” on a network This is like (x,y) event themes that you used earlier to map stream gage locations in geographic space With linear referencing the locations are in “network space” but can be converted to regular features if necessary