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Hydrologic Hydrologic Analysis Analysis Dr. Phil Bedient Dr. Phil Bedient Rice University Rice University

Hydrologic Analysis Dr. Phil Bedient Rice University

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Page 1: Hydrologic Analysis Dr. Phil Bedient Rice University

Hydrologic Hydrologic AnalysisAnalysis

Dr. Phil BedientDr. Phil Bedient

Rice UniversityRice University

Page 2: Hydrologic Analysis Dr. Phil Bedient Rice University

Mansfield Dam - Lake Mansfield Dam - Lake

TravisTravis Unit HydrographsS Curve Method Synthetic UHMulti-period stormsUH Applications Kinematic Wave

Page 3: Hydrologic Analysis Dr. Phil Bedient Rice University

Hydrograph computed at Hydrograph computed at outlet of each subareaoutlet of each subarea

Page 4: Hydrologic Analysis Dr. Phil Bedient Rice University

Hydrographs routed to Hydrographs routed to the outlet of the watershedthe outlet of the watershed

Page 5: Hydrologic Analysis Dr. Phil Bedient Rice University

Hydrographs routed thru one Hydrographs routed thru one reach of the watershedreach of the watershed

I – Q = dS/dt

Page 6: Hydrologic Analysis Dr. Phil Bedient Rice University

Distribution of RainfallDistribution of Rainfall

• Infiltration

• Detention

   Storage

• Depression

   Storage

• Direct Runoff

Page 7: Hydrologic Analysis Dr. Phil Bedient Rice University

Net Rainfall

Rising Limb

Crest

Falling Limb

Recession

Base Flow

Direct Runoff DRO

Hydrograph RelationsHydrograph Relations

Page 8: Hydrologic Analysis Dr. Phil Bedient Rice University

Base Flow MethodsBase Flow Methods

• Straight Line

• ABC continue the

recession - concave

• Empirical method

Page 9: Hydrologic Analysis Dr. Phil Bedient Rice University

1. Horton Method

2. Method

3. Initial and

Constant Loss

Infiltration Loss CurvesInfiltration Loss Curves

Page 10: Hydrologic Analysis Dr. Phil Bedient Rice University

Typical Rainfall and Typical Rainfall and Hydrograph ResponseHydrograph Response

Page 11: Hydrologic Analysis Dr. Phil Bedient Rice University

Time-Area Time-Area MethodMethod

• Watershed Isochrone

• Hyetographs

• Time Area Histograms

• Add and Lag Method

• Resulting Hydrograph

Page 12: Hydrologic Analysis Dr. Phil Bedient Rice University

Time Area HydrographTime Area Hydrograph

• P1 * A1

• P2*A2 + P1*A2

• P3*A1 + P2*A2 +

   P1*A3

Page 13: Hydrologic Analysis Dr. Phil Bedient Rice University

Unit HydrographUnit Hydrograph

Linear Methods

Tested in numerous WS

Stood the test of time

Regional calibration

Still most used approach

Basin response from 1 inch of uniform rainfall of given duration, D

Page 14: Hydrologic Analysis Dr. Phil Bedient Rice University

Measured Hydrograph

Adjusted for Net RF

Adjusted forNet RainfallOf 1 Inch

2 inches

Page 15: Hydrologic Analysis Dr. Phil Bedient Rice University

Base Flow and InfiltrationBase Flow and Infiltration• Subtract BF

• Subtract Infiltration

• Determine Net Rain

• Integrate hydrograph

• Adjust hydrograph

ordinates to match

net rainfall Vol

• Determine UH

Infiltration

Net rainfall

Peak Flow

Page 16: Hydrologic Analysis Dr. Phil Bedient Rice University

D = 2-Hr Unit HydrographD = 2-Hr Unit Hydrograph

Adjusted Net Rainfall one inch over basin

Qp

Page 17: Hydrologic Analysis Dr. Phil Bedient Rice University

Change UH DurationChange UH Duration

Consider 1 hr UH

Add and Lag two UH

by one hour

Sum and divide by 2

Results in 2 hr UH

Page 18: Hydrologic Analysis Dr. Phil Bedient Rice University

Equilibrium HydrographEquilibrium HydrographUniform Rain

Inflow = Outflow

Equiv to summing n

  hydrographs in T

Produces S curveOne Hydrograph

Page 19: Hydrologic Analysis Dr. Phil Bedient Rice University

S-Curves for UHS-Curves for UH

Page 20: Hydrologic Analysis Dr. Phil Bedient Rice University

S-CurvesS-Curves

• Convert 2 hr Unit

  hydrograph to 3-hr• Lag each 2-hr UH

  by Duration D• Add to produce S

  curve

S-curve

Page 21: Hydrologic Analysis Dr. Phil Bedient Rice University

Lag by D’ and subtract both curves

Lag S Curves in time, subtract them, and multiply by D/D’

Page 22: Hydrologic Analysis Dr. Phil Bedient Rice University

3 hr. Unit Hydrograph 3 hr. Unit Hydrograph from a 2 hr. UH (D/D’)from a 2 hr. UH (D/D’)

3 HR UH

Page 23: Hydrologic Analysis Dr. Phil Bedient Rice University

Hydrograph Hydrograph ConvolutionConvolution

1

2

3

31 2

Add up the ordinates of all three to produce storm hydrograph

STORMHYDRO

Add and Lag Method

Page 24: Hydrologic Analysis Dr. Phil Bedient Rice University

Multi-Period Multi-Period StormStorm

• Pg - F = Net Rainfall

• RF units = UH

   duration (i.e. 1 hour)

• Adjust UH by Net RF

• Add and Lag UH

• Produce Storm

   Hydrograph

UH

STORM

NET RF

Page 25: Hydrologic Analysis Dr. Phil Bedient Rice University

Development Effects on UHDevelopment Effects on UH

Natural Partial Fully Developed

Page 26: Hydrologic Analysis Dr. Phil Bedient Rice University

Actual Brays Bayou UHActual Brays Bayou UHFaster response with

Development

Higher peak flow with

Development

Need to provide down-

Stream capacity1959

Present

Ultimate

Page 27: Hydrologic Analysis Dr. Phil Bedient Rice University

Synthetic UHSynthetic UHDeveloped for basin

  that were ungaged

Based on data from

  similar gaged basins

Most methods are very

  similar in nature

Revolutionized ability to

  predict hydro response

1959

Present

Ultimate

Page 28: Hydrologic Analysis Dr. Phil Bedient Rice University

Synthetic UH MethodsSynthetic UH Methods

Methods to characterize ungaged basins

Use data and relationships developed from gages

Variety of approaches but most based on Tp and Qp

England and U.S. led the efforts to standardize UH

Page 29: Hydrologic Analysis Dr. Phil Bedient Rice University

Synthetic UH MethodsSynthetic UH Methods

• Snyder’s Method (1938)

• Clark Method (1945)

• Nash (1958)

• SCS (1964, 1975)

• Espey-Winslow (1968)

• Kinematic Wave (1970s)

Page 30: Hydrologic Analysis Dr. Phil Bedient Rice University

Snyder’s MethodSnyder’s Method

5 to 7 points

Page 31: Hydrologic Analysis Dr. Phil Bedient Rice University

SCS Methods

Triangular UH

Dimensionless UH

Page 32: Hydrologic Analysis Dr. Phil Bedient Rice University

SCS Triangular UH Example

1 inch of RF over 1.6 hr duration

Page 33: Hydrologic Analysis Dr. Phil Bedient Rice University

2-hr Duration UH Example

Qp at 400 cfs at 10 hr with 24 hr Tb

Six Hours of Uniform Rainfall = 0.25 in/hr

1.5 Inches Total Rain

2 4 6 8 10 12 14 16 18 20 22 24 26 30

100

200

300

Time in Hours

400

Page 34: Hydrologic Analysis Dr. Phil Bedient Rice University

SCS RAINFALL RUNOFF CURVES

Page 35: Hydrologic Analysis Dr. Phil Bedient Rice University

Unit Hydrograph Applications

Page 36: Hydrologic Analysis Dr. Phil Bedient Rice University

Land Use 1

Land Use 2

Unit Hydrograph Changes

Land Use will alter UH Peak and Timing

Page 37: Hydrologic Analysis Dr. Phil Bedient Rice University

Kinematic Wave

Overland

Collector Channels

Main Stream

Manning’s Eqn

Page 38: Hydrologic Analysis Dr. Phil Bedient Rice University

Kinematic Wave

Page 39: Hydrologic Analysis Dr. Phil Bedient Rice University

Basin hydrographs- routed & Basin hydrographs- routed & combined  to produce storm combined  to produce storm hydrograph hydrograph