CRWR-PrePro Calculation of Hydrologic Parameters - PowerPoint PPT Presentation

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CRWR-PrePro Calculation of Hydrologic Parameters

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Runoff = f(precipitation, soil properties, moisture conditions) Watershed Routing ... Flow is delayed a fixed amount of time K, and redistributed around its centroid. ... – PowerPoint PPT presentation

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Title: CRWR-PrePro Calculation of Hydrologic Parameters


1
CRWR-PreProCalculation of Hydrologic
Parameters
Texas Department of Transportation (TxDOT) Water
Resources Modeling Using GIS 2000 - Austin, Texas
  • Francisco Olivera, Ph.D.
  • Center for Research in Water Resources
  • University of Texas at Austin

2
Hydrologic Parameters
  • Watershed
  • Abstractions and routing method
  • Parameters
  • Stream
  • Routing method
  • Parameters

3
Watershed Abstractionsand Routing Method
  • Abstractions rainfall/runoff transformation
  • SCS curve number method
  • Initial loss constant rate loss
  • Routing runoff/flow transformation
  • Soil Conservation Service (SCS) synthetic unit
    hydrograph

4
Watershed Abstractions
Precipitation (mm/hr)
Runoff (mm/hr)
Soil properties
Runoff f(precipitation, soil properties,
moisture conditions)
5
Watershed Routing
Runoff (mm/hr)
Watershed
Flow (m3/s)
6
Watershed Routing
Time
Runoff (mm/hr)
Runoff and Flow
Flow (m3/s)
Time
Flow f(Runoff, Watershed hydrologic properties)
7
Hydrologic Parameters
  • Watershed
  • Abstractions and routing method
  • Parameters
  • Stream
  • Routing method
  • Parameters

8
Watershed
  • Area
  • Average curve number
  • Initial constant rate loss
  • Length of longest flow-path
  • Slope of longest flow path
  • Lag time

9
Watershed Abstractions
Average Curve Number
Initial Loss (mm)Constant Loss (mm/hr)
SCS Method
Initial Constant Method
10
Elevation Grid
11
Flow Length Downstream
12
Flow Length Upstream
13
Longest Flow-Path
14
Flow Length Downstream to the Watershed Outlet
15
Hydrologic Parameters
  • Flow length downstream to the sub-basin outlet.

16
Flow Length Upstreamto the Watershed Divide
17
Hydrologic Parameters
  • Flow length upstream to the sub-basin divide.
  • A NODATA cell is defined at the sub-basin outlets
    before running the flow length function.

18
Watershed Longest Flow-Path
19
Hydrologic Parameters
  • Sub-basin longest flow-path.
  • The longest flow-path is the geometric locus of
    the points for which the sum of both flow lengths
    is a maximum.

20
Slope of WatershedLongest Flow Path
21
Hydrologic Parameters
  • Sub-basin lag-time according to the SCS formula

tp sub-basin lag-time (min) LW length of
sub-basin longest flow-path (ft) CN average
Curve Number in sub-basin S slope of the
sub-basin longest flow-path () ?t analysis time
step (min)
22
Watershed Lag-Time (SCS)
Flow length upstream and downstream
AverageCurve Number
Lag-time
23
Hydrologic Parameters
  • Sub-basin lag-time according to 0.6 L/v formula

tp sub-basin lag-time (min) Lw length of
sub-basin longest flow-path (ft) Vw average
velocity sub-basin longest flow-path
(m/s) ?t analysis time step (min)
24
Watershed Lag-Time (L/V)
Flow length upstream and downstream
Longest flow-path average velocity
Length of the longest flow-path
Lag-time
25
Hydrologic Parameters
  • Sub-basin parameters Grid code, area (Km2), unit
    hydrograph model (SCS), length of longest flow
    path (m), slope of longest flow path (fraction),
    average curve number, lag-time (min), baseflow
    (none).

26
Hydrologic Parameters
  • Watershed
  • Abstractions and routing method
  • Parameters
  • Stream
  • Routing method
  • Parameters

27
Routing Method
28
Pure-Lag Method
tlag flow time in the reach I inflow to the
reach Q outflow from the reach
  • Flow is delayed a fixed amount of time tlag.

29
Muskingum Method
S storage in the reach K flow time in the reach
(Dt lt K lt Dt/2X) X storage parameter I inflow
to the reach Q outflow from the
reach Dt analysis time step
  • Flow is delayed a fixed amount of time K, and
    redistributed around its centroid.

30
Routing Method
Flow time (Ls/Vs)
Ls/Vs lt Dt
Ls/Vs gt Dt
MuskingumRouting
Pure LagRouting
Ls length of the stream Vs flow velocity in the
stream Dt analysis time step
31
Hydrologic Parameters
  • Watershed
  • Abstractions and routing method
  • Parameters
  • Stream
  • Routing method
  • Parameters

32
Hydrologic Parameters
  • Reach lag-time for Pure Lag routing

tlag reach lag-time (min) Ls length of reach
(m) Vs reach average velocity (m/s)
33
Hydrologic Parameters
  • Reach lag-time and number of sub-reaches for
    Muskingum routing

K Muskingum parameter K (hr) X Muskingum
parameter X Ls reach length (m) Vs reach
average velocity (m/s) n number of sub-reaches
34
Hydrologic Parameters
  • Pure lag routing for Ls/60vs lt Dt, otherwise
    Muskingum routing.
  • Reach parameters Grid code, sub-basin code,
    length(m), velocity (m/s), routing method (Lag or
    Muskingum), lag time (min), Muskingum X,
    Muskingum K (hr), number of sub-reaches.
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