Module 207
Hydrograph Development
Module 207-Hydrograph Development
Module Description
Objectives
Upon completion of this module, the participant will be able to:
. Describe the use of hydrographs in NRCS programs
. Explain the Unit Hydrograph Theory
. Derive the peak rate equation
. Explain how to develop composite flood hydrographs
. Perform at ASK Level 3, (perform with Supervision).
Prerequisites
Module 107, Hydrograph Development, or its equivalent is recommended, but not required.
Who May Take This Module
This module is intended for all engineers, area-level technicians and others who need to understand hydrograph development.
Content
This module describes the use of hydrographs, explains the unit hydrograph theory, derives the peak rate equation, and discusses how the unit hydrograph is used to develop composite flood hydrographs.
Introduction
A hydrograph is the representation of the water surface in a stream with time. The hydrograph can be time versus flow rate (cfs) or stage (ft). The NRCS uses hydrographs in almost all of its programs. Standard techniques are used for developing these hydrographs.
Uses of Hydrographs
The Natural Resources Conservation Service (NRCS) uses hydrographs in the following ways:
Watershed Evaluation
Hydrographs are used to determine the effects of proposed structures, land treatment or land use changes on peak discharges and volume of runoff. Economic justification for projects depends upon analysis of hydrograph data (figures 1 and 2).
Floodplain Delineation
Standard NRCS flood hydrographs are used to outline the area flooded by rainfalls of a certain magnitude, i.e. 100 percent chance event.
Design
Design hydrographs are generated for sizing reservoirs, selecting type and capacity of spillway systems, and establishing critical structure elevations. The one-day, ten-day hydrograph for principal spillway design (fig. 3) is generated by a design rainfall having runoff intensity characteristics of a one-day rainfall, combined with the volume of a 10-day rainfall of the same return period frequency. The six-hour hydrograph is frequently used for emergency spillway design (fig. 4).
Farm ponds and storm water management structures are proportioned using 24-hour hydrographs. The peak flow information in TR-55 and Chapter 2, EFM was developed using 24-hour hydrographs.
Dam Breach
A dam breach hydrograph is formed when impounded water is released by the sudden failure of a dam. Routing a breach hydrograph downstream indicates hazards of existing and planned dams if they should breach. The breach hydrograph can also be used to determine structure classification of earth dams.
Unit Hydrographs
The principle of the unit hydrograph was introduced by Leroy K. Sherman in 1932. Although numerous refinements have been added by others, the basic ideas presented by Sherman remain. He reasoned that, for a given watershed, all hydrographs resulting from rains of the same period of excess (unit duration) have equal time bases. Further, ordinates of each hydrograph are proportional to the volume of runoff if the time and areal distribution of the rainfall are similar (fig. 5). A unit hydrograph is a hydrograph for a specific time period of rainfall excess (runoff) and uniform distribution and whose volume of runoff is equal to one inch of water over the entire watershed.
Unit rainfall duration refers to the time period of rainfall producing runoff (rainfall excess). The unit hydrograph resulting from a six-hour excess rainfall duration is referred to as a six-hour unit hydrograph. The precipitation is assumed to occur uniformly over the entire watershed and has a uniform time distribution.
Unit hydrographs are used to estimate flood hydrographs by multiplying each ordinate of unit hydrograph by the volume of runoff.
Unit Hydrograph Theory
The unit hydrograph theory is based on the principle of proportionality, such that discharge varies directly with runoff depth. Four hydrographs with the same time base, but different runoff (Q) are plotted in figure 5, using the principle of proportionality. A typical hydrograph was drawn for Q = 1 inch. Then, hydrographs for Q = 0.5, 2, and 3 inches were drawn using the principle of proportionality. The principle would work for any value of Q (e.g. 1.23 in, 2.68 in, etc.). The ratios for the other three hydrographs are calculated as follows: