Introduction: The Hydrological Cycle

ENV* K245 Water Resources Engineering home

What is it? ==> Go to web page on the water cycle

The Hydrologic Budget

P + Rin - Rout + Rg - Es - Ts - I = D Ss

I + Gin - Gout - Rg - Eg - Tg = D Sg

P - (Rout-Rin) - (Es+Eg) - (Ts+Tg) - (Gout-Gin) = D (Ss+Sg)

P - R - G - E - T = D S ****eq'n 1****

P - R = D S

Table 1.1: Annual world water balance, by continent expressed as inches of water. (From Ward & Elliot, 1995, Environmental Hydrology; summarized from van der Leeden et al., 1991). All values except area in inches per year.

Water Balance Element

Europe

Asia

Africa

North America

South America

Australia

Weighted Average

Area, millions of mi2

3.8

17.6

11.8

8.1

4.0

3.4

 

Precipitation

28.9

28.6

27.0

26.4

64.9

29.0

34.1

Total river runoff1

12.6

11.5

5.5

11.3

23.0

8.9

12.1

Groundwater runoff

4.3

3.0

1.9

3.3

8.3

2.1

3.8

Surface water runoff

8.3

8.5

3.6

8.0

14.7

6.8

7.6

Infiltration and soil water

20.6

20.0

23.4

18.4

50.2

22.2

25.8

Evaporation

16.3

17.0

21.5

15.1

41.9

20.1

22.0

1 Total river runoff is the sum of the groundwater runoff and surface water runoff.

Application of the Hydrologic Equation

Let's work an example together:

P - R - G - E - T = D S

ET = P - R - G - D S

ET = P - R

R = 6000 ft3/s * 1/104 mi2 * 86,400 s/d * 365 d/yr * mi2/(5280 ft)2 * in/ft = 8.1 in/yr

ET = 20 in/yr - 8.1 in/yr = 11.9 in/yr

Common Units of Measurement

I'll do 1.9 on the problems handed out in class:

Rain falls at an average intensity of 0.4 in/hr over a 600-acre area for 3 days. (a) Determine the average rate of rainfall in cubic feet per second; (b) determine the 3-day volume of rainfall in acre-feet; and (c) determine the 3-day volume of rainfall in inches of equivalent depth over the 600-acre area.

(Show answers)

There are additional lecture notes on the hydrological system from the Environmental Studies class.


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ANTHONY G BENOIT
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