The initial infiltration capacity fo of a watershed is estimated as 1.5 in./hr,and the time constant is taken to be 0.35 hr -1. The equilibrium capacity fe is 0.2 in./hr. Use Horton's equation to find (a) the values of fat t= 10 min, 30 min, 1 hr, 2 hr, and 6 hr, and (b) the total volume of infiltration over the 6-hr period
The initial infiltration capacity fo of a watershed is estimated as 1.5 in./hr,and the time constant is taken to be 0.35 hr -1. The equilibrium capacity fe is 0.2 in./hr. Use Horton's equation to find (a) the values of fat t= 10 min, 30 min, 1 hr, 2 hr, and 6 hr, and (b) the total volume of infiltration over the 6-hr period
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![The initial infiltration capacity fo of a watershed is estimated as 1.5 in./hr,and the time constant is taken to be
0.35 hr -1. The equilibrium capacity fe is 0.2 in./hr. Use Horton's equation to find (a) the values of fat t= 10
min, 30 min, 1 hr, 2 hr, and 6 hr, and (b) the total volume of infiltration over the 6-hr period](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F6b66d1f9-6359-40fe-8021-f814523bd072%2Fe3e12603-5f35-4e08-8991-9b4c3f96e18f%2Fzs68dyj_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The initial infiltration capacity fo of a watershed is estimated as 1.5 in./hr,and the time constant is taken to be
0.35 hr -1. The equilibrium capacity fe is 0.2 in./hr. Use Horton's equation to find (a) the values of fat t= 10
min, 30 min, 1 hr, 2 hr, and 6 hr, and (b) the total volume of infiltration over the 6-hr period
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