In Horton’s infiltration equation fitted to data from a soil, the initial infiltration capacity is 10 mm/h, final infiltration capacity is 5mm/h and the exponential decay constant is 0.5 h^-1. Assuming the infiltration takes place at capacity rates, the total infiltration depth for a uniform storm of duration 8 hours is A) 80 mm B) 60 mm C) 40 mm D) 90 mm
In Horton’s infiltration equation fitted to data from a soil, the initial infiltration capacity is 10 mm/h, final infiltration capacity is 5mm/h and the exponential decay constant is 0.5 h^-1. Assuming the infiltration takes place at capacity rates, the total infiltration depth for a uniform storm of duration 8 hours is A) 80 mm B) 60 mm C) 40 mm D) 90 mm
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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In Horton’s infiltration equation fitted to data from a soil, the initial infiltration capacity is 10 mm/h, final infiltration capacity is 5mm/h and the exponential decay constant is 0.5 h^-1. Assuming the infiltration takes place at capacity rates, the total infiltration depth for a uniform storm of duration 8 hours is
A) 80 mm
B) 60 mm
C) 40 mm
D) 90 mm
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