The average weather conditions are; Net radiation = 100 W/square meter = 25 deg. C Air Temperature Relative Humidity Wind speed Height = 55% %3D = 2.7 m per sec = 2 meters above the water surface = 0.02 cm Roughness Height Atmospheric pressure Psychometric constant Gradient of saturated vapor pressure = 101 kPa = 65 Pa/deg C = 185 Paldeg C %3D Compute evaporation rate in millimeters per day using; a. Energy method b. Aerodynamic method Combined method С. d. Priestly-Taylor method

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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SOLVE C AND D
The average weather conditions are;
Net radiation
Air Temperature
Relative Humidity
Wind speed
Height
= 100 W/square meter
= 25 deg. C
= 55%
= 2.7 m per sec
%3D
= 2 meters above the
water surface
= 0.02 cm
Roughness Height
Atmospheric pressure
Psychometric constant
Gradient of saturated vapor pressure
= 101 kPa
= 65 Pa/deg C
%3D
= 185 Paldeg C
Compute evaporation rate in millimeters per day using;
а.
a. Energy method
b. Aerodynamic method
Combined method
С.
d. Priestly-Taylor method
Transcribed Image Text:The average weather conditions are; Net radiation Air Temperature Relative Humidity Wind speed Height = 100 W/square meter = 25 deg. C = 55% = 2.7 m per sec %3D = 2 meters above the water surface = 0.02 cm Roughness Height Atmospheric pressure Psychometric constant Gradient of saturated vapor pressure = 101 kPa = 65 Pa/deg C %3D = 185 Paldeg C Compute evaporation rate in millimeters per day using; а. a. Energy method b. Aerodynamic method Combined method С. d. Priestly-Taylor method
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