Compute the daily evaporation rate (in./day) during June using the Penman Equation for a reservoir near southern Minnesota (43°N). Assume the following average values for June at the site: Average temperature Relative humidity Average wind velocity Slope of the saturation-vapor pressure curve at mean temperature = 1.8 Psychrometric constant Empirical coefficient r = 23 °C = 55 % = 4.8 m/s =0.485 =0.10 You may use this table for your working: Variable Value Units Reference or Equation Used More space for answ ering Question 4: Final Answer:
Compute the daily evaporation rate (in./day) during June using the Penman Equation for a reservoir near southern Minnesota (43°N). Assume the following average values for June at the site: Average temperature Relative humidity Average wind velocity Slope of the saturation-vapor pressure curve at mean temperature = 1.8 Psychrometric constant Empirical coefficient r = 23 °C = 55 % = 4.8 m/s =0.485 =0.10 You may use this table for your working: Variable Value Units Reference or Equation Used More space for answ ering Question 4: Final Answer:
Chapter2: Loads On Structures
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
Transcribed Image Text:Compute the daily evaporation rate (in./day) during June using the Penman
Equation for a reservoir near southern Minnesota (43°N). Assume the following
average values for June at the site:
Average temperature
Relative humidity
Average wind velocity
Slope of the saturation-vapor pressure curve at mean temperature = 1.8
Psychrometric constant
Empirical coefficient r
= 23 °C
= 55 %
= 4.8 m/s
=0.485
=0.10
You may use this table for your working:
Variable
Value
Units
Reference or Equation Used

Transcribed Image Text:More space for answ
ering Question 4:
Final Answer:
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