Based on historical 50120 data, solar panels that are tilted towards the equator at an angle equal to the latitude will produce the maximum solar energy output in 50120.[1]
The region associated with 50120 has an average monthly Global Horizontal Irradiance (GHI) of 3.95 kilowatt hours per square meter per day (kWh/m2/day), which is approximately 4% less than the average monthly Direct Normal Irradiance (DNI) of 4.11 kWh/m2/day. [1]
Solar installations in 50120 that are always titled at the latitude of Haverhill (Average Tilt at Latitude or ATaL) average 4.59 kWh/m2/day, or about 16% greater than the average monthly GHI of 3.95 kWh/m2/day and approximately 12% greater than the average monthly DNI of 4.11 kWh/m2/day. [1]
Solar Energy Glossary
Global Horizontal Irradiance (GHI)
Global Horizontal Irradiance: The total amount of solar radiation that is received per unit area by a surface that is always positioned in a horizontal manner.
Direct Normal Irradiance (DNI)
Direct Normal Irradiance: The total amount of solar radiation received per unit area by a surface that is always perpendicular to the sun rays that come in a straight line from the direction of the sun at its current position in the sky.
Average Tilt at Latitude (ATaL)
Average Tilt at Latitude: The total amount of solar radiation received per unit area by a surface that is tilted toward the equator at an angle equal to the current latitude. ATaL will often produce the optimum energy output.
Solar Radiation Levels in 50120
Solar Radiation Data in 50120
See the chart below for monthly solar radiation levels in 50120.
* Amounts listed in kWh/m2/day (kilowatt hours per square meter per day)
Solar Radiation Analysis for 50120
The region associated with 50120 has a average annual solar radiation value of 4.85 kilowatt hours per square meter per day (kWh/m2/day). [1]
The month with the highest historical solar radition values in 50120 is July with an average of 6.21 kWh/m2/day, followed by August at 6.01 kWh/m2/day and September at 5.89 kWh/m2/day. [1]
The three months that historically average the lowest average solar radiation levels in 50120 are December with an average of 2.92 kWh/m2/day, followed by January with an average of 3.19 kWh/m2/day and February at 3.78 kWh/m2/day. [1]
Solar Power Comparison: 50120 vs. the U.S.
Solar Power Levels in 50120
The average monthly solar radiation level in 50120, of 4.85 kilowatt hours per square meter per day (kWh/m2/day) is approximately 23% greater than the average level of 3.93 kWh/m2/day in a city with historically low levels (WA) and is approximately 27% less than the average level of 6.61 kWh/m2/day in a city with historically high levels (NV). [1]
→ Values listed as 0 (zero) are not available (N/A).
Solar Power: 50120 vs. the U.S.
Below is a month-by-month comparison of how average 50120 solar radiation levels compare to average levels in a city with historcially high levels (NV) and a city with historically low levels (WA). [1]
→ k/m/d = kWh/m2/day = kilowatt hours per square meter per day.
→ Values listed as 0 (zero) are not available (N/A).
We do not have data on solar panel installations in ZIP Code 50120 at the current time.
Solar Power Output in 50120
The Power of Solar in 50120
Monthly AC solar system output averages for 50120. Month-by-month solar power, as ranked by AC output, in 50120. [2]
* Amounts listed in kWhac (kilowatt hours (AC))
Solar Output Analysis for 50120
50120 has a average annual solar AC output value of 5577.3 kilowatt hours (AC). [2]
The month with the highest historical solar power output in 50120 is July with an average of 574.74 kWhac, followed by August at 561.15 kWhac and September at 538.12 kWhac. [2]
The three months that historically average the lowest average solar output levels in 50120 are December with an average of 306.95 kWhac, followed by January with an average of 339.72 kWhac and February at 348.03 kWhac. [2]
The ZIP code 50120 is associated with the city of Haverhill in Marshall County in Iowa.
50120 Solar Energy & Power
To learn more about solar energy and solar power in 50120, or for more solar-related resources for IA, check out the U.S. Energy Information Administration.
Did you know?
Solar cells convert sunlight into electricity through a physical process known as the photovoltaic effect.