Solar Calculator Canada

Solar Power Calculator for Essex, Ontario, Canada

Solar Output Report

The reports were generated based on 100 kWp solar system as it is easier to calculate any other size based on the results.

Location:
  • Location: Essex
  • GPS Coordinates: 42.0941666, -82.9008333
  • Elevation: 192 m
Solar Installation Info:
  • Total installed power: 100 kWp
  • Solar panel technoloty: c-Si
  • Installation: Fixed
  • Optimal solar panel angle for Essex: 34o
  • Average yearly irradiance: 1605.62 kWh/m2
  • Average yearly power output: 135700 kWh
Sun Path Essex

Average yearly irradiance delivered by the Sun in Essex is 1605.62/kWh/m2 at the optimal panel slope of 34o. After taking all losses into account, you can expect about 135700 kWh for every 100 kWp installed solar panels.

Solar irradiance and output report at optimal angle - 34o

Solar irradiance

Month Average Daily kWh/m2/d Average Monthly kWh/m2/mo
January 2.11 65.36
February 2.94 82.4
March 4.43 137.37
April 5.27 158.16
May 5.9 182.97
June 6.07 182
July 6.24 193.35
August 5.85 181.29
September 5.03 150.85
October 3.97 122.95
November 3 90.03
December 1.9 58.87
Total yearly 1605.62

Solar power output

Month Average Daily kWh/d Average Monthly kWh/mo
January 193.51 5998.7
February 270.27 7567.43
March 397.09 12309.7
April 456.29 13688.8
May 490.91 15218.3
June 490.97 14729.2
July 498.39 15450
August 469.65 14559.2
September 413.39 12401.8
October 338.86 10504.5
November 265.6 7967.86
December 171.13 5305.02
Total yearly 135700

Solar power output reports at other common angles

As it is not always possible to install the solar panels at the optimum angle, we calculated some more options so you can get a better idea of the difference. A 3/12 roof pitch corresponds to about 14o slope so the result should be just a bit below the 15o output. 4/12 roof pitch(18.4o) fals between 15o and 20o. 5/12 pitch is 22.6o, 6/12 is 26.6o, 7/12 is 30.3o etc...

Essex solar output calculated at 15o

Month Average Daily kWh/d Average Monthly kWh/mo
January 153.53 4759.38
February 229.08 6414.31
March 364.34 11294.5
April 449.95 13498.5
May 510.93 15838.9
June 524.43 15732.8
July 527.57 16354.6
August 474.05 14695.6
September 389.22 11676.6
October 294.01 9114.42
November 211.37 6341.11
December 132.77 4115.97
Total yearly 129837

Solar power generation calculated at 20o

Month Average Daily kWh/d Average Monthly kWh/mo
January 165.74 5137.9
February 242.1 6778.72
March 376.1 11659
April 455.16 13654.9
May 509.3 15788.3
June 518.86 15565.7
July 523.51 16228.8
August 476.52 14772.1
September 398.89 11966.8
October 308.53 9564.45
November 227.89 6836.72
December 144.44 4477.78
Total yearly 132431

Solar power output calculated at 25o

Month Average Daily kWh/d Average Monthly kWh/mo
January 176.7 5477.61
February 253.49 7097.6
March 385.63 11954.6
April 457.88 13736.4
May 505.49 15670.1
June 511.48 15344.4
July 516.97 16026.1
August 476.44 14769.8
September 406.23 12186.9
October 321.05 9952.59
November 242.7 7281.03
December 154.98 4804.39
Total yearly 134302

Essex Solar generation calculated at 30o

Month Average Daily kWh/d Average Monthly kWh/mo
January 186.37 5777.44
February 263.21 7369.93
March 392.91 12180.1
April 458.08 13742.4
May 498.63 15457.5
June 501.58 15047.5
July 508.2 15754.2
August 473.73 14685.8
September 411.19 12335.6
October 331.53 10277.3
November 255.75 7672.57
December 164.35 5094.78
Total yearly 135395

Looking for a different report? Feel free to drop us a line and we will get back to you ASAP.

Solar panels on a pole

Solar power calculation notes:

We made a few assumptions when making the above solar power output calculations.

Losses: The numbers in the reports take into account 10% technological losses based on the electrical parts of a solar installation. There are also -2.85% angle of incidence loss and -3.34% temperature and irradiance loss. This totals to about -15.48%%.

Location: We do not know your exact location so we can not take into account your surroundings, the elevation and terrain specifics. The solar power output calculations are based on panels being optimally facing the sun in the optimal case or uniformly faced South in the other cases.

Errors: Please keep in mind that although we did our best, the information presented here might contain errors. As such, please contact a local solar installer for individual report based on your exact location.

Solar panel degradation: Solar panels loose efficiency over time. The reports are valid for the initial panel installation. Most solar panel manufacturers guarantee 80% generation after 25 years.

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