alberta solar potential


This guideline is targeted to project managers, consultants, and contractors involved in Alberta Infrastructure projects who are evaluating the potential for a solar PV system. As the units suggest, production potential is used primarily to calculate the size of solar system that you need to offset your usage, along with how much that system would cost. This includes projects in the planning, design, or construction phases, as well as existing buildings. Find out if your house is a good candidate for solar energy. For example, in a province with high solar potential like Saskatchewan – you would need less solar panels to produce the same amount of energy than in a province with a lower solar energy potential. Read more about how impacts solar production in Alberta here.

Please email info@neighbourpower.com for more information. Solar production potential (in units of kWh/kW/yr) is the same as saying: “How much energy (in units of kWh) can I produce per year (yr) given the size of my solar power system (in units of kW).”. The province with the worst solar potential is Newfoundland and Labrador. This is because solar PV cells as semiconductors perform better in lower temperatures. Click here to read more about grid-tied solar or here to visit the FAQ section. However a solar hot water collector produces enough hot water in such a short period of time that much of it goes to waste. 777. A 25% efficiency loss factor was then applied before getting the final kWh/kW/yr number. These interactive maps (available soon) give estimates of photovoltaic potential (in kWh/kWp) and of the mean daily global insolation (in MJ/m2 and in kWh/m2) for any location in Canada on a 60 arc seconds ~2 km grid..

Do you support sustainable energy? The system would therefore also cost less. http://www.neb-one.gc.ca/nrg/ntgrtd/mrkt/ftrrtcl/2018-12-06rsdntlslr-eng.html, Partnership Opportunities Advertise on energyhub.org Hire us. According to data from National Resources Canada , the average solar system in Alberta can produce 1276kWh of electricity per kW of solar panels per year.

The average solar power system in Newfoundland & Labrador will produce approximately 949 kWh of energy per kW per year. Alberta has the second highest potential to produce solar energy in all of Canada, receiving more solar irradiation than any other province or territory other than Saskatchewan! A solar photovoltaic system and a solar hot water system in Alberta will harvest more or less the same amount of solar energy. This yearly average decreases as you move north in the province and increases as you move south.For example, a 1kW solar system in: The average solar power system in Ontario will produce approximately 1166 kWh of energy per kW per year.

These solar energy maps are visual representations of the amount of energy that a solar photovoltaic system can produce, based on the intensity of light that reaches the Earth’s surface. (Source) This means a one-kilowatt solar system in Calgary will produce 52 per cent more electricity than one in Berlin. The worst territory is the Yukon – primarily because of high latitude and cloud weather. It accounts for the shape of the terrain, and the relative position of building rooftops and structures, existing infrastructure, and tree canopies to determine the solar potential. This yearly average decreases as you move south in the province and increases as you move north. A solar PV system installed in Calgary can generate more electrical energy than if it were in Rio or Rome! The average solar power system in Prince Edward Island will produce approximately 1104 kWh of energy per kW per year. Want to stay updated? Sun, space and location can determine if your home can be updated with solar panels. Qualifications required to become a PV installer, Creating and Maintaining your Business Profile, We’ve Seen This Movie Before: Documentary Perpetuates Myths about Solar. This capacity to turn light into electricity is also a major ranking factor in our Provincial Solar Rankings. The average solar power system in the Yukon Territory will produce approximately 965 kWh of energy per kW per year.

This yearly average decreases as you move east in the province and increases as you move west. This is because solar production is concentrated in the summer. Total operating capacity. If you compare Calgary’s output to some of the hotter climates shown below you may think that the difference in potential doesn’t totally reflect the difference in sunlight. The average solar power system in Québec will produce approximately 1183 kWh of energy per kW per year. For example, a 1kW solar system in: energyhub.org is licensed and protected under Creative Commons (CC BY). This is primarily because of high annual cloud cover. Enough to power 18,100 homes. 152.30 GWh. This page contains a complete set of solar energy maps (also called solar insolation, solar photovoltaic, or solar irradiance maps), along with the estimated monthly solar production for every province and territory in Canada. Berlin’s photovoltaic potential is 848 kWh/kW. Read more about how impacts solar production in Alberta here. Collectors are found to be economically viable servicing large hot water needs such as in swimming pools and laundromats. 809.1 MWh. This yearly average decreases as you move north and west in the province and increases as you move south and east. Join our mailing list, we'll email you twice per year or less: energyhub.org is a social enterprise with a legal requirement to operate in a socially, environmentally, and economically responsible way. The provinces with the best solar potential are located on the Canadian prairies: Saskatchewan, Alberta, and Manitoba. Enter your postal code to filter results to within a 100km radius of your requested location. Neighbour Power Inc. Website content including paragraph formatting, word content, and photographs are the property of Neighbour Power Inc. , It would be great to see the solar maps combined with the regional cost of a years electric heat, that would give an indication of the best breakeven locations. This fortune gives us the opportunity to help correct certain persistent […]. The average solar power system in Saskatchewan will produce approximately 1330 kWh of energy per kW per year.

Join our mailing list to receive news and updates about Solar Alberta. The worst place in Canada is at the small research base located in Eureka, Nunavut which has a solar energy potential of just 780 kWh/kW/yr. Both systems will produce most of their energy in the summer and relatively much smaller amount of energy in the winter. 211 MW. Highest producing day to date.

Year-to-date production. For example, a 1kW solar system in: The average solar power system in New Brunswick will produce approximately 1142 kWh of energy per kW per year. Alberta’s combination of cold temperatures and lots of sunlight gives it a world class solar potential for solar photovoltaic system. The average Albertan home consumes 7,200kWh per year. Total operating projects. The Bow Valley Sustainable Building Summit – Solar, a viable energy solution today, Clean Energy Revolution Live Virtual Event, The Bow Valley Sustainable Building Summit – Designing for Climate Change: an Architects Responsibility, Online Class – Contracts for the Solar Industry, Annual GHG Emissions Abated by Solar Systems (kg C02e), Recently, one of our subscribers wrote to us because he had concerns about solar power arising from a documentary he had just finished watching.

Although snow has a detrimental effect on output of a solar module, it incurs no more than 6% in loss of total annual output. The average solar power system in Nova Scotia will produce approximately 1090 kWh of energy per kW per year. A solar photovoltaic module contains 60 solar cells that are electrically connected in series. A standard 60-cell solar module contains 60 solar cells connected in series.

And the numbers are even better for southern Alberta cities Lethbridge and Medicine Hat. The average solar power system in British Columbia will produce approximately 1004 kWh of energy per kW per year. This yearly average decreases as you move north in the province and increases as you move south. This map shows the potential sun exposure of building roofs. A solar PV system installed in Calgary can generate more electrical energy than if it were in Rio or Rome! We’ve gone ahead and calculated the average solar production potential based on the five most populated cities for every province and territory. LIFETIME PRODUCTION. solar *INCLUDES cANADA, USA & Dominican Republic OPERATING SITES, As of february 29, 2020. Select Your Province: AB | BC | MB | NB | NL | NS | NT | NU | ON | PE | QC | SK | YT, photovoltaic potential and insolation dataset, http://www.neb-one.gc.ca/nrg/ntgrtd/mrkt/ftrrtcl/2018-12-06rsdntlslr-eng.html, Saskatoon would produce about 1,350 kWh/yr, Prince Albert would produce about 1,300 kWh/yr, Moose Jaw would produce about 1,363 kWh/yr, Edmonton would produce about 1,246 kWh/yr, Red Deer would produce about 1,265 kWh/yr, Lethbridge would produce about 1,330 kWh/yr, Winnipeg would produce about 1,281 kWh/yr, St. Claude would produce about 1,309 kWh/yr, Quebec City would produce about 1,139kWh/yr, Montreal would produce about 1,194 kWh/yr, Gatineau would produce about 1,103 kWh/yr, Longue-Pointe-de-Mingan would produce 1,278 kWh/yr, Mississauga would produce about 1,160 kWh/yr, Brampton would produce about 1,155 kWh/yr, Saint John would produce about 1,133 kWh/yr, Fredericton would produce about 1,147 kWh/yr, Charlottetown would produce about 1,103 kWh/yr, Summerside would produce about 1,125 kWh/yr, Stratford would produce about 1,100 kWh/yr, Cornwall would produce about 1,106 kWh/yr, Rankin Inlet would produce about 1,150 kWh/yr, Baker Lake would produce about 1,109 kWh/yr, Dartmouth would produce about 1,076 kWh/yr, Yellowknife would produce about 1,095 kWh/yr, Hay River would produce about 1,125 kWh/yr, Fort Smith would produce about 1,131 kWh/yr, Vancouver would produce about 1,007 kWh/yr, Richmond would produce about 1,027 kWh/yr, Whitehorse would produce about 961 kWh/yr, Watson Lake would produce about 947 kWh/yr, St. John’s would produce about 936 kWh/yr, Conception Bay would produce about 947 kWh/yr, Mount Pearl would produce about 933 kWh/yr, Paradise River would produce about 977 kWh/yr. Alberta’s combination of cold temperatures and lots of sunlight gives it a world class solar potential for solar photovoltaic system.

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