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Collector Calculator

When determining what size of collector you need you must consider two key factors: irradiation level and energy requirements. Energy requirement will usually take into consideration the volume of water and rise in temperature required. Once you know these factors you can determine the size collector you require. The bigger the collector you have, the more hot water you get, but you should make an economically sound decision. Generally it is wise to select a size which will provide you with 90% of your hot water needs in the summer.

Although it may seem strange to use a value of only 90% for summer solar contribution, it is for good reason. It is normal to size based on 100% of your summer hot water energy needs, with a percentage provided throughout other months, lowest obviously in winter. That is based on normal water usage, but often, and particularly in the summer, water usage patterns may not be that normal, with cooler than normal showers taken in hot weather, and greater possibility of the house being vacant for one or two days each week (weekends). As such, using a target value of 90% will probably actually result in a system that is able to supply more than 100% of your hot water needs in the summer, without excessive heat production, which can lead to water loss via pressure release and a waste of energy.

The calculator below can help to determine how many evacuated tubes you require given your energy requirements. Our Solar collectors come in a set of standard sizing of 4 and 12. Of course you can also combine collectors to increase the size eg 16, 20 32 etc. If you get an answer that is not a standard size, as a general rule, select the next size down-this will prevent having too much heat in the summer.

Metric Calculation

Insolation: kWh/m2/day
Water Volume:* Litres
Temp Rise:** oC
You Require: Evacuated Tubes
 
 
 

Our sun emits massive amounts of energy - far more than we could ever use.

In South Africa, solar radiation reaches up to 6.5kWh/m2, one of the highest levels in the world. By comparison, parts of Europe only receive about 2.5kWh/m2.

So, in this country, solar energy is an abundant source of renewable energy, making it an obvious candidate when seeking alternative sources of energy.

 

  

Please note:
* Water Volume = This should represent the actual volume of hot water used at the tap in total each day.
Although most hot water systems have target temps of 60oC, when showering a temperature of between 42oC and 45oC is normally used. Therefore 300L of hot water at the tap may only draw 220L of hot water (at 60oC) from the storage cylinder.

** Temperature Rise = target tap hot water temp - average mains cold water temp.
Target hot water temp should usually be around 42oC to 45oC.
Cold water usually fluctuates by about 10oC between winter and summer. A check of your local weather records should provide you with an idea of average cold water temperatures (normall about 10oC in winter and 20oC in summer, in mild regions).

Apart from the three key factors used in the calculation above, you may also need to consider:
1.Annually/daily shade patterns
2.Angle/direction of installation (a less than ideal angle will reduce efficiency)
3.Installation site (Do you have enough room for the collector(s)?)

The estimations above are just a guide and are based on an average summer performance level of 70%. As explained above it is best not to oversize the system. Your local distributor may need to complete a onsite inspection to accurately assess your requirements and design a solar water heating system which suits your needs.

Reduce your carbon foot print and start saving electricity and money

Research has proved that hot water cylinders (Geysers) contribute to between 40 and 60 percent of your electricity bill when in good sound condition.

Reduce your electricity bill by 30% by installing a geyser management system

or

Install a solar heating system, and get FREE hot water!

 

 

 

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