Solar Panels | Solar Electricity
Shetland - ZE1
Enquiry from: George G
Start Date: Immediate
Large solar roof panels and battery storage
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Shetland - ZE1
Enquiry from: George G
Start Date: Immediate
Large solar roof panels and battery storage
Shetland - ZE1
Enquiry from: Kenneth L
Start Date: Immediate
Call anytime Type of building: Detached Number of bedrooms: 4 Mains Gas available: No How became interested in heat pump: Save Money Quote requested on air source (wet) heat pump, to be supp...
Shetland - ZE1
Enquiry from: Brian R
Start Date: Immediate
Call anytime. Roof faces: East-West Type of building: Detached Number of bedrooms: 4 Possible shading: No Not a listed building. Not in a Conservation Area. How became interested in solar pan...
Shetland - ZE2
Enquiry from: Lindsay N
Start Date: Immediate
Call back anytime. Roof faces: South Type of building: Detached Number of bedrooms: 4 Possible shading: No Not a listed building. Not in a Conservation Area. How became interested in solar pa...
Shetland - ZE2
Enquiry from: Ian J
Start Date: Immediate
Call anytime Roof faces: South Type of building: Detached Number of bedrooms: 4 Possible shading: No Not a listed building. Not in a Conservation Area. How became interested in solar panels: ...
Shetland - ZE1
Enquiry from: Elizabeth S
Start Date: Immediate
Call back anytime. Type of building: Semi-detached Number of bedrooms: 3 Mains Gas available: No Age of Boiler (years): 3 How became interested in heat pump: Save Money Quote requested on air...
Shetland - ZE2
Enquiry from: Leonard C
Start Date: Immediate
Appointment Date - 2025-03-04. Appointment Time (24 hour format) - -. Are you the home owner of that property? - -. Is the property solely owned or are you living there with your wife/partner? - -. Ho...
Shetland - ZE2
Enquiry from: William J
Start Date: Immediate
Appointment Date - 2025-02-27. Appointment Time (24 hour format) - -. Are you the home owner of that property? - -. Is the property solely owned or are you living there with your wife/partner? - -. Ho...
Shetland - ZE1
Enquiry from: William H
Start Date: Immediate
Appointment Date - 2025-02-10. Appointment Time (24 hour format) - -. Are you the home owner of that property? - -. Is the property solely owned or are you living there with your wife/partner? - -. Ho...
Shetland - ZE2
Enquiry from: Kerrie M
Start Date: Immediate
Appointment Date - 2025-02-10. Appointment Time (24 hour format) - -. Are you the home owner of that property? - -. Is the property solely owned or are you living there with your wife/partner? - -. Ho...
Shetland - ZE2
Enquiry from: Irene B
Start Date: Immediate
Call back anytime. Solar Electrical Storage System * System power rating: 4.0 kW. Quote requested on Solar electrical storage system, to be supplied and fitted.
Shetland - ZE2
Enquiry from: Steven J
Start Date: Immediate
Appointment Date - 2025-02-10. Appointment Time (24 hour format) - -. Are you the home owner of that property? - -. Is the property solely owned or are you living there with your wife/partner? - -. Ho...
Shetland - ZE2
Enquiry from: Isabella C
Start Date: Immediate
Appointment Date - 2025-02-10. Appointment Time (24 hour format) - -. Are you the home owner of that property? - -. Is the property solely owned or are you living there with your wife/partner? - -. Ho...
Shetland - ZE2
Enquiry from: Irene B
Start Date: Immediate
Appointment Date - 2025-02-10. Appointment Time (24 hour format) - -. Are you the home owner of that property? - -. Is the property solely owned or are you living there with your wife/partner? - -. Ho...
Shetland - ZE1
Enquiry from: Brian R
Start Date: Immediate
Call anytime Roof faces: East-West Type of building: Detached Number of bedrooms: 4 Possible shading: No Not a listed building. Not in a Conservation Area. How became interested in solar pane...
Shetland - ZE2
Enquiry from: Steve G
Start Date: Immediate
customer made an enquiry for ground source heat pumps and confirmed on the local quotes site they would like quotes from a renewable energy specialist.mr lives in the shetland area and would like a ca...
Shetland - ZE2
Enquiry from: Steve G
Start Date: Immediate
customer in shetland areas is looking to do a couple of projects at the moment, and would like quotes for solar hot water.confirmed interest via sms and email at 23/01/2025 11:05.please call to arrang...
Shetland - ZE2
Enquiry from: Steve G
Start Date: Immediate
Call anytime Roof faces: SW Type of building: Detached Number of bedrooms: 4 Possible shading: No Not a listed building. Not in a Conservation Area. How became interested in solar panels: Sav...
Shetland - ZE2
Enquiry from: Andrew M
Start Date: Immediate
call back anytime. roof faces: south type of building: detached number of bedrooms: 4 possible shading: no not a listed building. not in a conservation area. how became interested in solar pa...
Shetland - ZE1
Enquiry from: Kenneth L
Start Date: Immediate
current heating is oil. call back anytime. type of building: detached number of bedrooms: 4 mains gas available: yes age of boiler (years): 20 how became interested in heat pump: reduce bills ...
How much do Renewable Energy Specialists in Shetland Islands cost?
Costs for Renewable Energy Specialists around Shetland Islands can be very different depending on the sort of task that you need to have performed in your home. It's the inquiry we get asked a great deal "how much do Renewable Energy Specialists in Shetland Islands cost?". It's always great to have an idea of how much a Renewable Energy Specialist are going to likely charge for their services. Rates will certainly change based upon the products and also the tradesman selected. The table reveals the sorts of task that Renewable Energy Specialists normally do as well as the average price range of these jobs. Some projects take longer to complete than others so costs do vary by project.
Jobs that Renewable Energy Specialists in Shetland Islands can do:
Renewable Energy Specialist job | Renewable Energy Specialist cost in 2025 |
---|---|
Solar panel in Shetland Islands | £4,650-£7,130 |
Air source heat pump in Shetland Islands | £5,250-£8,050 |
Solar thermal in Shetland Islands | £3,000-£4,600 |
Ground source heat pumps in Shetland Islands | £7,500-£11,500 |
Biomass boilers in Shetland Islands | £7,500-£11,500 |
Micro chp boiler in Shetland Islands | £3,750-£5,750 |
Solar battery in Shetland Islands | £3,080-£5,390 |
Solar panels with battery in Shetland Islands | £3,400-£5,100 |
When people think about heat pumps, they’ll automatically have the believe that a swimming pool will require a big heat pump. Since the swimming pool has a large volume of water, then warming such a volume will require a large ground source heat pump because that volume is much larger than the normal domestic hot water tank, right? Well, that point of reasoning does seem logical especially with the information almost everywhere that ground source heat pumps are usually less efficient when it comes to heating hot water for home’s use. However, the fact is there are also some things to put into consideration that also works in favour of the ground source heat pump.
First and foremost, you should know your domestic hot water will typically be heated to a much higher temperature when compared to your swimming pool. Since you wouldn’t be using the water to disinfect your bathroom or doing your dishes in your swimming pool, then the temperature can be much lower. In fact, it’s much more comfortable and enjoyable to heat to a typical “swimming pool temperature than having it at a hot bath temperature. If you’ve ever wandered into a really hot swimming pool, you wouldn’t need any introduction to the painful discomfort that comes next.
As a result of this low temperature, your “tiny heat pump can operate a in a more efficient way which makes the use of ground source heat pumps a viable swimming pool heating option. What’s more? The ground source heat pump works for a swimming pool just like any any other application - moving the heat from the region of a warmer temperature to the cooler temperature region.
Are you interested in installing an air source heat pump in your home or property? If yes, then you’d probably want to know just how much this is going to cost. Well, so are many other potential investors in the unit and we aim to answer this question once and for all. In this post, you’re going to discover the price range at which your new air source heat pump will fall in.
As simple as it seems, the cost of an air source heat pump can’t be accurate and straightforward as there are a number of factors that greatly influences the price. These influencing factors include the size of the heat pump, the system’s complexity, your personal preference - whether simple or advanced controls, and lots more. However, according to Energy Saving Trust, an air-to-water heat pump should fall within the range of £7000 to about £11000. What’s more? You’ll also need to put into consideration the cost of upgrading your radiators or fitting underfloor heating which can also cost you thousands of pounds.
In general, the main cost of a heat pump is the upfront cost of making a purchase as well as installing it. The heat pump will consume a little amount of electricity and the running costs are also relatively low. The amount your air source heat pump will cost largely depends on your home’s size, the temperature you want your home or property to be as well as how properly insulated your home is.
The period of time it’ll take to recoup your investment in the system in energy savings will also depend on a wide range of factors including the price you pay for electricity, how efficiently the system works, how you use the heat generated and more.
When you’re about to transform from the standard electricity to solar energy, what determines your solar system’s size is the amount of solar that’s required. The amount of solar that you’ll need, on the other hand, requires considering the end goal, be it to increase money savings, reduce environmental contamination, maximize Returns On Investment ( ROI), or just to copy what the neighbour’s done.
In order the determine the number of solar panels that is needed, the first step would be to calculate the number of kWhs that’s currently being used. A kWh is what’s used to determine the amount of energy that has been incorporated over time which the utility uses to bill you. What’s strongly recommended to create a suitable range is a 6 to 12 months average of your household electricity bill. Other factors that can play a key role in the determination of the number of solar panel needed include the following:
✓ Sunlight exposure hours. In order to know just how much energy your solar panels will generate, there’s a need to know the number of direct sunlight hours you should expect on a daily basis. For example if you stay in a region that’s usually very sunny, then it’ll be reasonable to expect more energy production per panel than regions that are usually cloudy.
✓ Angle and size of the roof. Roofs with a lot of workable space may require to let go of some efficiency opting for larger and cost effective panels to achieve the targeted energy. However not all homeowners have sufficient roof space or shade coverage for the solar panel they actually want. Also, the degree at which the roof slants will also determine if the sunlight is hitting the panels well enough and the amount of energy that can be generated thereof.
If you’re thinking about the possibility of installing a ground source heat pump in your home, then it’s normal to consider how efficient they’re in heating up a house before going ahead to make a purchase decision. In this article, we are going to address this question to help you make an informed purchase decision.
We know you’d prefer a single, accurate answer to this question, but the fact is, there are several influencing factors that can play a key role in the efficiency of a ground source heat pump installation. These factors include whether or not the property is well insulated, the fitting of a well designed system and the quality of its installation, the heat source that’s being used as well as the heating distribution system and its size ( under floor heating or radiators ).
The Coefficient of Performance ( CoP) measurement is used to imply the efficiency of a heat pump. This is basically the ratio between the amount of heat energy generated by the ground source heat pump and the amount of electrical energy or fuel it consumes. Therefore, the Seasonal Coefficient of Performance ( SCoP) is usually taken as a realistic measurement to cover throughout the year as its based on CoP at varying conditions as well as a standardized climate.
You must, however, note that there is no established Coefficient of Performance for ground source heat pumps as they can be influenced by a lot of factors as well as testing conditions. When they’re properly fitted, ground source heat pumps can achieve a quite high Coefficient of Performance.
Generally, a ground source heat pump can generate about 3 to 4 kilowatts (kW) of heat for every 1 kilowatt to electricity or fuel it consumes. It’s able to achieve a higher efficiency when compared to its counterparts by using the freely available heat energy from the ground.
If you’re looking to purchase and install a solar system for your home or property, then knowing the amount of energy a solar panel can produce can go a long way to help you determine just how much solar panels that’ll be needed to power your entire house. In this article, we’ll give you an idea of the amount of energy that can be generated by a solar panel to help you make informed decisions going ahead.
First and foremost, you should note that each and every solar panel is rated by how much direct current power they’re able to generate under standard testing conditions. The output of a solar panel is given in watts units (W) and it stands for the theoretical power generation of the panel under direct sunlight as well as temperature conditions. Generally, several domestic solar panels possesses power output ratings which ranges from 250 watts to 400 watts. And as you would have expected, the higher power ratings are preferable when compared to the lower power ratings. What’s more? The total wattage of your solar panels will greatly influence a major part of your overall solar system cost.
Assuming you’re able to get just about 5 hours of direct sunlight every day, you can determine the output of your solar panel in this way - 5 hours x 290 watts ( wattage example of a premium solar panel) = 1450 watts-hours or approximately 1.5 kilowatts per hour (kWh). hence, the individual solar panel output in your array should be able to generate about 500 to 550 kWh of energy every year. This is sufficient energy to power some small appliances without problems.
First and foremost let’s look at the meaning of a ground source heat pump. A ground source heat pump is simply a renewable heating system which happens to absorb the low temperature solar energy stored in the ground or in water with the help of a pipework that’s submerged and converts this energy into a higher temperature through compression. A ground source heating pump is capable of supplying the entire heating and hot water needs of a building throughout a whole year regardless of the season. So how exactly does a ground source heat pump work? Let’s have a look!
In principle, a ground source heating pump makes use of a refrigeration system but in a reverse form as it extracts low temperature heat from one point or location which is the source and transfer a higher temperature heat to another point or location - the sink. The pumps are powered by electricity and the operational principle can also be incorporated at generating both heating and cooling energy.
Knowing fully well heat naturally flows from warmer to cooler places, the ground source heat pump takes advantage of this physics by distributing a cold fluid via ground array pipework either in the ground or in water. It’s able to extract low grade energy from external sources of heat which includes soil, rock, lakes as well as streams.
Once the absorbed energy has been released to the heat pump from the ground or water, the fluid proceeds with its circuit back to the pipework to start its cycle all over again. Some of the benefits of the ground source heat pumps includes low carbon emission and improved air quality, efficient and affordable heating, the use of free heat from the ground and lots more.
Many domestic biomass boilers are no bigger than a standard gas boiler. However, they do require a flue, a feeder and a space to store the fuel. These can be designed to suit many different properties and will fit in lots of homes or a garage or outbuilding.
Solar cells , also referred to as photovoltaic cells (PV), absorbs energy from the sun and converts it to generate electricity. This, however, should not be confused with photovoltaic thermal cells or PVT which operates to generate heat for water in homes. Solar cells are linked electrically and also carefully organized into a large frame which is popularly called solar panels. Generally, solar cells are produced or made of silicon semi conductors which works to absorb sunlight and then turn it into electricity for use at a home. A solar panel comprises of either 60 or 72 solar cells which are electrically interconnected in series and parallel and also positioned in between glass and plastic which is then framed.
At present, solar panels incorporated for residential or domestic purposes only possesses the capacity to make use of only about 20 percent of the sunlight they’re able to absorb and convert it to electricity - also called solar efficiency. Available in the market are also a wide range of solar cell available for both industrial and commercial purposes. This type of solar panels have an efficiency rating of about 40 percent which will also automatically make them more costly than the domestic types.
One great thing about the solar industry is the fact that it keeps improving in such a way that raises both its efficiency as well as overall quality. And with further research and development, this is expected to even increase as the years go by. What’s more? As these aspects keep rising, it’s also expected that the solar panels price should be on a decrease. That way, they’ll become available to a wider range of individuals who’ll also like to save money on electricity bills and go greener.
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