Solar Panels | Solar Electricity
Strathcarron - IV54
Enquiry from: Douglas A
Start Date: Immediate
a battery to back up my solar panels
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Strathcarron - IV54
Enquiry from: Douglas A
Start Date: Immediate
a battery to back up my solar panels
Strathcarron - IV54
Enquiry from: Warren P
Start Date: Immediate
customer has a solar panels project they are looking to have done, specially they want quotes for solar hot water. they are unsure of options so would like to discuss with a electrician.confirmed inte...
Strathcarron - IV54
Enquiry from: Hilary R
Start Date: Immediate
Customer made an online enquiry for Solar Electricity and are waiting to be contacted. Mrs lives in the Strathcarron area. Solar PV panels Roof space available No shading to roof Please call to di...
Strathcarron - IV54
Enquiry from: Andrew M
Start Date: 1 to 3 months
solar panel’s on south facing 9m x 18m shed roof with cable to main house are you the property owner: owner of the property property type: detached do you have plans for the property available: yes...
Strathcarron - IV54
Enquiry from: Mark H
Start Date: Immediate
Customer made an online enquiry for Solar Electricity and is waiting to be contacted. Mr lives in the Strathcarron area. Solar PV panels Roof space available, not sure on what kW they want No shad...
Strathcarron - IV54
Enquiry from: Paul H
Start Date: Immediate
Customer made enquiry for Solar Electricity online. Customer confirmed via They live in the Strathcarron area. Solar Panels Roof space available No shading to roof Please contact to discuss their op...
Strathcarron - IV54
Enquiry from: Kevin A
Start Date: 1 to 3 months
are you the property owner: owner of the property property type: detached do you have plans for the property available: yes how many bedrooms does the property have: 1-2 type of the roof you are look...
Strathcarron - IV54
Enquiry from: Vickie M
Start Date: Immediate
Customer made enquiry online for Solar Electricity via one of our websites. Customer lives in Strathcarron area. Roof space available, no shading Please call to arrange appointment and discuss opt...
Strathcarron - IV54
Enquiry from: Jonathan C
Start Date: Immediate
customer in strathcarron areas is looking to do a couple of projects at the moment, and would like quotes for ground source heat pumps.confirmed interest via sms and email at 26/02/2022 14:04.please c...
Strathcarron - IV54
Enquiry from: Jonathan C
Start Date: Immediate
** property is going to be a new build ** call any time. type of building: detached number of bedrooms: 4 length of garden: 50 m. width of garden: 50 m. access available for excavator: yes ma...
Strathcarron - IV54
Enquiry from: E H
Start Date: Immediate
Customer made enquiry for Solar Electricity online. Customer confirmed via They live in the Strathcarron area. Solar Panels Roof space available No shading to roof Please contact to discuss their op...
Strathcarron - IV54
Enquiry from: Dale S
Start Date: Immediate
Call any-time Type of building: Detached Number of bedrooms: 3 How became interested in heat pump: Renewable technology interest Quote requested on air source (wet) heat pump, to be supplied a...
Strathcarron - IV54
Enquiry from: Stephanie G
Start Date: Immediate
Customer made enquiry for Solar Electricity online. Customer confirmed via They live in the Strathcarron area. Solar Panels Roof space available No shading to roof Please contact to discuss their op...
Strathcarron - IV54
Enquiry from: John P
Start Date: Immediate
Customer made an online enquiry for Solar Electricity and are waiting to be contacted. Mr lives in the Strathcarron area. Solar PV panels Roof space available No shading to roof Please call to dis...
Strathcarron - IV54
Enquiry from: Claire C
Start Date: Immediate
Are you the property owner: Owner of the property How many bedrooms does the property have: 3-4 Is the roof you are looking to have the solar panels on: Pitched Is your roof obstructed by: Windows & d...
Strathcarron - IV54
Enquiry from: David F
Start Date: Immediate
Customer made an online enquiry for Solar Electricity. Mr lives in the Strathcarron area. Solar Panels Roof space available Not sure on what kW they want so please call to discuss their options for So...
Strathcarron - IV54
Enquiry from: Stephanie G
Start Date: Immediate
*Homeowner- Solar pv panels South facing roof No obstructions No shading Roof space available Supplied and fitted Please contact to appoint
Strathcarron - IV54
Enquiry from: Stephanie G
Start Date: Immediate
Customer looking to have Solar Panels installed on their home. Homeowner Supplied and Fitted Please Call to Appoint
Strathcarron - IV54
Enquiry from: Joyce B
Start Date: Immediate
Home Owner Supplied and Fitted Call to Appoint
Strathcarron - IV54
Enquiry from: Ewen G
Start Date: Immediate
Customer looking to have Solar Panels installed on their home. Homeowner Feed In Tariff Supplied and Fitted Please Call to Appoint
How much do Renewable Energy Specialists in Strathcarron charge?
Prices for Renewable Energy Specialists around Strathcarron can fluctuate depending on the kind of task that you want to have performed in your house. It's the question we get asked a whole lot "how much do Renewable Energy Specialists in Strathcarron charge?". It's always really good to have an idea of how much a Renewable Energy Specialist are going to likely cost for their services. Prices will likely vary based on the materials and also the tradesman selected. The table shows the kinds of job that Renewable Energy Specialists generally do as well as the regular price variety of these projects. Some jobs take longer to finish than others so prices do be very different by task.
Tasks that Renewable Energy Specialists in Strathcarron can do:
Renewable Energy Specialist job | Renewable Energy Specialist cost in 2024 |
---|---|
Solar panel in Strathcarron | £4,650-£7,130 |
Air source heat pump in Strathcarron | £5,625-£13,025 |
Solar thermal in Strathcarron | £3,000-£4,600 |
Ground source heat pumps in Strathcarron | £7,500-£11,500 |
Biomass boilers in Strathcarron | £7,500-£11,500 |
Micro chp boiler in Strathcarron | £3,750-£5,750 |
Solar battery in Strathcarron | £3,080-£5,390 |
Solar panels with battery in Strathcarron | £3,400-£5,100 |
It may be hard to believe with the summers we have in the UK, but there is more than enough sunlight to power solar panels. Solar PV (photovoltaic) panels operate in daylight, rather than needing direct rays from the sun so they’ll work throughout the year.
How Long Do Solar Panels Last?
As an alternative form of energy, solar panels are becoming increasingly popular all thanks to a wide range of benefits it provides. It does not produce any emission which makes it greener and more environmentally friendly, it requires little maintenance and are less likely to break down, they also come with warranty that are always quite long mainly because of the life expectancy of the average solar panel amongst many other advantages. Therefore, if you’re considering to purchase and install new solar panels within your home, you’d also probably want to know the time period in which they’re expected to last. In this article, we aim to help you answer this question so you can make an informed decision going ahead.
As a result of the rising energy bills as well as the desire to be greener, solar panels are becoming increasingly popular by the day in the UK. The most recent models of solar panels in the market possesses an expected lifespan of 40 to 50 years as well as warranties that keeps them protected for a minimum of half of that period. These warranties also serves as a guarantee to the solar panel’s level of performance over the first half of their lifespan. Several warranties will guarantee that the performance will not go below 80 percent before the warranty lapses. And even more importantly, some solar panels are crafted in such a way that they wouldn’t drop below 80 percent performance level throughout their lives.
However, in order to derive maximum benefits from your solar panels for a long period, there’s a need to ensure they’re properly maintained at least once a year throughout their lifespan.
If you’re considering installing ground source heat pump, it’s likely you’re also wondering just how deep it’ll go into the ground to be efficient. Well, the initial step to take while determining the ground source heat pump’s design is to research the different options available to reduce the space heating as well as hot water demand. To achieve this, there must be an accurate measurement of energy efficiency which is usually done by getting an Energy Performance Certificate ( EPC) . This is helpful as such that it helps to identify the most suitable or the right size of heat pumps which will help reduce the consumption of energy, heat loss as well as hot water needs of the house.
Generally, ground source heat pumps are usually more compatible with new builds against retrofits. What’s more? The heat pump has two different types of loop systems :
✓ The open loop system and;
✓ The closed loop system.
The open loop system absorbs water from the ground and transfers this ground water via a heat pump to where it carries out the extraction of heat. Meanwhile the closed loop system extracts heat from the ground and incorporates a continuous loop of piping that’s linked to the indoor heat pump. There are a few types of closed loop system, these includes:
✓ The Horizontal Ground Source Heat Pump. This is installed in horizontal trenches of about 1 to 2 metres deep. This is more common in areas where land is readily available.
✓ The Vertical Ground Source Heat Pump. These boreholes are a more costly option but it’s also the best option when land is not readily available for horizontal installation. The insulation hole is dug at a minimum of 6 metres into the ground, while the entire piping will be at a depth of about 50 to 150 metres based on your home’s heat requirements as well as the ground’s composition.
Asides from the fact that solar energy can be converted into electricity with the help of solar panels, there’s also another pretty cool way the sun’s power can be harnessed - solar thermal technologies. These technologies are able to convert sunlight into heat rather than power and these are in fact the very first solar energy products that were commercialized in the United Kingdom. Solar thermal panels, in a similar way to solar PVs, can help in minimizing your carbon footprint while also assisting you to save good money on your energy bills by providing the much needed coverage for your heating needs with the help of a renewable energy source that’s totally free.
Solar thermal panels provides some great benefits which is capable of making all homeowners in the UK consider installing one in their respective homes. Let’s take a closer look at these benefits.
✓ When compared to solar PV panels, they’re a more affordable heating option and also have a shorter payback period.
✓ Solar thermal panels are more efficient than PV panels due to the fact that the heat waves are able to hold more energy than sunlight and also because there’s no electricity transformation process.
✓ Solar thermal panels are able to operate in cold climates, strong wind as well as overcast weather, and make use of an energy storage system.
✓ They can help you save about 600kg of carbon dioxide emissions on an annual basis.
✓ Although most of the solar thermal panel systems come with a warranty usually within the range of 5 to 10 years, they’re able to last up to 25 years. What’s more? The require just a little maintenance, meaning the main cost you’d have to worry about is the cost of installation.
If you’re thinking about installing a solar thermal system in your house, it’s always important to put into consideration numerous factors before you proceed. While some solar thermal systems are suitable for use at home, there are also some that are suitable for businesses or organizations which normally requires a big amount of hot water like hotels, restaurants, schools, hospitals and many more. You’ll also find some types available in the market that are suitable for communities to satisfy communal hot water demands.
It should, however, be noted that solar thermal systems do not have the capacity to produce all the hot water demand of a house. In the UK, an average household will need an annual water heating of between 3000kWh to 5000kWh. Whereas, a solar thermal system is only able to meet about 40 percent to 60 percent of this demand.
With that in mind, it’s also worth noting that during the summer months when the solar radiation is at its peak and hot water demand is relatively lower when compared to other seasons, a solar thermal system may be able to provide all of your household’s hot water needs. This implies that during this period you may not find the need to operate your boiler at all. However, during winter or colder months, when you have a higher hot water demands in contrary to a lower solar radiation, a solar thermal system will only be able to take care of about 20 percent of your household’s hot water needs. And that ultimately implies that during this period, you’ll need to rely more on a alternative or backup source of heat like gas, coal, electricity, oil or LPG.
Are you thinking of installing solar thermal systems in your home or property and wondering exactly how it works to generate electricity? Regardless of your motive, in this article you’ll learn in simple details how solar thermal is how solar thermal doesn't provide electricity for your home.
If you are looking to generate electricity for your home then Solar PV are able to generate electricity simply by absorbing and focusing sunlight in such a way to create a temperature level that’s high enough to generate the much needed electricity. There are two main components that comes with the solar energy collectors of each. These two components include, the reflectors ( mirrors), which works to absorb and concentrate the sunlight onto a receiver. In several types of the solar thermal power systems, a heat transfer fluid is then heated and distributed in the receiver so as to generate steam. Once the steam as been produced, it’s then transported to the turbine where it’s turned into a mechanical energy, which in turn powers the generator to produce electricity.
Solar thermal power or electric systems are usually embedded with a tracking system which keeps the sunlight concentrated on the receiver all day long as the sun changes position in the sky. They also come with a wide array of collectors which works of distribute the heat absorbed to a turbine as well as the generator. A lot of solar thermal power facilities will gave two or more plants with different arrays and generators.
Solar thermal power systems can also have a thermal energy storage system component whose work is to permit the solar collector system to heat an energy storage system during the day while energy storage system’s generated heat is incorporated in the production of electricity at night or during a cloudy weather when there’s not much sunlight.
If you’re thinking about installing a solar system in your home or property, this is probably one of the things you’d like to know before making a purchase decision. Well, you’ve come to the right place! In this post, we’re going to give you a good insight into this to help you make the best informed decision possible moving forward. Let’s take a look!
First and foremost, it must be stated that providing a short and accurate answer to this question is nearly impossible as the amount of time a solar panel will last after dark is influenced by a number of factors. These factors include the size of your solar system, the battery size as well as your power usage. As you would have imagined, batteries are charged when there is excess energy that’s being produced by your solar system but it’s not being incorporated to power your home or property. More often than not, this occurs during the sunlight’s peak periods from about 10am to 2pm.
The time it’ll take for your battery to charge is influenced by the size of your solar system in Kilowatts, the size of your battery as well as the rate in which your system is being used. Your battery can be charged in a day or two, of course unless it’s an over-sized battery for your system.
When the sun sets and your solar panels can no longer directly run your appliances via electricity generation, the battery then kicks in. You will use about 1 to 2 kW’s of power if you’re watching TV, using the oven as well as lights internet etc. in other words, even a small solar panel battery will last all night. However, the same doesn’t apply if you’re having a party with running floodlights, three fridges and air conditioner as the battery will drain a lot faster.
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.
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