Make the future bright with solar
powered Heating Solutions.

Sunowner solar panels: Combined solutions for all your energy needs

Photovoltaic (PV) electricity, commonly referred to as solar electricity, is generated by converting sunlight into electrical power using solar cells or photovoltaic cells.

  • Renewable Energy Source: Solar energy is abundant and renewable, making photovoltaic electricity a sustainable and environmentally friendly power source.

  • Reduced Electricity Bills: Solar power systems can significantly reduce or eliminate electricity bills, especially in areas with ample sunlight and favorable solar conditions.

  • Low Operating Costs: Once installed, solar panels have low operating and maintenance costs.

  • Reduced Carbon Footprint: Photovoltaic electricity production generates minimal greenhouse gas emissions, contributing to efforts to combat climate change.

Solar domestic hot water (SDHW) systems use solar energy to provide hot water for residential purposes. These systems are designed to harness sunlight and convert it into heat, which is then used to warm water for various household needs.

  • Energy Cost Savings: By using free solar energy, these systems can significantly reduce the need for conventional energy sources to heat water, resulting in lower energy bills.

  • Environmentally Friendly: Solar domestic hot water systems produce clean energy and help reduce greenhouse gas emissions associated with traditional water heating methods.

  • Renewable Energy Source: Solar energy is a renewable resource, making SDHW systems a sustainable and environmentally responsible choice.

Solar pool heating is a popular and environmentally friendly method of warming swimming pool water using energy from the sun. The basic principle involves capturing solar energy and transferring it to the pool water, typically through the use of solar collectors.

  • Renewable Energy Source: Solar pool heating systems utilize a free and abundant energy source—sunlight.

  • Reduced Energy Costs: Solar heating can significantly reduce or eliminate the need for traditional energy sources to heat the pool, leading to cost savings over time.

  • Environmentally Friendly: Solar pool heating systems produce clean energy, contributing to a reduction in greenhouse gas emissions.

Solar heating with a heat pump is a hybrid heating system that combines the benefits of both solar thermal technology and a heat pump. This type of system is designed to provide space heating, hot water, or both for residential or commercial buildings.

  • Renewable Energy Integration: Combining solar thermal energy with a heat pump allows for a more consistent and efficient heating process.

  • Increased Efficiency: The heat pump enhances the overall efficiency of the system by extracting additional heat from the surroundings, even during periods of limited sunlight.

  • Year-Round Operation: The system can operate year-round, utilizing both solar energy and heat pump technology to provide heating even in less sunny or colder conditions.

  • Reduced Energy Costs: By using solar energy and a heat pump, the system can potentially reduce reliance on traditional energy sources, leading to lower energy bills.

Efficiency

85 %

A solar installation adapted for every type of project

Resident

  • Generate your own energy and become less reliant on your utility
  • Protect yourself from rising energy costs
  • Reduce the carbon footprint of your home in light of the climate crisis
  • Commercial

  • Meet strict energy requirements for new buildings with high-efficiency solar panels
  • Optimize rooftop space with the highest energy per m2 panels on the market
  • Benefit from a simplified maintenance
  • Sunowner's commitment to the energy transition

    Our mission at Sunowner is to reduce the carbon emissions and environmental impact of our buildings with high-performance, durable solar panels.

    To achieve that mission, Sunowner is guided by 3 core values: 

    • To continuously innovate in the ecodesign of our solar panels: by developing manufacturing solutions that reduce carbon emission and environmental impact
    • To actively contribute to the development of the solar industry: by offering solar training programs, participating in solar lobby efforts and especially through building a network of local and reliable installers
    • To present a unique and unmatched experience for our customers: by guiding our customers from A to Z in their solar projects from simulation to installation and beyond. 
       
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    Heat pipes are thermal transfer devices capable of transferring heat and energy several hundred times faster than conventional methods. A traditional heat pipe is a hollow cylinder filled with a vaporizable liquid.

    How do Heat Pipes Work?

    1. Heat is absorbed in the evaporating section
    2. Fluid boils to vapor phase
    3. Heat is released from the upper part of cylinder to the environment; vapor condenses to liquid phase
    4. Liquid returns by gravity to the lower part of cylinder (evaporating section)

    This process is used to improve dehumidification and recover energy from exhaust air streams in air conditioning as described below.

    Using Heat Pipes to Improve Dehumidification

    Heat pipes may be described as having two sections: Precool and Reheat.

    The first section is located in the incoming air stream. When warm air passes over the heat pipes, the refrigerant vaporizes, carrying heat to the second section of heat pipes placed downstream. Because some heat has been removed from the air before encountering the evaporator coil, the incoming air stream section is called the precool heat pipe.

    Air passing through the evaporator coil is assisted to a lower temperature, resulting in greater moisture removal. The “over cooled” air is then reheated to a desirable temperature by the reheat heat pipe section, using the heat transferred from the precool heat pipe. This entire process of precool and reheat is accomplished with no additional energy use. The result is an air conditioning system with the ability to remove considerably more moisture than regular systems.

    Using Heat Pipes to Recover Energy from Exhaust to Supply Air

    State of the art heat exchangers now allow for either equal calls for cool and heat recovery or optimizing thermal recovery in the season that matters most, while still allowing for appreciable recovery in the other season. Compact design, low pressure drop, high optimized season effectiveness and trouble-free operation with no moving parts, makes this product ideal for design engineers and owners alike.

    Moreover, to reduce or eliminate the likelihood of any contamination of supply air, a foam-filled separation of up to 40″ can be incorporated into the design. Or, a split passive system with up to 60’ of separation between air streams.

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