Carport fotovoltaico with self-generating electricity and 2 use in 1 place

BIPV carport fotovoltaico can be connected to the grid for income, using solar energy to create clean and green electricity, which can not only be used for charging electric vehicles and new energy vehicles, but also can be connected to the Internet to increase income.

The BIPV carport fotovoltaico reduces the city’s power consumption pressure. In addition to supplying the electricity generated by the carport fotovoltaico for vehicle use, the excess electricity can also be sold to the power supply company.

The BIPV carport fotovoltaico saves energy and brings benefits at the same time, achieving a win-win situation of social and environmental benefits.

Make full use of the original site to provide green and environmentally friendly energy. The energy-saving and environmentally friendly model of the photovoltaic carport fully responds to the motherland’s call for environmental protection.

Description

BIPV carport fotovoltaico, a combination of photovoltaic and building in the most simple and easy way. BIPV carport fotovoltaico has good heat absorption, easy to install, low cost, not only makes full use of the original site, but also provides green energy.

The construction of Carport fotovoltaico for sale in factory parks, business districts, hospitals, schools, etc., can solve the problem of high temperature inside the outdoor carport fotovoltaico for sale in summer.

The advantages of WHB&R BIPV carport fotovoltaico:

  1. The carport fotovoltaico is easy to install and has good heat absorption. It can absorb heat from the car, create a cool environment, and solve the problem of high temperature inside the car in summer.
  2. The original site can be fully utilized without occupying additional land resources.
  3. The carport fotovoltaico can be connected to the grid for income, using solar energy to create clean and green electricity, which can not only be used for charging electric vehicles and new energy vehicles, but also can be connected to the Internet to increase income.
  4. Reduce the city’s power consumption pressure. In addition to supplying the electricity generated by the photovoltaic car port for sale for vehicle use, the excess electricity can also be sold to the power supply company.
  5. The carport fotovoltaico saves energy and brings benefits at the same time, achieving a win-win situation of social and environmental benefits.
  6. The Carport fotovoltaico make full use of the original site to provide green and environmentally friendly energy. The energy-saving and environmentally friendly model of the photovoltaic car port for sale fully responds to the motherland’s call for environmental protection.
  7. Carport fotovoltaico reduces carbon emissions and protect our living home.
  8. Make comprehensive use of space, provide sunshade and rainwater collection, increase the value of parking spaces, and enhance the image and sustainable development image.

Classification:

  1. The single cantilever orientation is an ideal solar carport fotovoltaico choice for sites that are limited in space. It is best utilized when shading a single row of parking spaces in a confined area such as residential complexes or restaurants. The single cantilever solar carport fotovoltaico design is available in two orientations that can be chosen from depending on site location and orientation in order to maximize the productivity of your PV Modules. It is easily scalable and can fit any locations needs.
  2. The double cantilever is the standard orientation for covering large areas. It is ideal for maximizing your solar presence and looks great while doing it. Double cantilevers cover two rows of parking spaces at the same time and can be scaled to fit any size lot due to its modular design. The solar panels can be oriented so the incline faces either direction to best fit the site’s location according to the sun.

WHB&R BIPV carport fotovoltaico system includes:

1. PV modules (which might be thin-film or crystalline, transparent, semi-transparent, or opaque);

2. Charge controller, to regulate the power into and out of the battery storage bank (in stand-alone systems);

3. Power storage system, generally comprised of the utility grid in utility-interactive systems or, a number of batteries in stand-alone systems;

4. Power conversion equipment including an inverter to convert the PV modules’ DC output to AC compatible with the utility grid;

5. Backup power supplies such as diesel generators (optional-typically employed in stand-alone systems);

6. Support and mounting Bracket and hardware, wiring, and safety disconnects.

BIPV carport fotovoltaico systems can either be interfaced with the available utility grid or they may be designed as stand-alone, off-grid systems. The benefits of power production at the point of use include savings to the utility in the losses associated with transmission and distribution (known as ‘grid support’), and savings to the consumer through lower electric bills because of peak shaving (matching peak production with periods of peak demand).

Moreover, buildings that produce power using renewable energy sources reduce the demands on traditional utility generators, often reducing the overall emissions of climate-change gasses.

Building Integrated Photovoltaic (BIPV) System

Building Integrated Photovoltaic (BIPV) is the integration of photovoltaic (PV) into the building envelope. The PV modules serve the dual function of building skin—replacing conventional building envelope materials—and power generator.

By avoiding the cost of conventional materials, the incremental cost of photovoltaic is reduced and its life-cycle cost is improved. That is, BIPV systems often have lower overall costs than PV systems requiring separate, dedicated, mounting systems.

Steps in designing a BIPV system include:

  1. Carefully consider the application of energy-conscious design practices and/or energy-efficiency measures to reduce the energy requirements of the building. This will enhance comfort and save money while also enabling a given BIPV system to provide a greater percentage contribution to the load.
  2. Design for the Local Climate and Environment: A. Designers should understand the impacts of the climate and environment on the array output.B. Cold, clear days will increase power production, while hot, overcast days will reduce array output;C. Surfaces reflecting light onto the array (e.g., snow) will increase the array output;D. Arrays must be designed for potential snow- and wind-loading conditions;E. Properly angled arrays will shed snow loads relatively quickly;

Design As Your Requirement

1.Design the best solution according to the customer’s requirements, description, parameters, drawings.

2.Provide the most cost-effective price to the customer based on the design or production drawings.

3.Produce with guaranteed quality and quantity and timely delivery to the port or door.

4.Provide patient and meticulous remote and on-site construction assistance and after-sales service.

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