Luminous and pollution-free photovoltaic curtain wall

The average direct sunlight and oblique light obtained per square meter of land per year on Earth is 1,000 kilowatt-hours. How can we effectively use the valuable wealth that nature has endowed? As early as more than 100 years ago, people invented the photoelectric template, which used light to make the zinc plate immersed in the electrolyte generate current. By 1954, U.S. researchers had made great achievements using elemental silicon, and photovoltaic templates were first used in space navigation. Nowadays, people are paying more and more attention to health. The growing awareness of green environment, the advancement of science and technology have made it possible to incorporate photovoltaic templates into curtain walls, and it is time to use photovoltaic screens.
The photovoltaic template, abbreviated as PV, is a photovoltaic material that has been used for 30 to 40 years. Its advantage is that it can work in the harsh climate. This is a complete technology that can be applied in many fields, such as in today's indispensable communication field. Placing the photovoltaic template in the curtain wall eliminates the need to increase the floor area of ​​the building.
How does light energy be converted into electricity and how does it apply to the curtain wall?
Designing a photovoltaic wall requires consideration of various factors such as batteries, formworks, wires, and transformers. Each battery constitutes a template. Each template forms a small grid and is connected by wires, all of which form a PV transformer. A PV transformer is a closed part of the curtain wall. Each set of optoelectronic devices can consist of one or more transformers. Each optoelectronic device first generates a direct current, then converts it from direct current to alternating current, and transmits it from the voltage network. The reverse rectifier converts the voltage of 230/400 volts into the power of frequency usually 50 hertz.
The crystal cells communicate with each other via wires and are attached to a large surface template. These cells are embedded in a hard resin glass. The wires can be attached to the back of the template or to the edges of the glass. The amorphous part of the template is a complete plane that communicates with each other and is embedded in two pieces of glass and a highly transparent resin. All the templates can be used as building materials for curtain walls. These templates are extremely rugged and have good electrical insulation and meet the secondary safety standards. After these measures are taken, even if an error occurs, no dangerous voltage will appear on the touchable parts. Optoelectronic templates have the ability to withstand external environmental intrusion, or in the ozone, or in acid rain, or in the environment of minus 50 degrees Celsius to 90 degrees Celsius, photovoltaic templates can still be used for decades, and it is a very attractive modeling material.
At Munich's largest construction industry exhibition in 1991, Schüco GmbH in Germany first exhibited a photovoltaic curtain wall. This is a development project. It is also the beginning of applying light energy to the architectural decoration industry, which has attracted the attention of professionals.
Photovoltaic curtain walls are first and foremost a kind of high-tech building shell that can meet all the requirements for weather resistance, and of course, can also meet the physical requirements of the building, such as flame retardant, heat insulation and silencer.
Photovoltaic curtain walls also provide a distinctive style, because this is a sign of technological advancement and progress, and an indispensable element of corporate culture.
Photoelectric curtain wall after installing the photoelectric template can save the traditional building materials, such as photoelectric template can replace the polished natural building materials. Photoelectric curtain walls also greatly reduce the burden on the environment because it protects natural resources from damage. In the traditional power plants, the most common is the use of fossil fuels to generate electricity, and the use of photovoltaic templates to generate 100 kilowatt-hours can save 26 liters or 50 kilograms of coal, which also means less emissions of 57 kilograms of carbon dioxide, 71 grams of Sulfur dioxide and 75 grams of nitrogen oxides.
The biggest advantage of a photovoltaic curtain wall is that it requires no fuel, no exhaust gas, no waste heat, no waste residue, and no noise pollution. It can be used to generate electricity. Because it can generate electricity, it can pay less electricity, and it can also sell excess electricity to the electric power bureau abroad. It can be seen that the photovoltaic curtain wall itself is an advantage.

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