Dekor Beton

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Phone No:
XK+383 45 604 724

M25-3 60000 Gjilan, Kosovo

Email Address:
[email protected]

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Contact Information

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Phone No:
+38345604724

M25-3 60000 Gjilan, Kosovo

Email Address:
[email protected]

Follow Us

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PV Ballasts can be used to support solar panels in solar power systems. These poles, also known as solar panel mounts or solar panel supports, provide a stable base for the solar panels and allow them to be positioned at the optimal angle and orientation for maximum efficiency. The size and shape of the concrete pillars used for solar panel mountings can vary depending on the specific requirements of the solar energy system. Poles are usually designed to support the weight of the solar panels and any additional equipment, such as wiring and inverters. Concrete is a popular choice for solar panel mounts because it is strong, durable, and able to withstand the elements, including wind, rain, and snow. Additionally, concrete is relatively cheap and widely available, making it a cost-effective option for solar energy projects. An important consideration when using concrete posts for solar panel mounts is to make sure the posts are properly anchored and supported to prevent them from shifting or tilting over time. This can be achieved through proper foundation design and the use of reinforcing materials, such as steel bars or mesh, to provide additional strength and stability.

It is open inventive and with wide application in the renewable energy industry, it is a concrete element, consequent and with elements that are not polluting or harmful to the environment, such as "Solar Panel Holder", the innovation of the product in this case is aluminum placed in both the edges of the concrete element which aluminum is precisely calculated and accurate by the field engineer and makes the replacement of the elements of the earlier when screws and bolts were used that made it unstable as a solar panel support, so the product ours, which brings a new way of easy use, or offers a new technical solution to the problem of quick and easy deployment, and is stable against atmospheric stress and particularly wind-resistant as it is actually exposed to current shocks under the stop of the wind, of "Solar panels on roofs, and other flat surfaces, panels that serve to obtain renewable electrical energy. The invention or product of the concrete element that serves to install "solar panels" has been shown to be economically efficient and, above all, sustainable. Based on the analyzes and tests done by an expert in the field, the product has shown useful properties and qualities in the field of energy and the production of renewable energy. The invention and production of our element (Product) has greatly helped in the quality of the work and in the continuous increase of the efficiency as the gain in time and consistency. Our invention fulfills all the conditions stipulated by the laws which define the most important elements of the protection of a patent. Our product is patented under the laws of the Ministry of Trade and Industry in the Republic of Kosovo with patent number KS/P/2019000030

When using concrete for mounting solar panels, it is crucial to consider the weight and movement of the panels during strong winds or earthquakes. This may require proper installation and the use of additional materials such as reinforcement and anchors to ensure stability and safety. Additionally, the concrete structures should be designed to provide a fixed and optimal position for maximum efficiency, while also taking into account any wind or seismic loading conditions in the area. This will help to ensure that the solar energy system is both safe and effective over the long term.

The shapes and forms of concrete structures used for mounting solar panels may vary depending on the specific requirements of the solar energy system. These structures are designed to support the movement of solar panels and related electrical installations and inverters. The exact configuration of the structure will depend on factors such as the type and size of the solar panels, the orientation of the panels, and any specific wind or seismic loading conditions in the area..