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Georgia

Solar Market Outlook in Georgia

The traditional energy production in Georgia is based primarily on the importation of fossil fuels, along with hydropower and fuel. The country also serves as an important transit point for oil and gas. This is why the Georgian government has committed to improving the nation’s energy efficiency and maximizing its renewable energy potential. 

In the past decade or so, it has made significant strides in that campaign. The long-term goal for Georgia is to improve its energy security and to switch to a cleaner and more sustainable energy sector.

Tapping into solar energy sources is the most viable solution for this. In 2017, it started the development of the country’s first solar park. The government actively sought investors for this project that is capable of producing 5 MW of solar power. The total cost of the project is estimated at $3.45 Million with an annual solar power generation capacity of 7,100,000 KWh. 

Although Georgia is confronted with a variety of challenges in switching to renewable and affordable energy sources, the government has taken measures to address those issues. An important step towards this goal is to become a member of the EU4Energy Programme, which will enable Georgia to develop policies to benefit the renewable and solar energy sector.

Solar Energy Equipment Supply Capacity in Georgia

There are limited options when it comes to manufacturers and suppliers of solar equipment in Georgia. Therefore, most residential and commercial installations rely on importation from global and online suppliers.

Top Major Seaports & Logistics in Georgia

There are a few commercial ports in Georgia to facilitate the transport of solar equipment into the country. These ports include Poti, Supsa, Batumi, and Kulevi.

Electrical Disconnect used for below projects in Georgia

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Electrical Disconnect

Wholesale Disconnects for Solar Systems

Essentially, safety disconnects allow users to rapidly shut down the system in case of an emergency. For this reason, disconnect switches are required to comply with electrical codes and pass inspection. 

A solar PV system usually has two safety disconnects. The first is the PV disconnect (or array DC disconnect). This kind of disconnect allows the DC current between the modules (source) to be interrupted before reaching the inverter. 

The second disconnect is the AC disconnect. The AC disconnect is used to separate the inverter from the electrical grid. In a solar system, the AC disconnect is typically mounted to the wall between the inverter and utility meter. This kind of disconnect may be a breaker on a service panel, or it may be a standalone switch. Additionally, it is sized based on the output current of the inverter. 

How to Size an AC or DC Disconnect?

Generally speaking, sizing refers to equipment, components, and connectivity (wiring) throughout a solar system as it relates to NEC requirements. The following terms are used to determine component output: 

  • Voltage
  • Circuit load
  • Amps or breaker size
  • Wiring or cables
  • Sizing and Protection of the AC Disconnect

NEC 690.10 stipulates that the circuit conductors between the inverter output and the building or structure disconnecting means shall be sized based on the output rating of the inverter. These conductors shall be protected from overcurrents in accordance with Article 240. The overcurrent protection shall be located at the output of the inverter. 

Important Features to Look For in Disconnect in Bulk?

Disconnects are incredibly useful for solar systems, and so, it is important to get the best possible disconnect for your own solar system. The following are the core features to look for in a disconnect: 

  • Offers bi-directional functionality, which breaks the arc regardless of normal or a reverse current flow
  • Includes all required components to meet NEC 690 requirements, including jumpers and labels
  • Guards against accidental contact with live parts with clear polycarbonate dead fronts
  • Available with modifications that allow customization to meet any application need
  • Sizing of Module Interconnection Conductors and DC Overcurrent Protection

According to NEC 690.80, where a single overcurrent device is used to protect a set of two or more parallel-connected module circuits, the ampacity of each of the module interconnection conductors shall not be less than the sum of the rating of the single fuse plus 125% of the short-circuit current from the other parallel-connected modules. 

Why Buy Wholesale Disconnects for PV Systems from Us?

Our website lists AC or DC disconnects for PV systems from reputable brands all over the world. As a result, you can expect that the AC or DC disconnects that we offer are of the best variety. They are characterized by numerous remarkable features, such as higher efficiency, reliable performance, and longer life span, thus giving them the ability to fulfill all your solar power needs. 

If you want to buy AC or DC disconnects for PV systems at low wholesale prices, then go through our website to explore products with profitable deals. You can also choose to send in your query at info@solarfeeds.com.

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