10MW Solar Power Plant Project

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SPP project 10 MW

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Discount price
Price $1,500.00
Discount
Price $1,500.00
Index: 25012100
Data Sheet: Project documentation without estimates and results of engineering surveys
Sections: all sections
Data volume: 110 MB
File Format: * .pdf
Project documentation without estimates for the construction of a solar power plant
Technical and economic indicators
Installed capacity of SPP, MW: 10
Electricity consumption for own needs, kWh: 112316
Electricity consumption for own needs 1, %: 0,85
Building area, ha: 23,633
Development coefficient, %: 95,35
Duration of construction, months: 8

General information.

The purpose of the object is the production of electrical energy based on the photoelectric conversion of solar radiation energy into electrical energy. The output of SES power to the power system is carried out through 10 kV switchgear busbars and a block transformer 110/10/10 kV SES. Installed electric power - 10 MW. The principle of operation of photovoltaic solar modules (PSM) is that particles of electromagnetic radiation (photons) fall on the surface of a solar photocell. If the energy of a photon is less than the band gap energy, then it weakly interacts with the conductor. In the event that the energy of a photon is higher than the band gap energy, it interacts with electrons that have a covalent bond. Using its own energy, the photon breaks the bond and creates an electron-hole pair. In other words, photons activate the mutual movement of electric charges in the negative n-layer and the positive p-layer. As a result, an uncompensated negative charge is formed in the boundary zone of the p-layer, and an uncompensated positive charge is formed in the boundary zone of the n-layer. Thus, a p–n junction is formed. The resulting potential difference in the p–n junction causes a photoelectromotive force, as a result of which a direct electric current is supplied to the consumer device connected to the upper and lower contacts of the solar photocell. Block-modular inverter installations (BMIU) are used to convert the direct current of photovoltaic solar modules into three-phase alternating current. For the issuance of the generated energy to the adjacent power system, the project provides for the construction of a 10 kV cable line to the solar power plant. The technological process of solar power plant operation is based on the use of solar radiation energy. The technological process is divided into the following stages: Converting the energy of solar radiation into electrical energy; Assembly of the FSM connection scheme into strings; Transfer of electrical energy from strings to adders; Transmission of electrical energy from adders to BMIU; Converting direct current to alternating three-phase voltage of 380 V; Voltage increase from 380 V to 10000 V; Transmission of electricity with a voltage of 10 kV to KRU 10 kV.

Authorization