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Solar power is a power generation technology that converts sunlight into electrical energy. Solar power generation consists of modules, inverters, structures, incoming panels, etc. and when the sunlight hits a panel, it causes a physical reaction due to the photoelectric effect, resulting in direct current in the solar cell. The generated direct current is converted into alternating current via the inverter and supplied to the power system. When the ESS is connected, the ESS is charged and discharged through the power system according to a schedule.
Solar Power Module Core Components
The solar power modules absorb solar energy and convert it into electrical energy as the most important element in converting light energy from the sun into electrical energy.
The junction box collects power between the solar module and the inverter and delivers it to the inverter. The junction box protects the inverter and protects the module from a collision.
A solar inverter is a power generation device that uses solar energy, which is renewable energy, to generate electricity and to supply electricity to users. The DC power is converted to AC power through the inverter and then supplied.
The incoming panel distributes the electricity received. It also plays a role in load management, such as voltage and current, or in blocking and supplying tracks. It consists of devices necessary for power supply and demand, such as monitoring, control, and protection of the power system.
Time Taken to Complete Construction
Total Number of Participants
in the Solar Park Project
Amount of Power Produced Per Day
Number of Households (based on 400kW/day per household) Using Energy Produced by Solar Park
· GIS and TR (100/120MW)
· Maximum Transmission Capacity: 250MW
· Space secured for backup transformers
· Battery : 306MWh(20 Storage Buildings)
· PCS : 78MW(1MW×78ea)
· Office and Management building (100 pyeong each)
· Public Information Hall (100 pyeong)
· 2 Facility Storage Buildings (100 pyeong each)
· 5 Storage Buildings (100 pyeong each)
· Solar Facility Capacity: 491 kW
· 81,300 pyeong
· Two Level Project (Scheduled)
· 22,100 pyeong (D=300m)
· 2nd stage project site (expected)
· 42,200 pyeong
· Facility: 12MW
· Basic Array: 2 Layers × 28 Columns
· 8 Locations in Total
· Inverter (3MW)×33ea
· Other incoming panels, CCTV, etc.
· H=1.0m, B=6.0m
· Upper Aggregate Packaging: T=30cm
· Facility: 86MW
· Basic Array: 2 Layers × 28 Columns
솔라파크를 관리하게 될 관리동 주변에는 그 기능에 국한하지 않고 주변의 친환경적 맥락을 고려하여
풍부한 녹지를 구현합니다.
법정조경면적을 준수하고 수목의 특성을 고려한 식재를 적절하게 설계하여 조성합니다.
중앙부 광장에 산책로와 초화식재, 전망동산을 조성하여 주변 경관감상 및 힐링공간으로 방문객을
위한 휴식공간으로 계획
‘Solar Garden’ is a park that built on the site of SOLASEADO
(a concept of futuristic city where nature, people and energy coexist)
Solar Power Plant, with its motives of sunflowers, traditional patterns and electronic movement.
Flowers and trees such as lilacs, juniper trees and wild grasses were planted on the cross road
that through the circuler square of the park and the future Solar Power plant site.
The total area of the 'Solar Garden' is about 150,000m2 (37 acre)
and about 5m high prospecting hill was built in the center of circular square (about 300m in diameter).
The SOLASEADO Solar Power Plant is expected to be spotlighted as the largest Solar Power complex in South Korea
and also tourlist attraction with its beautiful scenery and natures.