인기 과학 | 집에 설치된 태양광 발전 용량을 간단하게 계산하는 방법은 무엇인가요?

often have friends[Photovoltaic Information] WeChat Platform (Micro Signal: PV-info), I asked how large-capacity photovoltaic power stations should be installed in my home. In fact, many friends outside the photovoltaic industry have fallen into a misunderstanding: I thinkphotovoltaic power station is related to household appliances.

in fact, in simple terms, photovoltaic power stations will not only supply power to a certain electrical appliance, but will supply power to the whole family. Photovoltaic power and the power of the national grid will supply power to the family together!

The above figure is a typicalthe schematic diagram of the grid-connected photovoltaic power generation system, it can be seen that photovoltaic power generation is given priority to the load. if photovoltaic power generation> load power consumption, electricity can be sold to the superior power grid. ifphotovoltaic power generation <load power consumption, the grid power and photovoltaic power together to supply power to the load, soyour photovoltaic power station is equivalent to a small tributary of the large power grid, which is merged into the large power grid together. you can have as much electricity as you want in your home. you don’t have to worry about how many electrical appliances there are in your home and whether the photovoltaic power station installed by yourself generates enough electricity!

so how can we know how big a photovoltaic power generation system to install in our home?

the most important ones arethreedeterminants:power grid company requirements,the electricity consumption and available installation area of the home.

according to the requirements of Shaanxi local power grid company, 220 volts can be connected at 8 kW and below. 8 kW ~ 400 kW can be connected to 380 volts; 400 kW ~ 6000 kW can be connected to 10 kV. So if the family is220 volt power supply, the maximum can only be accessed8 kW. At present, the national network and the south network have not clearly issued a document requiring the relationship between the grid level and the installed capacity!

household photovoltaic power generation systems generally adopt the mode of “self-use surplus electricity online”. The more electricity you use, the better the income and the more obvious the economic benefits! Therefore, the installed photovoltaic capacity should match the electricity consumption at home as much as possible!

on the other hand, if the roof area is large, you can try to lay photovoltaic installed capacity according to the capacity of the roof area. After all, the photovoltaic revenue is still good now!

Roof-mounted photovoltaic (PV) systems are designed to convert sunlight into electricity using solar panels installed on the rooftops of residential, commercial, or industrial buildings. These systems serve as a renewable energy source, providing clean and sustainable electricity to power homes, businesses, and communities.

simple calculation method:

Take the commonly used monocrystalline silicon photovoltaic module as an example. The length of a photovoltaic module is 1644mm, the width is 992, and the nominal power is 280 watts. The calculation shows that,per kilowatt of photovoltaic power generation system requires 6square meters..

photovoltaic power generation system can generate 1200 kilowatt-hours of electricity per kilowatt year.. (China has a vast area and a huge area, and the power generation in different regions is also very different. Take the power generation in the surrounding areas of Beijing as an example)

Renewable Energy Source: Roof-mounted PV systems harness energy from the sun, a clean and abundant renewable resource, reducing reliance on fossil fuels and contributing to a greener environment.Energy Cost Savings: By generating electricity on-site, these systems can significantly reduce energy bills for property owners, offering long-term financial savings.Increased Property Value: Installing solar panels on a roof can enhance the value of a property, making it more attractive to potential buyers or tenants.Low Maintenance Requirements: PV systems are generally low-maintenance, with few moving parts, ensuring reliable operation and minimal upkeep costs.Space Efficiency: Roof space is often underutilized, and installing PV panels on rooftops optimizes this area for energy production without requiring additional land.Grid Independence: In some cases, roof-mounted PV systems can provide energy independence, allowing buildings to operate off-grid or reduce their dependence on the local power grid.Government Incentives: Many governments offer incentives, such as tax credits or rebates, to encourage the adoption of solar energy, making the initial investment more affordable.Job Creation: The installation and maintenance of PV systems create job opportunities in the renewable energy sector, supporting local economies.Climate Change Mitigation: By reducing greenhouse gas emissions, roof-mounted PV systems play a crucial role in combating climate change and promoting sustainable development.
재생 에너지원: 지붕에 설치된 태양광 발전 시스템은 깨끗하고 풍부한 재생 가능 자원인 태양 에너지를 활용하여 화석 연료에 대한 의존도를 낮추고 친환경 환경에 기여합니다. 에너지 비용 절감: 이러한 시스템은 현장에서 전기를 생산함으로써 부동산 소유주의 에너지 요금을 크게 줄여 장기적으로 재정적 비용을 절감할 수 있습니다. 부동산 가치 상승: 지붕에 태양광 패널을 설치하면 부동산의 가치를 높여 잠재적인 구매자나 임차인에게 더 매력적으로 보일 수 있습니다. 낮은 유지보수 요구 사항: 태양광 시스템은 일반적으로 움직이는 부품이 거의 없어 유지보수가 필요하지 않아 안정적인 작동과 최소한의 유지비용을 보장합니다. 공간 효율성: 옥상 공간은 활용도가 낮은 경우가 많은데, 태양광 패널을 옥상에 설치하면 추가 토지 없이도 이 공간을 에너지 생산에 최적화할 수 있습니다. 그리드 독립성: 경우에 따라 지붕에 설치된 태양광 발전 시스템은 에너지 독립성을 제공하여 건물이 오프 그리드로 운영되거나 지역 전력망에 대한 의존도를 줄일 수 있습니다. 정부 인센티브: 많은 정부에서 태양 에너지 채택을 장려하기 위해 세금 공제 또는 리베이트와 같은 인센티브를 제공하여 초기 투자 비용을 더 저렴하게 만듭니다. 일자리 창출: 태양광 발전 시스템의 설치와 유지보수는 재생 에너지 분야에서 일자리를 창출하여 지역 경제를 지원합니다. 기후 변화 완화: 지붕 장착형 태양광 발전 시스템은 온실가스 배출을 줄임으로써 기후 변화에 대응하고 지속 가능한 발전을 촉진하는 데 중요한 역할을 합니다.

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