Find 3463 researchers working at North China Electric Power University | Beijing, China | NCEPU Solar; Power Generation; Power Systems Analysis; Institute of Energy Power Innovation
Guanglin Sha''s 29 research works with 113 citations and 1,088 reads, including: Stochastic planning of integrated energy system based on correlation scenario generation method via
Data. In this study, we focus on the prediction and analysis of Xinjiang''s monthly electric energy production. We collected the data of Xinjiang''s monthly electric energy production from January
China Electric Power Research Institute (CEPRI), established in 1951, is a multi-disciplinary and comprehensive research institution in China''s electric power sector as well as a subsidiary
A multi-heterogeneous energy generation power system (MHEGPS) including wind power, solar power, hydro power, gas power, storage and so on, is an effective way to cope with the
Yongning Chi''s 89 research works with 919 citations and 4,525 reads, including: Research on fast frequency response to AC grid of a battery‐free MVDC system incorporating a high proportion
Zhiyong Gan''s 16 research works with 14 citations and 305 reads, including: Study on the performance of solar coupled heat pump cogeneration zero carbon energy system for villa
Find 239 researchers and browse 1 departments, publications, full-texts, contact details and general information related to Electric Power Research Institute | Palo Alto, United
A gradual configuration research on energy storage system (ESS) is proposed and applied for photovoltaic (PV) plant in this paper. First, the ESS is used to absorb the unbalanced energy between
Jianbo Guo''s 37 research works with 233 citations and 3,572 reads, including: Minimum Primary Reserve Calculation for Renewable Energy Generation with Additional Frequency Droop
1China Electric Power Research Institute, Beijing, solar energy, tidal energy, geothermal power generation proportion should be greatly increased. a variety of new forms of power
Fig. 6. Annual power generation and potential installed capacity of concentrated solar power (CSP) plants with four different technologies by province in China: (A) Parabolic trough collector (PTC), (B) linear Fresnel collector (LFC), (C) central receiver system (CRS), and (D) parabolic dish system (PDS).
Solar radiation received on the surface in China was estimated to be up to 5.28 × 10 16 MJ . However, not all solar resources can be used for power generation, depending on the specific land-use type and other geographic constraints, e.g., nearby available water resources and slope.
The results show that China is rich in solar resources and has excellent CSP development potential. Approximately 11% of China’s land is suitable for the construction of CSP stations, of which more than 99% is concentrated in five provinces in the northwest region (i.e., Xinjiang, Tibet, Inner Mongolia, Qinghai, and Ningxia).
Over 99% of China's technical potential is concentrated in five western provinces. Concentrated solar power (CSP) technology can not only match peak demand in power systems but also play an important role in the carbon neutrality pathway worldwide. Actions in China is decisive.
As shown in Fig. 3, the best solar energy resources in China are mainly concentrated in the western regions of Inner Mongolia, Tibet, Qinghai, Xinjiang, Gansu, Yunnan, and Sichuan. The annual mean DNI of these areas is between 1700 and 3100 kWh/m 2, which satisfies the standard for establishing CSP stations per Section 2.1. Fig. 3.
The current installed capacity of CSP of 420 MW is much lower than China's total potential installed capacity (2.45 × 10 7 –5.40 × 10 7 MW) estimated in this study. The power generation potential is expected to be 6.46 × 10 13 –1.85 × 10 14 kWh, which is 8.91–25.52 times the national power consumption in 2019.
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