Source: The Great Wall Network
The construction site of No. 1 Tunnel of Fujian Road from Liangjiawan Village to Bingtangyu Scenic Spot of Funing pumped storage power station. Photo by Guo Nan
Qinhuangdao(The Great Wall Network/reporter Wu Peijian, correspondent Guo Nan)-- On June 11, the construction of Hebei Funing pumped storage power station proceeded in an orderly manner, and the power station access road with a total length of 7.69 kilometers was about to be completed. At present, the tunnels, roads and bridges of Fujian Road from Liangjiawan Village to Bingtangyu Scenic Spot is under construction, and will open to traffic by the end of this year.
Hebei Funing Pumped Storage Power Station project is a key project of the “13th Five-Year Plan” of the National Energy Administration. On November 6, 2012, it was approved by the National Energy Administration as the recommended station of the pumped storage power stations newly built in Hebei Province in 2020.
The construction site of No. 1 Tunnel of Fujian Road from Liangjiawan Village to Bingtangyu Scenic Spot of Funing pumped storage power station. Photo by Guo Nan
The project is located in Daxinzhai Town, Funing District, Qinhuangdao City, which started on January 8, 2019, with a total construction period of 82 months. It is planned to complete the first unit power generation on October 31, 2026. The overall installed capacity is 1200MW, and four single-stage mixed-flow reversible pump turbines with a single-unit capacity of 300MW will be installed to connect a 500kV substation in Luanxian County with the 500kV outlet, for the peak regulation, load shifting and emergency reserve.
The construction of the power station will drive the supporting development of local commerce and tourism, improve the rapid development of the tertiary industry, increase employment, and promote full employment of the labor force. The operation of the power station will save the standard coal consumption of thermal power in the Beijing-Tianjin- Hebei region, effectively reduce the emission of smoke, sulfur dioxide, nitrogen oxides, and carbon dioxide. The energy-saving and emission-reduction benefits will be significant, and the atmospheric environment quality will be improved.
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