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Warm congratulations to Xindafang on being awarded the “Henan Provincial-Level Construction Method” honor!


  Xindafang News: In September, the green construction methodology for hoisting wind turbine units in mountainous areas—officially titled “Green Construction Method for Hoisting Wind Turbine Units on Steep Slopes, Narrow Roads, and in Confined Spots in Mountainous Regions”—developed through collaboration between Xindafang and Tianjin Lanchao Specialized Lifting Engineering Co., Ltd., was awarded the Henan Provincial-Level Construction Method title by the Henan Provincial Construction Industry Association.

  This construction method employs QLY-series wind-turbine-specific cranes, which can self-propel and relocate across steep gradients (30%) and narrow roadways (5 m), rapidly self-dismantle in compact installation areas (30 × 30 m), and perform close-in lifting operations adjacent to the wind tower (12–16 m). The method requires minimal land use and reduces earthwork volumes, thereby minimizing environmental, water-conservation, and vegetation-rehabilitation impacts. By fully leveraging the lifting capacity of the main crane, it achieves green wind power development and green construction practices. Furthermore, this construction process standardizes the assembly of major equipment into modular units, shortening assembly time, enhancing operational efficiency, and reducing labor costs; with no high-altitude work involved, it also offers a high level of safety.

  To date, the company has successfully applied this construction method in numerous projects, including the Fengquan Mountain Wind Farm in Qixian County, Hebi City, Henan Province; the Guiding–Majiang Wind Farm in Guizhou Province; the Guangtoushan Wind Farm in Dawu County, Hubei Province; the Qianpenshan Wind Farm in Changming, Guiyang; and the Shujia Mountain Wind Farm in Dawu County, Hubei Province, yielding significant economic, social, and environmental benefits. The smooth completion of these wind farms further underscores the superiority of this construction method over traditional approaches, with its overall technical performance now reaching internationally advanced levels.

 

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