Design method and design device for long-distance high-altitude water delivery line
A design method and high-altitude technology, which is applied in the design of long-distance high-altitude water transmission lines and design devices for long-distance high-altitude water transmission lines, can solve the problems of low resource utilization and high water transmission costs, and achieve resource utilization High efficiency, low cost of water delivery, good water delivery effect
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Embodiment 1
[0083] see figure 1, this embodiment provides a design method for a long-distance high-altitude water transmission line, the design method is used to design a water transmission line located in a high-altitude area, and can realize long-distance high-pressure water transmission. In this embodiment, the design method of the long-distance high-altitude water transmission line includes the following steps, that is, steps (1)-(7).
[0084] (1) Obtain the geographical environment between the starting point and the end point of the water delivery line, and establish a corresponding water delivery model. In the water transport model, there are watershed information, meteorological information, hydrometric station information, runoff information, flood information, sediment information, ice information and water quality information in a preset area between the start point and the end point. In this embodiment, the river basin information includes reservoir information in a preset are...
Embodiment 2
[0112] see figure 2 , this embodiment provides a design method for a long-distance high-altitude water transmission line, and the method is based on the design method in Embodiment 1, giving an example of a calculation method for the water delivery head. The head data calculated by this calculation method can provide a design basis for the water delivery system. For example, when selecting the number of water pumps and determining the specifications of the water pumps, it can be determined through the head data. At the same time, the construction of other supporting facilities such as pump stations can also be based on the calculation. The results are determined. The calculation method of the water delivery head includes the following steps, that is, step (6.1) to step (6.6).
[0113] (6.1) Calculate the highest net head, average net head, design net head and minimum net head in the water transfer process according to the comparison relationship of a preset water level net h...
Embodiment 3
[0135] This embodiment provides a design method for a long-distance high-altitude water transmission line. The design method is based on Embodiment 1 or Embodiment 2 to design a water transmission line of a water transmission project. Among them, the water transfer project used in this embodiment is divided into two parts, namely, the main line project from the new energy chemical industry base in Inner Mongolia to Tuke Industrial Park and the branch line project from Tuke Industrial Park to Wushenzhao Industrial Park. The project is located in Wushen Banner, Ordos City, Inner Mongolia Autonomous Region. Geographical coordinates: East longitude 108°17′~109°04′, north latitude 37°39′~38°40′. Tuke Industrial Park is about 84km away from the east of Garutu Town (formerly Dabchak Town) where the Banner Government is located. Wushenzhao Industrial Park is located in the northeast of Wushen Banner. Hongqinghe Town, Jinhuoluo Banner, and Xini Town, Hangjin Banner. The starting poi...
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