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Cross three-dimensional lock and water transport interchange

An interchange and cross-shaped technology, applied in ship locks, ship lifting devices, climate change adaptation, etc., can solve the problems of water transport interchanges without water transport intercommunication functions, and achieve the effect of reasonable technical scheme and reasonable structure

Inactive Publication Date: 2016-07-20
江苏省淮安市航道管理处
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0019] Throughout the history of the construction of ship locks and ship lifts in the world, among all kinds of ship locks that have been built in ancient and modern times, there is still no interchangeable ship lock with three-dimensional intersection, and there is no water transport interchange with the function of water transport intercommunication.

Method used

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  • Cross three-dimensional lock and water transport interchange

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0068] Embodiment 1: At the cross intersection of two rivers with a certain water level difference, two single-stage ship locks are arranged in a cross-overlapping manner on the upper and lower floors, and the upper and lower lock heads of the two single-stage ship locks are both set. There are gates, and the upstream and downstream of the cross intersection of the two rivers are respectively connected through the approach channel, so that the top of the lock chamber of the single-stage ship lock located on the lower floor is flush with the top of the chamber of the single-stage ship lock located on the upper floor, forming a lock chamber Relatively deep and the other lock chamber is relatively shallow, composite type, new three-dimensional ship lock with a cross-shaped lock chamber, the water level in the cross-shaped lock chamber is controlled and adjusted through the water delivery corridor system. When the water level in the cross-shaped lock chamber is high (consistent wit...

Embodiment 2

[0070] Embodiment 2: Take the water transportation interchange at the intersection of the Beijing-Hangzhou Grand Canal and the Huaihe River into the sea as an example, as image 3 shown.

[0071] The mileage of the Huaihe River into the sea at the intersection of the Beijing-Hangzhou Canal and the Huaihe River into the sea is 27K+890.

[0072] The waterway of the Huaihe River into the sea is planned to be a Class II waterway. The river bottom elevation of the section where it intersects with the Beijing-Hangzhou Grand Canal is 0.00m, the flood control level above / below the culvert is 13.33m / 12.73m, the minimum navigable water level is 3.00m, and the highest navigable water level is 6.00 meters, the elevation of the embankment top of the north bank is about 16.33 meters to 15.23 meters, and the elevation of the embankment top of the south bank is about 14.70 meters.

[0073] The Beijing-Hangzhou Canal is now a Class II waterway. The river bottom elevation of the section where ...

Embodiment 3

[0083] Embodiment 3: Take the water transportation interchange at the intersection of the Tongyu Canal and the Huaihe River into the sea as an example, as Figure 4 shown.

[0084] The mileage of the sea-entry channel at the intersection of the Tongyu Canal and the Huaihe River is 111K+057.

[0085] The waterway of the Huaihe River into the sea is planned to be a Class II waterway, and the river bottom elevation of the section where it intersects with the Tongyu Canal is -3.5 meters to -4.5 meters to -3.0 meters (the river bottom of the approach channel downstream of the ship lock -4.5 meters to the approach channel river upstream of the ship lock bottom -4.0m~-3.0m), the flood control level above / below the culvert is 8.76m / 8.16m, the lowest navigable water level is 1.00m, and the highest navigable water level is 4.00m. The elevation of the embankment crest of the approach channel upstream of the lock is 11.20 meters, and the embankment elevation of the approach channel downs...

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Abstract

The invention discloses a cross three-dimensional lock and water transport interchange. Two single-stage locks are arranged on the cross intersection position of two rivers with a certain water level difference in a manner of upper and lower layer cross crossing and overlapping, and upper lock heads and lower lock heads of the two single-stage locks are each provided with a lock gate; upstream positions and downstream positions of the two rivers on the cross intersection position of the two rivers are connected through an approach channel, and a lock chamber top of the single-stage lock on the lower layer is aligned with a lock chamber top of the single-stage lock on the upper layer, so that a composite novel three-dimensional lock with cross lock chambers is formed, wherein according to the composite novel three-dimensional lock, one lock chamber is relatively deep, and the other lock chamber is relatively shallow; the water level of the cross lock chambers is controlled and adjusted to ascend or descend through a conveyance culvert system, so that the course of a ship can be turned through double propellers of the ship in the cross lock chambers under the guidance of a traffic signal lamp at the high water level; and the aim that the ship in the rivers with the low water level or high water level can be turned to the rivers with the high water level or low water level, and safe interflowing of ships in all directions can be achieved.

Description

technical field [0001] The invention belongs to the technical field of water transportation infrastructure construction, and specifically relates to a cross-shaped or T-shaped three-dimensional ship lock with water transportation intercommunication function arranged at the confluence of two rivers with a certain water level difference. Background technique [0002] 1. Ship lock technology and ship lift technology [0003] China is the first country to build ship locks. In the 33rd year of Qin Shihuang (214 BC), Lingqu was dug and Doumen, also known as Doumen, is now called gate to adjust the water level difference before and after the Doumen, so that ships can pass through the channel with water level difference. This steep door forms a single-door ship lock, referred to as a single-door lock, also known as a half-ship lock. During the Song Jingping period of the Southern Dynasties (AD 423-424), two steep gates were built on the river section of Yangzijin (now Yangzi Bridg...

Claims

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Application Information

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IPC IPC(8): E02C1/00
CPCE02C1/00Y02A10/30
Inventor 张玉恒
Owner 江苏省淮安市航道管理处
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