Right-side and left-side driving hybrid arrangement trunk twisted road network system

A left-handed, twist-shaped technology, applied in the field of the trunk twist-shaped road network system with mixed right-hand and left-hand driving, can solve problems such as the inability of overpasses to relieve traffic congestion, the low traffic rate at traffic light intersections, and the increase of the average road area for vehicles. , to solve the problem of urban traffic congestion, reduce the cost of demolition and relocation, and increase the urban road area per vehicle

Active Publication Date: 2020-12-22
解宇星
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In addition, the traffic light intersection rate is low
[0005] 3. Existing urban overpasses have greatly improved the traffic speed and efficiency of vehicles. The construction of overpasses requires a certain amount of space, but there are many buildings in the bustling areas of the city. The closer to the roads and intersections, the taller and denser the buildings , which greatly limits the construction of overpasses, so many intersections in bustling cities cannot use overpasses to alleviate traffic congestion.
In addition, the large overpass bridges that have been built still show congestion, because the overpass bridges have not fundamentally effectively increased the average road area per vehicle

Method used

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  • Right-side and left-side driving hybrid arrangement trunk twisted road network system
  • Right-side and left-side driving hybrid arrangement trunk twisted road network system
  • Right-side and left-side driving hybrid arrangement trunk twisted road network system

Examples

Experimental program
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Effect test

Embodiment 1

[0028] When the total number of layers of the road network system is an even number of layers, please refer to Figure 1 to Figure 4 , the present invention provides a trunk twist-shaped road network system with right-hand and left-hand mixed arrangements, including at least one set of combined functional layers, two or more sets of combined functional layers are superimposed along the vertical space direction, and the combined functional layers include two A group of driving plane functional layers that are distributed in any order along the vertical space direction and are mutually forward and reverse driving directions. The intersection of turning road 2 or right turning road 3 and a straight road without conflict points, and the straight roads of two adjacent intersections 1 in the same driving plane functional layer are in a crossing distribution. The crossing distribution here refers to : the straight roads of two adjacent intersections 1 have an intersection on the dire...

Embodiment 2

[0030] When the total number of layers of the road network system is an odd number of layers, please refer to Figure 1 to Figure 4 , is to add another layer of driving plane functional layer on the basis of embodiment one, this layer of driving plane functional layer can be at the top or bottom of several combined functional layers of embodiment one, and this layer of driving plane functional layer and combined functional layer The driving directions of the adjacent driving plane functional layers within are positive and negative to each other.

[0031] In Embodiment 1 and Embodiment 2, specifically, the two groups of driving plane functional layers with forward and reverse driving directions are respectively the right driving plane functional layer and the left driving plane functional layer. The right-hand driving plane functional layer includes a plurality of intersecting two-way driving lanes-5, and the intersection 1 of the two-way driving lanes-5 is a non-conflict inter...

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PUM

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Abstract

The invention discloses a right-side and left-side driving hybrid arrangement trunk twisted road network system. The system comprises at least one group of combined functional layer; two or more groups of the combined functional layers are stacked along a vertical space direction; each of the combined functional layers comprises two groups of driving plane functional layers which are distributed along the vertical space direction in any sequence and are opposite to each other in forward and reverse driving directions; each of the driving plane functional layers comprises a plurality of crossedtwo-way driving lanes; intersections of the two-way driving lanes are conflict-point-free intersections only including left turning roads or right turning roads and straight roads, and the straight roads of every two adjacent intersections in the same driving plane functional layer are distributed in a crossed mode; and a skip layer lane corresponding to the driving direction is arranged betweenthe same-direction lanes between the correspondingly matched straight roads between every two adjacent driving plane functional layers. According to the right-side and left-side driving hybrid arrangement trunk twisted road network system, vehicles can drive at a high speed in the whole process without waiting for traffic lights, so that the vehicles can go straight at a busy intersection, and candirectly turn left and right without building an overpass.

Description

technical field [0001] The invention relates to a road network system, in particular to a twist-shaped road network system with trunks arranged in a mixed manner for driving on the right and on the left. Background technique [0002] With the development of the automobile industry and the increase of automobile penetration rate, urban road traffic congestion is becoming more and more serious. Even in cities that are not congested, the average speed of driving is also low. After analysis, the main causes of urban traffic congestion are as follows: [0003] 1. In a certain area of ​​the city, the road area ratio is constant, the population and the number of cars in the area are constantly increasing, and the urban road area per vehicle is continuously decreasing. When the number of cars owned exceeds the carrying capacity of the road, the urban road area per vehicle is smaller. The more traffic jams. [0004] 2. In today's cities, traffic lights are an effective way to maint...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): E01C1/00E01C1/04
CPCE01C1/002E01C1/04
Inventor 解宇星
Owner 解宇星
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