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Flexible energy reduction system

A flexible and combined technology, applied in the field of flexible energy reduction systems, can solve problems such as damage, the impact of rigid structure ecology and natural landscape, loss of protection function, etc., to increase silt, reduce erosion force and destructive, The effect of maintaining stability and security

Active Publication Date: 2021-01-29
彭大雄 +2
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] As far as the existing coastal erosion protection methods are concerned, rigid structures are generally used, such as seawalls, jetty groups, bank revetments, offshore embankment groups, etc., in order to change the characteristics of the coastal wave, tide, and current system, and achieve beach erosion. However, such rigid structures are likely to have negative impacts on ecology and natural scenery, and they are often destroyed by large wind waves and typhoon surges, and lose their original protective functions; therefore, In recent years, industry, government and academia have invested a lot of resources in the development of flexible construction methods, such as artificial submerged reefs, artificial headlands, fishtail breakwaters, artificial beach cultivation, sand-fixed beach construction, etc., hoping to improve rigidity through flexible coastal protection construction methods Disadvantages of construction method

Method used

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Examples

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no. 1 example

[0036] refer to figure 1 , 2 , is a first embodiment of the flexible energy reduction system of the present invention. The flexible energy reduction system includes two energy reduction devices 100 and two sandbag dikes 200. In this first embodiment, the flexible energy reduction system is suitable for Since it is installed on a beach 300, it can be understood that, in other variations of the first embodiment, the number of the energy-reduction device 100 may also be one.

[0037] The energy-reducing devices 100 are arranged at intervals in a transverse direction X, and each energy-reducing device 100 includes a support unit 10 and several energy-reducing units 20 .

[0038] Such as figure 2 , 3As shown, the bracket unit 10 includes two front rod assemblies 11 arranged at intervals in the lateral direction X, and two rear rod assemblies arranged at intervals in the lateral direction X and respectively corresponding to the front rod assemblies 11 Body 12, and two inclined ...

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Abstract

A flexible energy reduction system, comprising at least one energy reduction device, the energy reduction device includes a bracket unit, and at least one energy reduction unit, the bracket unit includes two spaced front bar assemblies, two spaced apart The rear rod assembly, and two inclined rod assemblies respectively connected between the corresponding front and rear rod assemblies and in the shape of low front and high rear, the energy-reduction unit is arranged on the inclined rod along the transverse direction Between the assembly, and including two connecting cross cables connected between the inclined rod assembly along the transverse direction and spaced apart from each other, and several connecting transverse cables arranged between the connecting transverse cables along the transverse direction An energy-absorbing element, each energy-absorbing element has two connecting end portions connected to the connecting transverse cables and spaced apart from each other, a middle beam portion connected between the connecting end portions, and several Describe the energy-reducing whiskers extending outward on the left and right sides of the center beam.

Description

technical field [0001] The invention relates to an energy reduction system, in particular to a flexible energy reduction system capable of preventing coastal erosion. Background technique [0002] As far as the existing coastal erosion protection methods are concerned, rigid structures are generally used, such as seawalls, jetty groups, revetments, offshore embankment groups, etc., in order to change the characteristics of the coastal wave, tide, and current system, and achieve beach erosion. However, such rigid structures are likely to have negative impacts on ecology and natural scenery, and they are often destroyed by large wind waves and typhoon surges, and lose their original protective functions; therefore, In recent years, industry, government and academia have invested a lot of resources in the development of flexible construction methods, such as artificial submerged reefs, artificial headlands, fishtail breakwaters, artificial beach cultivation, sand-fixed beach co...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): E02B3/06
CPCE02B3/06Y02A10/11
Inventor 彭大雄彭光聪彭光谦
Owner 彭大雄