CN203729258U - Wave type wave-absorbing dyke - Google Patents

Wave type wave-absorbing dyke Download PDF

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Publication number
CN203729258U
CN203729258U CN201420063036.XU CN201420063036U CN203729258U CN 203729258 U CN203729258 U CN 203729258U CN 201420063036 U CN201420063036 U CN 201420063036U CN 203729258 U CN203729258 U CN 203729258U
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China
Prior art keywords
wave
wall
arc wall
hoarding
circular arc
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Expired - Fee Related
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CN201420063036.XU
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Chinese (zh)
Inventor
张静
何俊仕
姜国辉
郭安宁
孙俊华
刘兰玉
吴成
刘汝利
高祥
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Shenyang Agricultural University
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Shenyang Agricultural University
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Priority to CN201420063036.XU priority Critical patent/CN203729258U/en
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Publication of CN203729258U publication Critical patent/CN203729258U/en
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Abstract

The utility model relates to a wave type wave-absorbing dyke which comprises a step-shaped dyke base, wave type railing walls and a wave wall. The wave wall is installed at the top end of the step-shaped dyke base, the wave type railing walls are vertically installed on the step surface of the step-shaped dyke base, the horizontal section of every wave type railing wall is in a wave shape, every wave type railing wall is composed of an inlet position arc wall, an end point position arc wall and a middle section arc wall, the central angle of the inlet position arc wall is 60 degrees, the central angle of the middle section arc wall is 120 degrees, and the end point position arc wall is connected with the wave wall. The step type dyke surface has the effect of mask roughing and energy dissipation, part of wave energy can be eliminated, sea spray and vortexes are formed after water flow enters due to the wave type railing walls, waves are broken and hit, and the effect of energy dissipation is achieved. The wave type railing walls are combined with the step type dyke surface, the waves entering the railing walls can be subject to double energy dissipation, climbing of the waves and scouring to the dyke base are reduced, the coast can be prevented from being scoured, and the effect of protecting the coast is achieved well.

Description

Wave wave-absorbing bank
Technical field
The utility model relates to a kind of wave wave-absorbing bank.
Background technology
Wave is one of main dynamics factors causing Coastal erosion.Especially lift in husky and sediment tide transport situation at the broken wave of offshore, major part is etched silt to away from area, bank diffusion And Movement, causes the continuous scour of seashore to retreat, and then harm bunding safety.Therefore, must take engineering measure to be protected bunding.
The key of bunding preventive works is the waves that disappear, and can also stop sediment tide transport simultaneously.Bunding often adopts vertical type wave-absorbing bank, oblique wave formula wave-absorbing bank, floating wave-absorbing bank and adopts heteromorphic block energy dissipating etc. at present, and these dyke forms have reached wave resistance energy dissipating and the requirement of people to view, but hydrophily is poor.
Utility model content
The technical problems to be solved in the utility model is to provide a kind of wave wave-absorbing bank, and the utility model wave-absorbing bank, taking the wave of pouring into riverbank or seashore as energy dissipating object, adopts two-stage energy dissipating, and attenuating shock wave ratio is good.
The technical solution adopted in the utility model is:
Wave wave-absorbing bank, at the bottom of including staged dike, wave hoarding and wave wall.Wave wall is installed on the top at the bottom of staged dike; The quantity of described wave hoarding is at least three groups, wave hoarding is vertically installed on the cascaded surface at the bottom of staged dike, the horizontal section of wave hoarding is waveform, wave hoarding is made up of entrance circular arc wall, destination county circular arc wall and interlude circular arc wall, the central angle of entrance circular arc wall is 60 °, the central angle of interlude circular arc wall is 120 °, and destination county circular arc wall is connected with wave wall.
Distance between adjacent wave hoarding is 1.5 times of radius of interlude circular arc wall.
The thickness of wave hoarding be interlude circular arc wall radius 1/12.
Advantage and effect that the utility model has are:
1, the utility model is wave wave-absorbing bank, at the bottom of including staged dike, wave hoarding and wave wall.Upstream face at the bottom of staged dike is provided with some grades of right angle steps and forms staged dike faces, and wave wall is installed on top at the bottom of staged dike, and wave hoarding is vertically installed on the staged dike face at the bottom of staged dike.Staged dike face plays the effect of mask roughening and energy dissipating, can eliminate a part of wave energy.Wave hoarding structure makes current enter the rear formation spray and vortex, makes wave breaking and shock, reaches energy dissipating effect.Wave hoarding combines with staged dike face, and the wave entering between hoarding is carried out to dual energy dissipating, thus reduce wave climb and to washing away at the bottom of dike.For promoting the degree of viewing and admiring of current, at the bottom of staged dike, can coordinate the construction of civic landscape main road to form People's Bank of China's view pavement, visitor can stop and play on ladder, forms the hydrophilic environment of people's water harmony.This wave wave-absorbing bank both can be applicable to larger seashore, the riverbank that needs protection of wave, also can be applicable to by riverfront, Offshore street, in conjunction with civic landscape, strengthen hydrophily, promote people's water harmony, also can be positioned over city inland river turning, reach the effect of flood control.The utility model can prevent that seashore is by scour, plays the effect of good protection seashore, and ecology is combined with hydraulic engineering, as coast landscape, brings certain economic benefit for coastal cities, has certain promotional value.
2, the horizontal section of the utility model wave hoarding is waveform, and wave hoarding is made up of entrance circular arc wall, destination county circular arc wall and interlude circular arc wall, and entrance circular arc wall central angle is 60 °, and the central angle of interlude circular arc wall is 120 °.Such structure can make current enter more smoothly between hoarding, the wave structure that the makes full use of hoarding energy dissipating of carrying out interacting between water and water, be conducive to simultaneously at the bottom of hoarding and dike be connected firmly stable.
3, the thickness of the utility model wave hoarding be interlude circular arc wall radius 1/12, distance between adjacent wave hoarding is 1.5 times of radius of interlude circular arc wall, this distance makes the mobile connectedness of current between hoarding best, and the mutual collision of current between wave hoarding is simultaneously more abundant, energy dissipating effect is the strongest.
Model testing
Model testing is carried out in Agricultural University Of Shenyang's water conservancy institute hydraulic test chamber.
Test model is made up of three parts: wave wave-absorbing bank, dull and stereotyped common dike face and simple and easy wave simulator.This three part all adopts pmma material to make, and is jointly placed in rectangle organic glass groove.
Wave wave-absorbing bank: four groups of wave hoardings are installed on staged dike face, and the entrance circular arc wall central angle of wave hoarding is 60 °, and the central angle of interlude circular arc wall is 120 °.The radius of entrance circular arc wall, destination county circular arc wall and interlude circular arc wall is 6cm, and the distance between adjacent hoarding is 9cm, and hoarding thickness is 5mm.End face structure at the bottom of dike is that inclination angle is the right-angled triangle of 30 °, good stability.It is highly 40cm.Some ladders are set on the slope at the bottom of dike, and the cross section of every one-level ladder is right-angled triangle, and its shortest right-angle side is 4cm, and the angle corresponding with it is 30 °.In model, wave wall height is 20cm, and width is identical with ladder width; Wave hoarding height is 20cm, and model lateral length is 50cm.
Dull and stereotyped common dike face: lateral length 50cm, 30 °, inclination angle, slope, dike face vertical height is 40cm.
For producing continuously wave, make simple and easy wave simulator by oneself.As shown in Figure 4, simple and easy wave simulator is by disturbance plate 4, cam 6, couple axle and motor 5 four part compositions, general principle is to utilize motor to manufacture the internal disturbance of current as power-equipment, turn round by driven by motor cam, cam drives disturbance plate by couple axle, makes disturbance plate swing, so that forms wave.
Taking bottom land as benchmark, to test with three kinds of different water depths of 15cm, 17cm, 19cm respectively, motor rotation frequency is 90r/min, wave wave-absorbing bank and dull and stereotyped common dike face are carried out to contrast test under identical flow condition.
Wave run-up measures with chaining pin.Wave run-up is used δrepresent, the wave run-up of the common dike face of its middle plateform is used δ prepresent, the wave run-up of wave wave-absorbing bank is used δ b represent, wave run-up is subdued rate (abbreviation attenuating shock wave ratio) and is used k brepresent, attenuating shock wave ratio is defined as k b=( δ p- δ b)/ δ p.
Scheme one: in the time that the depth of water is 15 ㎝, two kinds of form dike face wave run-up measured datas are shown in Fig. 5 (unit: cm).
Scheme two: in the time that the depth of water is 17 ㎝, two kinds of form dike face wave run-up measured datas are shown in Fig. 6 (unit: cm).
Scheme three: in the time that the depth of water is 19 ㎝, two kinds of form dike face wave run-up measured datas are shown in Fig. 7 (unit: ㎝).
Through test data analyzer, wave wave-absorbing bank attenuating shock wave ratio reaches 79% ~ 85%.
As the above analysis, the utility model wave-absorbing bank can significantly reduce wave run-up.
Brief description of the drawings
Fig. 1 is the front view of the utility model wave wave-absorbing bank;
Fig. 2 is the top view of the utility model wave wave-absorbing bank;
Fig. 3 is the lateral view of the utility model wave wave-absorbing bank;
Fig. 4 is simple and easy wave simulator structure chart;
Fig. 5 is the depth of water while being 15 ㎝, two kinds of form dike face wave run-up measured datas;
Fig. 6 is the depth of water while being 17 ㎝, two kinds of form dike face wave run-up measured datas;
Fig. 7 is the depth of water while being 19 ㎝, two kinds of form dike face wave run-up measured datas.
Detailed description of the invention
Below in conjunction with accompanying drawing, the utility model is described in further detail:
As Figure 1-3, the utility model wave wave-absorbing bank includes at the bottom of staged dike 1, wave hoarding 2 and wave wall 3, at the bottom of described staged dike, 1 end face structure is that inclination angle is the right-angled triangle of 30 °, at the bottom of staged dike, 1 upstream face is provided with the right angle step 11 of some grades and forms staged dike face, wave wall 3 is installed at the bottom of staged dike 1 top, the quantity of described wave hoarding 2 is at least three groups, wave hoarding 2 is vertically installed on the step 11 of staged dike face, the horizontal section of wave hoarding 2 is waveform, wave hoarding 2 is by an entrance circular arc wall 21, a destination county circular arc wall 22 forms with several interlude circular arc walls 23, entrance circular arc wall 21, interlude circular arc wall 23 and destination county circular arc wall 22 connect into the shape of wave, the central angle of entrance circular arc wall 21 is 60 °, the central angle of interlude circular arc wall 23 is 120 °, destination county circular arc wall 22 is connected with wave wall 3.
Distance between adjacent wave hoarding 2 is 1.5 times of radius of interlude circular arc wall 23.
The thickness of wave hoarding 2 be interlude circular arc wall 23 radius length 1/12.

Claims (3)

1. wave wave-absorbing bank, at the bottom of it is characterized in that including staged dike, wave hoarding and wave wall, wave wall is installed on the top at the bottom of staged dike; The quantity of described wave hoarding is at least three groups, wave hoarding is vertically installed on the cascaded surface at the bottom of staged dike, the horizontal section of wave hoarding is waveform, wave hoarding is made up of entrance circular arc wall, destination county circular arc wall and interlude circular arc wall, the central angle of entrance circular arc wall is 60 °, the central angle of interlude circular arc wall is 120 °, and destination county circular arc wall is connected with wave wall.
2. wave wave-absorbing bank according to claim 1, is characterized in that distance between adjacent wave hoarding is 1.5 times of radius of interlude circular arc wall.
3. wave wave-absorbing bank according to claim 1, the thickness that it is characterized in that wave hoarding be interlude circular arc wall radius 1/12.
CN201420063036.XU 2014-02-12 2014-02-12 Wave type wave-absorbing dyke Expired - Fee Related CN203729258U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420063036.XU CN203729258U (en) 2014-02-12 2014-02-12 Wave type wave-absorbing dyke

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420063036.XU CN203729258U (en) 2014-02-12 2014-02-12 Wave type wave-absorbing dyke

Publications (1)

Publication Number Publication Date
CN203729258U true CN203729258U (en) 2014-07-23

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Country Status (1)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103774610A (en) * 2014-02-12 2014-05-07 沈阳农业大学 Wave type wave-absorbing dam

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103774610A (en) * 2014-02-12 2014-05-07 沈阳农业大学 Wave type wave-absorbing dam
CN103774610B (en) * 2014-02-12 2016-01-20 沈阳农业大学 Wave wave-absorbing bank

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20140723

Termination date: 20150212

EXPY Termination of patent right or utility model