Dynamic storm surge and wave coupling simulation method in two-dimensional water tank and device thereof

A simulation method and dynamic coupling technology, applied in fluid dynamics tests, measuring devices, instruments, etc., can solve problems such as increased project cost, hidden safety hazards, time-consuming and labor-intensive problems, shorten wave action time, eliminate hidden safety hazards, and test reasonable effect

Inactive Publication Date: 2018-11-02
NANJING HYDRAULIC RES INST
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AI Technical Summary

Problems solved by technology

[0002] At present, the traditional simulation method for the combination of waves and water levels in the laboratory is to superimpose waves with a fixed water level. Generally, four water levels, namely extreme high water level, design high water level, design low water level, and extreme low water level, are used for simulation, which is consistent with the actual continuous water level change process. The difference is large, and the real hydrodynamic conditions and wave conditions cannot be accurately simulated
[0003] The main problems of the fixed water level superimposed wave simulation method are: 1. The water level generally selects four water levels: extreme high water level, design high water level, design low water level, and extreme low water level, which often cannot include the most unfavorable water level for the actual project, and there are potential safety hazards ; 2. Experienced scientific researchers often use part of the encrypted water level to supplement part of the fixed water level for testing, but it is also impossible to guarantee that the water level that is most unfavorable to the actual project will be included, and it is time-consuming and laborious; The storm surge process is often short, and the fixed water level test method is conservative when used for high water levels, which increases the project cost
4. The water level simulation process does not match the reality, and it is difficult to reflect the real damage process of the seawall under the action of storm surge
[0005] Existing problems: The storm surge water level process line used in the test is stepped rather than continuous, and the water level changes every 1.5 or 3 hours, with a change of 0.1m each time, which is different from the actual process of storm surges and waves on seawalls. Significantly different
[0006] In the existing test methods, whether the traditional fixed water level or the stepped water level is used, it is different from the continuous water level change process of the actual storm surge, and cannot accurately simulate the action process of storm surge and waves on coastal buildings. There are limitations in the rationality and applicability of the test results

Method used

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  • Dynamic storm surge and wave coupling simulation method in two-dimensional water tank and device thereof
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  • Dynamic storm surge and wave coupling simulation method in two-dimensional water tank and device thereof

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Embodiment 1

[0040]Embodiment 1: A dynamic coupling simulation method of storm surge and waves in a two-dimensional tank. In this embodiment, the seawall project of Meishan International Water Sports Center in Ningbo Beilun is taken as an example to simulate the water level, wave height and periodic changes in the project area during typhoon 9711. The range selected by the black frame is the simulation time period selected in this embodiment.

[0041] When simulating the wave process, the storm tide level and wave process are discretized. Each time interval △t is divided into 20 minutes, and the corresponding wave elements are calibrated at the water level corresponding to each time interval △t, and the calibrated wave-making files are seamlessly spliced ​​to obtain the approximate Wave-making files that vary continuously with water level over 540 minutes.

[0042] The implementation of the present invention needs to be carried out in the long wave water tank of the Tiexinqiao test base o...

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Abstract

The invention relates to a dynamic storm surge and wave coupling simulation method in a two-dimensional water tank and a device thereof. Relevant data of a project area or a mathematical model is collected to calculate to obtain a storm surge level and wave duration curve for simulating the project area; the simulated storm surge continuous water level change process is inputted into a computer, and water level reading at a second water level measuring instrument is obtained in real time and compared with a given target value; the water level change coincidence degree and synchronization at the first and second water level measuring instruments are monitored; the simulation result and the inputted change process are compared and analyzed to obtain deviation, and simulation accuracy is determined; the storm surge and the wave process are discretized; the real-time acquisition result of a wave height meter is compared with a target value; uninterrupted wave making is carried out to realize synchronous change of the surge level and the wave, and storm surge and wave coupling simulation in a laboratory is realized; real-time correction is carried out. The method is advantaged in that the simulation process is more consistent with the actual condition, the test result tends to be safe, and the test result tends o be reasonable.

Description

technical field [0001] The invention is a laboratory hydrodynamic simulation technology, which belongs to the field of fluid dynamics test. The invention relates to a dynamic coupling simulation method of storm surge and wave in a two-dimensional water tank. The invention also relates to the equipment used in the dynamic coupling simulation method of storm surge and wave in the two-dimensional water tank. Background technique [0002] At present, the traditional simulation method for the combination of waves and water levels in the laboratory is to superimpose waves with a fixed water level. Generally, four water levels, namely extreme high water level, design high water level, design low water level, and extreme low water level, are used for simulation, which is consistent with the actual continuous water level change process. The difference is large, and the real hydrodynamic conditions and wave conditions cannot be accurately simulated. [0003] The main problems of the...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01M10/00
Inventor 潘军宁王登婷徐华琚烈红孙天霆刘清君陈茂雯黄哲王树鹏秦兴华陈成其他发明人请求不公开姓名
Owner NANJING HYDRAULIC RES INST
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