狠狠五月天 I 伊人色综合网一区二区三区 I 久99久中文字幕在线 I 久久精品国产精品亚洲色婷婷 I 黄色国产免费 I 人与嘼交av免费 I 女邻居3做爰在线观看 I 国产日本一区二区三区 I av成人无码无在线观看 I 日韩激情文学 I 69av在线视频 I 亚洲影音av I 午夜性色福利在线视频福利 I 亚洲制服另类无码专区 I 欧美精品99 I 亚洲一区二区视频 I 亚洲最大的成人网 I 日韩欧美综合视频 I 亚洲欧洲巨乳清纯 I 69久久 I 免费在线看色片 I 成人毛片久久 I 婷婷sese I 亚洲va天堂va国产va久 I 精品一区二区三区久久久 I 精品一区欧美 I 自拍视频亚洲综合在线精品 I 99在线精品观看 I 黄色第一网站 I 亚洲精品国产首次亮相 I 国产精品自产拍在线观看中文 I 国产亚洲精久久久久久蜜臀 I 哪里看毛片 I 在线成人欧美 I 亚洲欧美性受久久久999 I 狠狠操天天干 I 成人黄色在线播放 I 正在播放国产真实露脸高清 I 四季av一区二区 I 国语自产偷拍精品视频偷拍 I 久久av高清无码 I 西西44rtwww国产精品 I 精品一区二区三区在线视频

Measures to deal with the premature failure of anti-corrosion layer of offshore wind power steel structure foundation

2018-08-14 10:22:37 qxp

In recent years, many countries have shifted the focus of wind power development to the sea. The basic form used in offshore wind power in China is divided into two forms from the perspective of materials: steel structure foundation and reinforced concrete foundation, among which steel structure foundation is widely used.

Because the working conditions of the steel structure foundation are relatively harsh and the field maintenance is relatively difficult, the design is generally based on the corrosion protection life of no less than 15 years. A domestic offshore wind farm run far from 15 years' time, but some based coating of steel structure has emerged the phenomenon of widespread damage, seriously affected the safe and stable operation of wind power unit, this paper will detailed analysis for this situation, find out reason and put forward the corresponding solution measures, for subsequent offshore wind project of steel structure anticorrosion accumulate experience.

Wind field situation

The wind field with large damage to the corrosion resistant layer of steel structure foundation belongs to the intertidal zone wind field, and the paint is used to prevent corrosion, the anti-corrosion plan is the comprehensive ISO12944 code for anti-corrosion coating of steel structure, ISO20340:2009And the design of NB/T31006:2011 technical standard for anti-corrosion of steel structure of offshore wind farm, prepared by China energy administration.

The design of anti-corrosion scheme is reasonable. Paint construction is carried out according to the construction process provided by the paint supplier. The key process is recorded accordingly, and the paint dry film thickness meets the design requirements, thus eliminating the design and construction defects of anti-corrosion.

To know details of anticorrosion layer damage, after the ebb tide situation has carried on the field survey on the spot, we found that the steel structure based on the internal coating in good condition, outer area appeared different degree of damage, some areas have suffered from the impact of signs, and the external surface of a large number of Marine organisms (mainly oysters) attached. In FIG. 1, the black objects on the outer surface of the steel structure foundation are the attached Marine organisms, while FIG. 2 shows the damage of Marine organisms to the anti-corrosion layer of the steel structure foundation.

Cause analysis

Based on the investigation on the site, we believe that the external force impact and the attachment of Marine life are the main reasons for the damage of the anti-corrosion layer of offshore wind power steel structure.

1. External force impact

We find that the ship docking device designed with the damaged steel structure foundation is not reasonable. When the ship is berthing, it is affected by the flow of sea water, and the ship is easy to hit the steel structure foundation. In this project, the impact of external force on the paint was not taken into account in the design of anti-corrosion scheme for steel structure foundation. Therefore, many areas suffered from the impact of external force, and the paint layer was broken and detached, thus affecting the service life of anti-corrosion coating.

2.Attachment of Marine life

Due to wind turbines in waters with a lot of oysters (also called the oyster), it has many unique life habits, just born baby oyster, can swim freely in the water, but when they meet the appropriate environment, began to parasitic on rocks or other hard objects in the sea, a lifetime living in fixation type, it is difficult to be cleared, which formed in the steel structure on the basis of the fouling layer.

Are attached to the steel structure on the basis of oysters, although can hinder oxygen molecules on the surface of the carbon steel corrosion surface diffusion, for carbon steel corrosion has certain protective effect, but with the attached the impermeability and the fouling layer of aerobic bacteria in respiration, made of carbon steel surface oxygen environment, conducive to the growth of the sulfate reducing bacteria (SRB), so as to accelerate the anaerobic corrosion of carbon steel.

According to the principle of electrochemical corrosion and the experimental fact, the mechanism of corrosion induced by sulfate reducing bacteria (SRB) is as follows: fe-2e to Fe2 (anode reaction) 2H 2e to H2 (cathode reaction) so42-8h to s2-h2o (SRB cathode depolarization) 2H to H2S (cathode depolarization) Fe2 S2- to FeS (anode depolarization) Fe2 H2S to FeS 2H

The required H from the SRB metabolism reactions of organic acid ionization and the ionization of water, can be seen from the above mechanism in the process of the electrochemical corrosion, sulfide (S2 -), especially the H2S both cathodic depolarization effect, but also has the anode depolarization effect, thus accelerated the corrosion of carbon steel, seriously affected the service life of the offshore wind turbines steel structure foundation.

The measures

In order to ensure the safe and stable operation of the wind turbine, we must take targeted measures to solve the problem after finding out the cause of the corrosion resistant layer damage on the steel structure foundation.

1. Measures for external force impact

(1) optimize the design of the original vessel docking device according to the flow characteristics of the wind field, and add the corresponding protective side at the ship docking place. The protective side can absorb the impact energy when the ship is docked, thus reducing the damage to the steel structure foundation;

(2) considering the impact on the steel structure foundation during ship docking, paint with high impact strength shall be selected at ship docking;

(3) in view of the large amount of floating objects in the sea area where the wind site is located, it is necessary to set up isolation facilities on the periphery of the steel structure foundation to reduce the possibility of contact between floating objects and the steel structure foundation.

2.Measures for the attachment of Marine organisms

Adhesion of Marine organisms, will not only damage based coating of steel structure and accelerate the corrosion of carbon steel, and difficult to solve, because the sea wind power in China started relatively late, the relevant specification and imperfect, considering the offshore oil drilling platform environment compared with offshore wind turbines are similar, in order to better solve the problem, we refer to a large amount of offshore oil drilling platform of Marine biological adhesion prevention measures. At present, the commonly used measures to prevent the attachment of Marine organisms in China's oil drilling platforms are as follows: using Marine dynamic Marine biological devices (MGP), using antifouling paint for Marine biological and electrolytic Marine biological.

(I) Marine power Marine biological device (MGP)

Marine dynamic Marine biological device (MGP) is made of engineering plastics with high elasticity, high durability, excellent uv resistance and fatigue resistance. The main body of the device is wrapped around the vessel framework, which is the place where Marine organisms are easy to attach and grow. By using the buoyancy force of sea water and natural forces such as ocean currents and waves, the device makes vertical, horizontal and rotational motion on the periphery of the pipe framework.

Through this compound movement, the impactor wheels on the device constantly collide and touch the surface of the catheter framework, thus making the sea creatures unable to adhere, and this method can also gradually remove the attached sea creatures. The biggest advantage of this device is that it is simple, effective, pollution-free and low cost, with the natural capacity of seawater as the power and no external force required. The disadvantage is that in the long-term use, such as in the case of strong wind and typhoon weather, under the combined action of waves and ocean currents, the device and the catheter structure parts will have a violent collision, if there is damage, maintenance and replacement will be very difficult.

(2) Antifouling paint antiseptic creatures

Antifouling paint is a kind of special coating applied on the vessel structure. Its main function is to release the poison gradually through the leakage, diffusion or hydrolysis of the paint membrane poisons, so as to prevent Marine organisms from attaching to the steel structure. Although anti-fouling paint has many advantages, such as meeting the environmental performance requirements; The paint film has a certain water permeability, which can guarantee the continuous leakage of toxicity. The paint film has a good impact resistance to sea water, in the long-term immersion in the water does not bubble, does not fall off. The downside of antifouling, however, is that it only prevents Marine life from attaching to the vessel's structural parts for a period of time, typically requiring repainting after three to five years.

(3) Electrolytic sea defence organisms

The electrolysis of Marine organisms is to produce toxic substances through electrolysis, thus forming an environment which is not suitable for Marine organisms to attach and grow. At present, there are two most commonly used methods: electrolyzing seawater to produce hypochlorous acid to kill Marine organisms;

Electrolytic copper and aluminum electrodes use seawater as a conductor to electrolyze metal ions, so that the concentration of metal ions in seawater reaches a certain level, thus killing Marine organisms. The technology has the advantages of safety, reliability, convenience and low operation cost, but it will kill Marine life in the surrounding sea.

Because this summer typhoon wind field is more, under the action of wind, existence of Marine power protection sea creatures based coating of steel structure may be damaged and the wind field surrounding a large number of other culture zones, is not suitable for using the method of electrolytic anti sea creatures, if directly based on besmear brushs antifouling paint on steel structure, due to the service life of antifouling is only 3 years to 5 years, at the scene of the antifouling paint to use fixed number of year when must besmear again, considering the working conditions on site is poor, it is difficult to guarantee the construction quality, thus directly based on the steel structure coating antifouling paint is not an ideal solution.

Against the wind field, our solution is used for making glass fiber reinforced plastic protection tube is used to package based outside the steel structure, and on the outer surface of the glass fiber reinforced plastic protection tube coating low surface energy antifouling paint to prevent adhesion of sea creatures, antifouling paint failure in the future, glass fiber reinforced plastic protection tube can be removed back to factory to besmear brushs antifouling paint, and once again used in steel structure foundation to prevent adhesion of Marine organisms. This scheme avoids the work of anti-fouling paint on site, which can effectively guarantee the construction quality, but the cost will be higher.


Conclusion

Offshore wind have broad prospects for development, but the current steel structure anticorrosion is still faced with many problems, especially the adhesion problem of Marine organisms have been unable to have a very good solution, although in industries such as ships, oil RIGS in China there are a large number of Marine biological adhesion prevention measures, but most of the measures do not meet the use requirements of the offshore wind.

As the offshore wind farms developed in China are close to the offshore wind farms, measures should be taken to avoid damage to the corrosion protection layer of Marine life while protecting the Marine life and the surrounding environment. In order to avoid the premature failure of anti-corrosion layer of offshore wind power steel structure foundation, we must take the influence of various factors into consideration when carrying out anti-corrosion design, and strictly follow the corresponding specifications in the construction process.


主站蜘蛛池模板: 潮喷无码正在播放 | 久久99国产综合精品 | 好吊色国产欧美日韩免费观看 | 1024手机在线看片 | 97超碰在线免费 | 免费亚洲一区二区 | 丰满少妇高潮惨叫久久久一 | 成人无码免费一区二区三区 | 天堂国产一区 | 成人美女黄网站色大色费全看 | 免费在线视频一区二区 | 国产亚洲日韩网曝欧美台湾 | 亚洲熟伦熟女专区hd高清 | 久久精品在| 精品一区二区三区东京热 | 日韩欧美一级在线观看 | 国产av一区二区三区人妻 | 天天草av | 久久九九久久九九 | 色一情一乱一伦一区二区三区 | 91精品国产亚一区二区三区老牛 | 色片在线播放 | 成人黄色网址大全 | 精品毛片在线观看 | 国产污污网站 | 女人被爽到呻吟gif动态图视看 | 97爱爱视频 | 亚av| 人人干人人插 | 天干天干啦夜天干天天爽 | 在线国产精品一区 | 国产尤物精品福利视频 | 久久精品5 | 免费国产污网站在线观看 | 亚洲日韩视频免费观看 | 人妻中文无码久热丝袜 | 美女夜夜爽 | 亚洲图片欧美激情一区 | 97国产精品久久久 | 欧美人与性禽动交情品 | 国产真实乱人偷精品视频 | 国产精品亚洲а∨无码播放不卡 | 免费黄色小视频 | 天天看天天做 | www.色999| 欧美人妻久久精品 | 亚洲性无码一区二区三区 | 香港三级大乳播放三级 | 艹逼欧美| 日日操夜夜操视频 | 中国美女牲交视频 | 超碰97成人 | 日韩精品久久无码中文字幕 | 在线欧美视频 | 亚洲va综合va国产产va中 | 欧美日韩国 | 国产怡春院无码一区二区 | 中文在线亚洲 | 中文字幕无线码一区2020青青 | 在线免费看毛片 | 日韩激情网址 | 国产肉丝袜在线观看 | 国产精品女教师av久久 | 久久久久久久久久久久国产精品 | 国产无遮挡色视频免费观看性色 | 一本久道综合在线中文无码 | 日本黄色站 | 三年中国国语在线播放免费 | 一级a爰片久久毛片 | 天天插天天搞 | 91视频免费 | 手机在线欧美 | 日日干日日操 | 婷婷丁香激情小说 | 韩国黄色三级 | 97伊人久久 | 正在播放白浆 | 在线看www| 日韩一级片在线看 | 91蜜臀福利色婷婷 | 亚洲国产精品热久久 | 国产精品一区二区av不卡 | 小明成人免费视频 | 久久15p| 日韩人妻无码一区二区三区俄罗斯 | 日本老肥婆bbbwbbbwzr | 女人天堂影院 | 乱xxxxx普通话对白 | 韩日高清 | 国产jjizz女人多水喷水 | 久久不射网 | 国产精品久久久久久欧美2021 | 久久国产精品影院 | 色帽子影院 | 欧美精品videos另类日本 | 日本50岁丰满熟妇xxxx | 色综合色国产热无码一 | 激情欧美综合 | 97在线观看永久免费视频 |