男女羞羞视频在线观看,国产精品黄色免费,麻豆91在线视频,美女被羞羞免费软件下载,国产的一级片,亚洲熟色妇,天天操夜夜摸,一区二区三区在线电影
Global EditionASIA 中文雙語Fran?ais
Business
Home / Business / Companies

Construction company, Russian partner team up for innovation breakthroughs

By Cheng Yu | China Daily | Updated: 2020-07-24 10:05
Share
Share - WeChat
China Construction First Group Corp and Russian employees perform repairs on the exhibition hall of the conference site of the 6th National Congress of the Communist Party of China held in 1928 in Moscow. [Photo provided to China Daily]

China Construction First Group Corp Ltd, a unit of centrally administered State-owned giant China State Construction Engineering Corp, is enhancing its ties with partners in Russia to ramp up innovation efforts in engineering work, as well as expand its presence in overseas markets.

Having first entered the Russian market in 2005, the unit has played a major role in the construction of several important projects, including a tower of the Federation Tower, a complex of two skyscrapers at the Moscow International Business Center in the nation's capital.

Last month, cooperation was further deepened as an engineering construction document co-authored by the SOE and Moscow State University of Civil Engineering was published in a Russian international academic journal.

The paper's main focus is how building information modeling technology, or BIM, can help in the restoration of Russia's historic buildings.

Andrey Pustovgar, one of the paper's authors and vice-president of Moscow State University of Civil Engineering, said the core of BIM technology is a three-dimensional computer model database, which can be applied to the entire life cycle of engineering construction including mapping, design, construction, operations and maintenance.

The cooperation marks an achievement made during the China-Russia Year of Scientific and Technological Innovation, a platform for the two nations to promote fast-track collaboration in fields including advanced technology and biosecurity.

"BIM technology plays a key role in keeping efficient communication and exchanges between upstream and downstream companies, so as to realize the information management of the entire life cycle of engineering projects," Pustovgar said.

He added that it was not until a few years ago that BIM technology was first widely used in Russia and the number of applications in historic construction restoration was rare.

The unit in 2016 finished renovating the permanent exhibition hall of the conference site of the 6th National Congress of the Communist Party of China (CPC) in Moscow several days ahead of schedule.

The site is important in the course of China's revolution and is a significant symbol of the friendship between the two countries.

"It took us just 293 days to complete the restoration," said Yuan Wencen, who participated both in the paper writing and the restoration project.

During the process, Yuan said BIM technology played an important role in solving a series of problems, especially in the structural repair, decor, mechanical and electrical installations of Russia's historic structures.

Yuan recalled that when the unit received construction permit approval in September 2015, there were fewer than 300 days left before the planned completion time.

"Winter was coming in Russia, and the construction could only get started five months later due to local regional management requirements.

"However, the biggest challenge then was not time. It was more difficult to collect all kinds of construction data accurately from ruins rather than drawings," Yuan added.

To tackle the bottleneck, the unit formed a BIM team and applied the international leading ancient building restoration 3D-scanning technology to solve the problem. As the dome of the building is a classical Russian-style building with a complex structure, the team quickly established a BIM model of the dome structure, handed it over to the builder and made additional detailed plans.

Zhu Rongrong, another paper author who joined the restoration project, said that BIM technology was also used in the construction management process. For instance, the technology was used to generate window statistics and mechanical and electrical pipeline engineering quantity schedules to control construction costs.

"We also leveraged the technology to generate 4D construction simulation animations to improve the communication efficiency of all parties involved in the construction so that the construction speed of the project could be hastened," she said.

Top
BACK TO THE TOP
English
Copyright 1995 - . All rights reserved. The content (including but not limited to text, photo, multimedia information, etc) published in this site belongs to China Daily Information Co (CDIC). Without written authorization from CDIC, such content shall not be republished or used in any form. Note: Browsers with 1024*768 or higher resolution are suggested for this site.
License for publishing multimedia online 0108263

Registration Number: 130349
FOLLOW US
CLOSE
 
主站蜘蛛池模板: 伊金霍洛旗| 普兰店市| 浦北县| 凭祥市| 克东县| 沭阳县| 汉源县| 大理市| 泾阳县| 黔东| 新田县| 扎鲁特旗| 平山县| 夏津县| 庆阳市| 沂南县| 正定县| 东辽县| 清新县| 湖北省| 清远市| 宁阳县| 定结县| 和硕县| 兴安县| 武汉市| 太仆寺旗| 达孜县| 福鼎市| 承德县| 德江县| 赤壁市| 襄垣县| 郑州市| 尉犁县| 鄂伦春自治旗| 甘孜| 新乐市| 蓬莱市| 镇巴县| 裕民县| 离岛区| 高淳县| 恩施市| 古丈县| 巨野县| 教育| 昭通市| 娄底市| 正蓝旗| 昂仁县| 逊克县| 资溪县| 阜新| 大邑县| 孝感市| 沧州市| 九龙坡区| 勃利县| 六枝特区| 太和县| 稷山县| 华容县| 南皮县| 阜城县| 龙江县| 嵊泗县| 云南省| 沙雅县| 乌兰浩特市| 镇赉县| 洪泽县| 拜城县| 蓬莱市| 晋州市| 噶尔县| 五莲县| 江山市| 盐池县| 富蕴县| 平邑县| 岳普湖县|