Integration of software systems of information modeling of buildings in the field of heating and ventilation

Author(s):  
Viktoria Sergeevna Gnedyh ◽  
Darya Alexandrovna Dyomshina
Author(s):  
E. Yu. Kurilo ◽  
◽  
D. V. Nizhegorodtsev ◽  

There takes place an intensive integration of building information modeling (BIM) in the activities of design and construction companies of the Russian Federation, including the hydraulic engineering segment. Existing software systems for building information modeling are not adapted for the design of marine engineering. This article is devoted to the study of the problem and the development of specialized solutions in this area (new or based on the existing software).The process of creating a hydraulic engineering pilot project, including the necessary libraries of basic elements, is considered. An enlarged plan for the integration of BIM to the marine engineering is proposed.


2021 ◽  
Vol 9 (4) ◽  
pp. 71-75
Author(s):  
Marina Shutova ◽  
Aleksandra Plahutina ◽  
Viktoriya Kuzheleva

Recently, more and more attention has been paid to the potential benefits of BIM in construction. Effective communication between stakeholders at all stages of the building life cycle has become a major challenge in the global industry. The implementation of Building Information Modeling (BIM) has been recognized as a productive approach to solving this problem. A literature review identified key issues related to the use and implementation of BIM. This article presents the design of an industrial building (architectural, structural, organizational and technical solutions) using four software systems, shows the practical experience of optimizing the construction of a workshop based on the data of the information model of the building.


Author(s):  
Q. Z. Yang ◽  
W. F. Lu

Design collaboration is recognized as an effective approach in joint problem solving to achieve success of product development in distributed and heterogeneous environments. Design collaboration involves communication of design information, coordination of design activities, and negotiation of design conflicts between multi-disciplinary teams. To support these critical requirements in collaborative design, methodologies and software systems are needed. This paper shares our experience in the method and software development for a Web-enabled engineering object modeling environment. It presents our methods for interoperable and extensible design information modeling, for intelligent object behaviors embedment in CAD models, and for design information sharing across product lifecycle applications through a common vocabulary. The prototype implementation of the modeling environment provides standardized and localized engineering objects embedded with design semantics and intelligent behaviors for the information needs from multiple engineering software applications. The prototype also provides activity coordination and negotiation facilities through team setting, online visualization, live updating, conflict management, and messaging. Use scenarios are discussed in the paper.


Improving the efficiency of life cycle management of capital construction projects using information modeling technologies is one of the important tasks of the construction industry. The paper presents an analysis of accumulated domestic practices, including the legal and regulatory framework, assessing the effectiveness of managing the implementation of investment construction projects and of complex and serial capital construction projects, as well as the life cycle management of especially dangerous technically complex and unique capital construction projects using information modeling technologies, especially capital construction projects, as well as their supporting and using systems, primarily in the nuclear and transport sectors. A review of modern approaches to assessing the effectiveness of life cycle management systems of complex engineering systems in relation to capital construction projects is carried out. The presented material will make it possible to formulate the basic principles and prospects of applying approaches to assessing the effectiveness of the life cycle management system of a capital construction project using information modeling technologies.


The paper describes the main trends in the development of BIM technologies in the field of restoration and reconstruction of historical and cultural heritage buildings. The practical part of the paper presents the experience in using information modeling technologies when restoring the building, where the VI Congress of the Chinese Communist Party in Moscow took place. The use of laser scanning technologies made it possible to reproduce with high accuracy in the information model the original appearance of the building using Autodesk RevitR software. It is shown, how the use of information modeling technologies affects the duration of restoration process, taking into account the calculation of the structural scheme and bearing structures of the building, ensuring the identity of the decoration and the effective organization of electromechanical installation. Operating in a single BIM information environment makes it possible to continuously obtain reliable information on the project, which provides more effective information interaction and communication of participants compared to using traditional design methods.


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