scholarly journals Prospects for the development of computer-aided design of data processing centers based on the use of building information modeling technologies

Author(s):  
Angelina Rybakova

A data center is a specialized building or room where a company, organization, or government Agency places information and network equipment and then connects to the network. Data centers solve the owner's strategic information and communication tasks. The constant increase in operating costs of data processing cents is driving innovation to improve their efficiency. Today, one of the newest ways to improve the design and functionality of data centers is to integrate building information modeling. Analysis of simulation results and calculated values with existing performance indicators of the data center will help you quickly identify the places of failures or disruptions, as well as form an algorithm for the procedure of intervention in the operation in order to improve efficiency and smooth operation. Integrating the capabilities of information modeling technologies in the design process increases the efficiency of both the overall design of the object and special design indicators for data processing centers. This article describes the basics of integrating information modeling of buildings and data processing centers, the advantages of information modeling approaches, the role of information modeling technologies in the development and improvement of methods for designing data processing centers, as well as ways to implement the information model of the data center. The author proves and explains the necessity of developing an information model of the data center, as well as offers possible implementation tools. In addition to the advantages of the model at the design stage, the author also highlights the possibilities of using data at the subsequent stages of installation and operation.

2021 ◽  
Vol 13 (0) ◽  
pp. 1-4
Author(s):  
Viačeslav Zigmund ◽  
Jurgita Antuchevičienė ◽  
Darius Migilinskas

The article analyses implementation of BIM-M (Building Information Modeling for Masonry) into the BIM (Building Information Modeling) project to ensure the preparation of the masonry project. The BIM-M model consists of a masonry database, a masonry unit model, a masonry unit database model, and masonry unit model definition and BIM masonry wall definition model. The case study proposes a BIM-M model for cavity wall, masonry structures involving project stakeholders and ensuring the exchange of information at the design stage CAD (Computer Aided Design) with the ability to transfer information to other life cycles CAM (Computer Aided Manufacturing) and CAE (Computer Aided Engineering).


2017 ◽  
Vol 4 (20) ◽  
pp. 375-389
Author(s):  
Elżbieta Pilecka ◽  
Dariusz Szwarkowski

BIM -Building Information Modeling is the fastest growing branch of modern design and execution of buildings. In the United States there is a requirement for the design of public investment based on BIM technology. Similar legislation has been in force since 2016 in the United Kingdom. In the near future also in Poland, it becomes necessary the use of BIM technology in the implementation of investments co-financed from European Union funds. The most important part in the design of a new approach is the treatment of structural parts of geometric models, as information which can be changed as desired at any stage of design. A comprehensive approach to design using BIM technology allows to carry out a series of analysis and collision detection at the design stage, in order to reduce costs at the stage of execution of the investment. The paper presents the design of the structural part of a reinforced concrete building, multi-storey in BIM technology. It uses an innovative design approach, enabling the analysis of the object using CAD (Computer Aided Design), which previously was based BIM method and a new approach based on the method of CAE (Computer Aided Engineering), which permit the object generated in BIM, static-strenght analysis. The article presents opportunities and benefits of BIM methods, using innovative design CAE/CAD.


2020 ◽  
Vol 10 (24) ◽  
pp. 9029
Author(s):  
Bokyeong Lee ◽  
Hyeonggil Choi ◽  
Byongwang Min ◽  
Dong-Eun Lee

In this study, by applying the developed formwork automation design software to three target structures, we reviewed the applicability of the formwork automation design software for the aluminum formwork. To apply the formwork automation design software, we built an aluminum formwork library based on the conversion of two-dimensional (2D) computer-aided design (CAD) data to three-dimensional building information modeling data for all the components of the aluminum formwork. The results of the automated formwork layout on the target structures using the formwork automation design software confirmed that the wall and deck members were laid out by the set algorithm according to the formwork size and direction. However, because of the limited functionality of the software, the level of completion of the formwork layout was found to be lower than that of the manual formwork layout based on 2D CAD data. The currently developed software is based on a simple algorithm, but has a drawback in that the automated layout is limited to only some of its members. Therefore, additional research should be conducted on the development of advanced software through the diversification of the algorithm, automation of preprocessing of the mesh, and analysis of the relationships of all the members comprising the formwork.


Author(s):  
Jayron Alves Ribeiro Junior ◽  
Thainá Maria da Costa Oliveira ◽  
Moisés de Araujo Santos Jacinto ◽  
Bruna da Costa Silva ◽  
Mariana de Sousa Prazeres ◽  
...  

2018 ◽  
Vol 144 ◽  
pp. 04014 ◽  
Author(s):  
Elena Ignatova

The task of improving the buildings energy efficiency is one of the most important tasks in the design of buildings. The buildings energy efficiency can be improved by rational choice of building structures and reduction of the heat transfer. Significant heat transfer of a building occurs through the windows. At the design stage of a building, it is necessary to estimate the magnitude of a heat transfer of different windows. Currently the designers are increasingly using the technology of building information modeling (BIM). 3D-model of the building consists of models of structural elements, which contain information about the different geometric, physical, technological and other characteristics of the structure. The aim of this work is to develop a parametric information model of the window taking into account its heat transfer resistance. In this paper the design of window units with one, two and three sashes are discussed. The value of window-reduced resistance to a heat transfer is calculated inside the window information model and is presented in the table. The method can be applied to different window design. Thermophysical parameter of the window information model can be used to assess the energy costs of operating the building.


Author(s):  
David Valverde Cantero ◽  
Antonio Garrido Martínez

<p>La forma en que se generaba documentación gráfica para la construcción de edificios no volvió a ser la misma desde la introducción del CAD -<em>Computer Aided Design </em>/Diseño Asistido por Ordenador hace más de tres décadas. Ahora, con la inminente/inexcusable implementación del BIM -<em>Building Information Modeling </em>/ Modelado de Información de la Construcción-, el cambio resulta más radical si cabe.</p><p>Ya no solo cambiara la forma en que generamos esa documentación, también afectara a la forma en que diseñamos, construimos y usamos los edificios. No es solo una nueva herramienta, es una nueva forma de trabajar y, por lo tanto, demanda adecuar nuestras metodologías tanto profesionales como docentes. Pero que haya que adaptarse, con el ingente esfuerzo que conlleva, no significa que estas nuevas herramientas/metodologías sean perfectas.</p><p>Abordar esta adaptación minimizando dichos esfuerzos desde un punto de vista profesional, como redactores y directores de proyectos técnicos de edificación, y como docentes es el principal objetivo de esta comunicación.</p><p>La tecnología BIM está aún lejos de una adopción generalizada en nuestro campo profesional en el que aparecen muchas reticencias y, en muchos casos, representa un enorme esfuerzo con inciertos/ínfimos beneficios reales. En el campo docente el panorama es más esperanzador, la integración del BIM en todos los niveles educativos empieza a ser una realidad palpable que evoluciona y se perfecciona a la par que las herramientas.</p>


Spatium ◽  
2014 ◽  
pp. 34-38
Author(s):  
Igor Svetel ◽  
Marko Jaric ◽  
Nikola Budimir

The building information modeling - BIM is a technology developed toward creation of computer based information model that encompasses whole building lifecycle. Toward that goal a number of information technology standards have been developed that enable different professions in AEC to cooperatively develop electronic building model. The paper gives overview of essential technologies, discusses their intended purpose, and gives outline of the currently achieved functionality.


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