scholarly journals Improving The Cost Performance of Mechanical Electrical And Plumbing (MEP) Works Buildings In Hotel Based on Building Information Modeling (BIM) 5D

2020 ◽  
Vol 3 (2) ◽  
pp. 228
Author(s):  
Albert Eddy Husin ◽  
Syamsir Abe Sihombing ◽  
Bernadette Detty Kussumardianadewi ◽  
Diah Ika Rahmawati
2019 ◽  
Vol 2019 ◽  
pp. 1-9 ◽  
Author(s):  
Phuong Nguyen ◽  
Reza Akhavian

In the recent years, owners and construction management companies have shown an increasingly more interest in adopting approaches that result in enhanced quality and less risks, conflicts, and wastes on their projects despite potentially higher initial cost. Implementing advanced technology trends and incorporating more integrated methods of delivering projects have proven to be highly value-adding and forward-thinking approaches. The objective of this research was to evaluate the effectiveness of and the synergy between three of such trending concepts in the construction industry, namely, integrated project delivery (IPD), lean principles, and building information modeling (BIM) in terms of cost and schedule performance measures. Data analysis was conducted on 72 vertical projects through interviews and study of the published articles, reports, and case studies. Qualitative analysis was performed through grounded theory while quantitative analysis was implemented using univariate and multivariate analysis of variance tests on schedule performance and cost performance. Results of the grounded theory analysis summarize six crucial characteristics required for an effective coordination between IPD, lean construction, and BIM. Statistical analysis on different combination of these three components revealed considerable effectiveness in terms of schedule performance while the effect on cost performance was not as much significant. This study contributes to the body of knowledge and practice in the field of construction by demonstrating the cost and schedule benefits realized through the use of IPD, lean construction, and BIM and identifying their collective conceptual advantages.


2013 ◽  
Vol 291-294 ◽  
pp. 2822-2825 ◽  
Author(s):  
Gwang Hee Kim ◽  
Hyun Young Park ◽  
Jae Min Shin

The completion of the design drawing has not been credited in the construction market in Korea, and the modeling information of the design phase cannot be effectively used in an estimation process. Therefore, the objective of this study is to assess the cost estimating accuracy of a BIM tool in the design process to verify its applicability. Modeling was done for a building in an actual project to evaluate the applicability, from which the causes of errors of quantity take-off were derived.


Author(s):  
D. Del Pozzo ◽  
B. Scala ◽  
A. Adami

Abstract. The archaeological site is a mine of data and information that helps to deepen the knowledge of its origin, history, and structure. This virtuous approach becomes even more effective when these data, properly processed and structured, form the basis for a project of conservation and enhancement of the cultural asset.The Roman mosaics dug in Castiglione delle Stiviere in 1995 represent an interesting case in which all the archaeological information, made available by the Superintendence, was used through an HBIM (Historical Building Information Modeling) approach for the conservation project. The Stratigraphic Units (US) of the findings have identified the strategy for the geometric and informative modeling of the BIM (Building Information Modeling) model and have also been exploited in the design phase for the project of the new roof structure and especially for the cost analysis. The structuring of the data by stratigraphic units was also used in the drafting of the preventive and planned conservation, necessary to enhance and prolong the state of good health of the property.This work has been developed in the internship activity within a training course on HBIM, in collaboration with the Diocese of Mantua, owner of the property.


2020 ◽  
Vol 6 (3) ◽  
pp. 873-883
Author(s):  
Shahid Iqbal ◽  
Muhammad Saad ◽  
Masab -Bin -Shahid ◽  
Wajeeha Batool

Building Information Modeling (BIM) is gaining attention worldwide due to its assistances during the entire building’s construction life cycle covering all phases of project from commencement to accomplishment. BIM integrates different disciplines by effective communication, analyzes the project systems for constructability, estimates the cost and time of projects at any time using quantity takeoffs. Notwithstanding that fact Pakistan like other developing countries is lagging in Building Information Modeling (BIM) adoption. To facilitate the adoption of Building Information Modeling (BIM) in the AEC industry, the purpose of this research study is to identify the important factors for BIM adoption among construction engineers of Pakistan to carry out the awareness. It is found statistically that Building Information Modeling (BIM) capability is most important factors for the adoption of BIM among the construction engineers in Pakistan having the factors of motivation and management support which positively effect on BIM adoption in Pakistan. The trainings are very important to increase the BIM adoption in the industry.


Building information modeling (BIM) adoption is an emerging trend in Malaysian construction industry. BIM is expected to bring better project performance and address the various construction dilemmas stemmed from construction disputes. Construction disputes has been associated with high transaction costs, which subsequently increase overall project costs. Hence, BIM has been adopted in project procurement to address construction disputes for better project performance. Studying the transaction costs in BIM adoption procurement is deemed beneficial particularly when the ambiguity of a project performance is high. This is especially true when the number of projects adopting BIM is still comparatively small to ascertain the benefits of BIM. Transaction cost economics (TCE) is a theory and methodology for relatively evaluating the cost-effectiveness of institutional arrangements in managing transaction, and therefore, studying TCE in BIM adoption procurement can be beneficial. Such an effort can improve the understanding of the benefits of the transactions made. Previous research has managed to conclude that the traditional procurement resulted in higher transaction costs compared to the design-and-build procurement. Hence, this study attempts to identify the transaction costs in BIM adoption procurement. A systematic literature review was performed to investigate the TCE in procurement to profile the transaction costs and its components in BIM adoption procurement. The outcome of the systematic structured literature is a conceptual framework combining the “RIBA Plan of Work with BIM Overlay” developed by RICS with a refined transaction cost components categorisation. The framework is further classified into pre-contract and post-contract transaction cost components specifying the fixed and variable components, and either visible or hidden. It is believed that the unbundling of the components of transaction cost in BIM adoption procurement could provide a solid foundation in developing a guideline for industry players to better understand, apply, and manage BIM adoption procurement


2016 ◽  
Vol 43 (10) ◽  
pp. 886-896 ◽  
Author(s):  
Abraham Bae ◽  
David Lee ◽  
ByoungYck Park

An approach to a practice paving technique using building information modeling (BIM) was developed. When planning hot mix asphalt (HMA) overlay on a concrete slab, in-advance paving simulations can help to preemptively evaluate pavement quality, such as HMA thickness, and prevent excessive HMA quantity. The BIM technique has the capabilities of ‘in-advance simulation’, ‘3-D visualization’, ‘interference identification’, and ‘quantification’. Building information modeling could be successfully implemented to optimize milling quantity and improve HMA pavement quality in an actual paving project. Based on the established BIM model, alternative paving levels were derived and paving sequences were simulated. Through 3-D visualized images, locations where HMA thickness was inadequate could be effectively identified. Quantified information for simulation results enabled optimization of milling and paving options. Milling was selectively conducted for the identified undulations. The cost was reduced by approximately 12%. Paving thickness and density had coefficients of variation (CV) of approximately 15% and 0.2%, respectively.


2018 ◽  
Vol 11 (2) ◽  
pp. 33-41
Author(s):  
Abbas M. Abd ◽  
Dunya S. Jarullah

Lightweight foamed concrete brick is new construction materials. It gives a prospective solution to building construction industry, this research aims to study the cost, dead loads, environmental issues and energy consumption from using lightweight foam concrete bricks as construction materials by utilizing building information modeling technique. The results obtained from this modelling proved that the cost of brick work using lightweight foamed concrete units of grade A (2000 kg/m3) and B (1800 kg/m3 ) is higher by (19.4% and 11.9%) respectively than the activity cost using traditional fired clay bricks. For grade C (1600 kg/m3) that cost was very close to fired clay bricks (+2.9%). while the construction of brick work using light weight foamed concrete units of grade D (1400 kg/m3) and E (1200 kg/m3) was lower by (8% and 18.6%) than fired clay bricks. Besides that, the dead load generated by building units was decreased by (7.7-38.5%) for grade (B, C, D, E) than the load of fired clay bricks, while the load generated from used lightweight foam concrete bricks grade is very closed to fired clay bricks (+2.5%). There was a reduction in energy consumption by the rate of (4.1-62.2%) for heating and (9.8-73.4%) for cooling as wall sharing in energy consumption. Environmental analysis showed sustainable potential so that the production of lightweight foamed concrete units reduces CO2 emission by (46.5-67.9%) compared with the fired clay bricks. Finally; it can be concluded that building units produced in this research with LWFC, characterized with properties can efficiently compete the fired clay bricks.


2019 ◽  
Vol 2 (2) ◽  
pp. 23-48
Author(s):  
Abdulaziz .. ◽  
◽  
◽  
◽  
Obaid .. ◽  
...  

The building sector influences the Gross Domestic Product (GDP) of many countries. There is a vast amount of waste generated in the building process, with many projects suffering from delivery delays, running over budget, and resulting in buildings of minimal quality. Building Information Modeling (BIM) has shown great potential towards solving these problems. BIM sets frameworks for Architects, Engineers, and Contractors (AEC), enhancing management of the building process. This paper analyzes select framework methods, tools, and processes, identifying key guidelines required to create a BIM framework customized to local requirements; this will have a positive effect on the construction industry by lowering the cost of buildings and improving the communication among parties, and leading to the development of frameworks based on local indicators. A comprehensive literature review was conducted to determine components and factors from structure frameworks with the main findings then classified and categorized into the following sectors -- government support, maturity level measurement, standards, protocol, database, and education plan. This permits the development of a comparison highlighting the frameworks’ differences and summing up possible strategies for BIM implementation on several bases, such as region differentiation and the local industries’ Political, Economic, Socio-Cultural, Technological (PEST) aspects, allowing for greater understanding of BIM implementation on various scales. The selection of the BIM frameworks was dependent on specific criteria with a minimum score of 4 out of 5 required to merit inclusion. Three strategies for the creation of a BIM framework were discovered and were seen to vary across regions. The discovery of these strategies lays the groundwork for future research into the development of these frameworks to determine the potential advantages and downsides of each.


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