Academic literature on the topic 'Project Earthwalk'

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Journal articles on the topic "Project Earthwalk"

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Kim, Jeonghwan, Soomin Lee, Jongwon Seo, Dong-Eun Lee, and Hee Seon Choi. "The Integration of Earthwork Design Review and Planning Using UAV-Based Point Cloud and BIM." Applied Sciences 11, no. 8 (April 12, 2021): 3435. http://dx.doi.org/10.3390/app11083435.

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Earthwork is seemingly guesswork, but it requires a high level of accuracy and precise planning. Differences between earthwork design and finishing levels cause project delays and cost overrun due to the time-consuming nature of earthwork re-work. Therefore, error-free earthwork planning and design review is a key to the success of earthwork projects. This study utilized an integrated approach of an unmanned aerial vehicle (UAV)-based point cloud and BIM (Building Information Modeling) to verify the design and to operate the earthwork planning. The integrated approach was proposed and applied to a 420 square meters housing construction project to review an original earthwork design and create an earthwork plan for excavator work. As a result, errors in earthwork design that caused by inaccurate initial DEM was revealed, thus the earthwork design was revised with a UAV-based point cloud map. Additionally, the integrated approach was able to generate an explicit task sequence for an excavator.
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Deng, Naifu, Xuyang Li, and Yanmin Su. "Optimization of Earthwork Allocation Path as Vehicle Route Problem Based on Genetic Algorithm." E3S Web of Conferences 165 (2020): 04057. http://dx.doi.org/10.1051/e3sconf/202016504057.

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In civil engineering, earthwork, prior to the construction of most engineering projects, is a lengthy and time-consuming work involving iterative processes. The cost of many AEC (Architecture, Engineering and Construction) projects is highly dependent on the efficiency of earthworks (e.g. road, embankment, railway and slope engineering). Therefore, designing proper earthwork planning is of importance. This paper simplifies the earthwork allocation problem to Vehicle Route Problem (VRP) which is commonly discussed in the field of transportation and logistics. An optimization model for the earthwork allocation path based on the modified Genetic Algorithm with a self-adaptive mechanism is developed to work out the global optimal hauling path for earthwork. The research results also instruct the initial topographic shaping of the Winter Olympic Skiing Courses Project. Furthermore, this optimization model is highly compatible with other evolutionary algorithms due to its flexibility, therefore, further improvement in this model is feasible and practical.
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Baek. "An Earthwork Districting Model for Large Construction Projects." Journal of the Korean Society of Civil Engineers 35, no. 3 (2015): 715. http://dx.doi.org/10.12652/ksce.2015.35.3.0715.

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Ashbee, Paul, and Peter Jewell. "The Experimental Earthworks revisited." Antiquity 72, no. 277 (September 1998): 485–504. http://dx.doi.org/10.1017/s0003598x00086920.

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Few archaeological projects set out with the intention of running for decades. The committee of the Experimental Earthwork project, however, developed an elaborate programme from 1960 until well into the 3rd millennium AD, designed to study the long-term processes of earthwork construction and change. Paul Ashbee and the late Peter Jewell present their personal view of the aims, experiences and some results of this project.Sadly Peter Jewell died on 23 May 1998, and this paper is a fitting tribute to his major role in the enterprise.
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Robinson, David Earle. "The experimental earthwork project 1960-92." Journal of Quaternary Science 14, no. 2 (March 1999): 189–90. http://dx.doi.org/10.1002/(sici)1099-1417(199903)14:2<189::aid-jqs382>3.0.co;2-s.

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Wen, Lian Yong, Yong Zhang, and De Xin Nie. "Precise Calculation and Visual Model for Complex Engineering Earthwork." Advanced Materials Research 368-373 (October 2011): 2650–56. http://dx.doi.org/10.4028/www.scientific.net/amr.368-373.2650.

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Earthwork excavation, as the primary work of the project, the calculation method in quantity not only affects the project budget, but also has a significant impact in the overall project design and construction schedule. This paper applies Kriging algorithm, in combination with 3D modeling, to build accurate 3D solid model through close space, and uses graphic element Boolean operations to create accurate calculation method in quantity of Earthwork in complex engineering, which can display the data of quantity of Earthwork respectively as well as the space, achieve visual design of Earthwork to make up for the deficiency of traditional method, provide accurate calculation for organizing excavation engineering and visual decision-making information.
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Gkovedarou, Maria, and Georgios N. Aretoulis. "Neural Networks and Statistical Analysis for Time and Cost Prediction Models of Urban Redevelopment Projects." International Journal of Information Systems and Social Change 8, no. 4 (October 2017): 37–52. http://dx.doi.org/10.4018/ijissc.2017100103.

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Over the last few years, a plethora of public works have taken place, focusing towards urban renewal, in the greater Thessaloniki district. Municipality of Thessaloniki, provided data for twelve public projects of urban renewal. Mathematical models have been proposed for cost and time prediction based on regression analysis. Furthermore, the Fast Artificial Neural Network (FANN Tool) was applied, to predict the duration and the final cost of the project, using volume of earthwork, as input variable. Both approaches could facilitate project stakeholders, to forecast the projects' final delivery date and cost and provide early warnings for any deviation from the initial budget. The results indicate that neural networks perform better than regression analysis' models, in the case of urban renewal projects.
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Paulovičová, Lucia. "Multi-Criteria Optimization and its Application to Earthwork Processes." Advanced Materials Research 1020 (October 2014): 883–87. http://dx.doi.org/10.4028/www.scientific.net/amr.1020.883.

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Selection of equipment for construction projects is a complex process which is a key factor in the success of the project. The purpose of equipment selection is in the most cases to select optimum equipment in terms of optimal criteria which are often in contradiction. This contribution is focused on application of some multi-criteria methods for solving multi-criteria optimization problems in the area of earthwork processes because the choice of these methods is almost difficult. These techniques have been implemented in an earthwork process and selected equipment which are available on the market by company Caterpillar. In this contribution are presented the key mathematical models for these methods, which have been created as a tool for comparison of selected equipment.
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Yongxiao, Wen, Yuan Xitun, Yang Xiongfei, Zhang Hang, and Han Qi. "Research on Earthwork Calculation Based on TIN Model." E3S Web of Conferences 248 (2021): 03001. http://dx.doi.org/10.1051/e3sconf/202124803001.

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In actual engineering construction, the calculation of earthwork directly affects the cost budget of the project and the selection of the optimal plan. Therefore, the calculation accuracy and efficiency of the earthwork are very important. This article introduces the construction principle of the TIN model. Based on the TIN model, the earthwork calculation is carried out by the triangular prism method. The data of a fill-excavation balance project in a rugged mountainous area is selected, and under different conditions, the TIN network method and the square grid method are used to calculate the earthwork, and the results are compared and analyzed with accuracy. Estimate. After comparative analysis, it is found that the earthwork calculation using the TIN network method is simple and cheap, and the calculation result is more accurate. It is better than the traditional square grid method as a whole, and can be used in the actual engineering earthwork calculation.
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Feng, Xiao Gang, Meng Li, and Jing Xiu Liu. "Study on Application of Terrestrial 3D Laser Scanning Technology in the Calculation of the Fine Earthwork." Applied Mechanics and Materials 580-583 (July 2014): 2833–37. http://dx.doi.org/10.4028/www.scientific.net/amm.580-583.2833.

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Supported by terrestrial 3D laser scanning technology, by using the GPS RTK technology as the verification. Explored the application of terrestrial 3D laser scanning technology in the calculation of fine earthwork, including the whole process from program design, pre-organization, field measurements applied to the calculation and submit of indoor operation results. In addition, Lanhaiwan project in xi’an of shannxi province was taken as a case to introduce detailed processes of fine earthwork calculation, The results show that the terrestrial 3D laser scanning technology can be well used for accurate measurement of the earthwork.
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Dissertations / Theses on the topic "Project Earthwalk"

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Kynclová, Veronika. "Výstavba bytových domů Optátova - stavebně technologický projekt." Master's thesis, Vysoké učení technické v Brně. Fakulta stavební, 2014. http://www.nusl.cz/ntk/nusl-226987.

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Diploma work deals Construction of apartment houses Optátova - building technology project. Work includes the technical report, coordination situation, timetable, financial plan, study of realization, drawing of devide construction and his financial and timetable evaluation, next timetable of construction, timetable of main objekct, supplies of building materials, technological specification, inspection and test plan, itemized budget of main object and contract of work. Time methods were compared – gradual, concurrent and current method.
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Kudiovský, Filip. "Novostavba základní školy v Bobrové, stavebně technologický projekt." Master's thesis, Vysoké učení technické v Brně. Fakulta stavební, 2018. http://www.nusl.cz/ntk/nusl-372114.

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The diploma thesis deals with the construction project of the new building of the primary school in Bobrová. The main goal of the thesis is to propose a suitable implementation procedure in relation to the specific place of the site. The thesis deals with the time schedule of the main object, itemized budget, major building machines and mechanisms, project of site equipment, study of the construction realization, material resources plan, technical report, time schedule and financial plan of the main object and also with the situation of the construction. It focuses in detail on the stage of earthworks, including the reinforcement of the walls of the building pit using soil nailing. For this stage a technological regulation and a control and test plan have been developed.
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Lupač, David. "Distribuční sklady v Praze - stavebně technologický projekt." Master's thesis, Vysoké učení technické v Brně. Fakulta stavební, 2017. http://www.nusl.cz/ntk/nusl-265317.

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The subject of this thesis is the construction and technological project for distribution warehouses in Prague. Textual part contains a technical report on construction technology project, wider relations of traffic routes with marked critical points, the study of the main technological stages of the building, principles of organization of construction, design of the main building machines and mechanisms, technological regulations, inspection and test plans, health and safety on the site. In the section with attachments there is a map of the locality, drawings of site facilities, including road signs, charts of the movement of machines, the schedule of the main building structure, the budget of the main building structure, a plan for securing material resources, time and financial plan, an economic evaluation of site facilities, details and other technical documentation stages.
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Šrámek, Jiří. "Stavebně technologický projekt výrobní a administrativní haly ATX." Master's thesis, Vysoké učení technické v Brně. Fakulta stavební, 2019. http://www.nusl.cz/ntk/nusl-392191.

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The subject of this master’s thesis is a solution of chosen parts of building construction project. The project solves industrial hall that contains productions and administrative space. This thesis includes technological regulations for substructure, study of performing the main technological stages, design of using machines, checking and testing plans. Other phrases parts are time schedules, budget, calculations, design of site equipment including engineering report and report for performing access road. Starting materials, which were used for this thesis, were engineering report also including working drawings.
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Hačka, Martin. "Stavebně technologický projekt rekonstrukce operačních sálů KPRCH Fakultní nemocnice Brno." Master's thesis, Vysoké učení technické v Brně. Fakulta stavební, 2018. http://www.nusl.cz/ntk/nusl-371924.

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The aim of this work is to prepare the implementation of the reconstruction and extension of the Teaching hospital Brno Bohunice. Implementation of major technological stages is addressed in building technological study. Work includes selected legal procedures before the start of construction work, such as opening the envelopes and investor-supplier contract for the work. Further work solution contains selected technological processes of each sub-job phases, complemented by technological regulations, proposals for major construction machinery, selected inspection and test plans. As part of my work I will work with subcontractors to perform CFA piles, so I deal with on demand system for subcontractors, notice of award, issuing orders and delivery site for subcontractors. I believe that the subject of occupational health and safety on the jobsite is an important chapter construction and will therefore address the safety and health of people at work drawing up a plan OHS and OHS coordination meetings. Work will also be supplemented by information site equipment, time and financial plans and drawings of all the individual components specified in the Annexes. The content of my work is also a doctoral student competition entitled "Modern technologies and materials", where thoughts about the implementation superaseptických surgeries new technologies. This work will be the content of the text section of the attachments, always mentioned with the name of specialization.
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Books on the topic "Project Earthwalk"

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Administration, Bonneville Power. Short Mountain landfill gas recovery project: Stage 1 environmental assessment. Portland, Or: Bonneville Power Administration, 1992.

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E, Holton Wilfred, ed. Boston's Back Bay: The story of America's greatest nineteenth-century landfill project. Boston: Northeastern University Press, 2006.

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1953-, Bell Martin, Fowler P. J. 1936-, Hillson Simon, Andrews Peter 1940-, Council for British Archaeology, and British Association for the Advancement of Science. Experimental Earthworks Committee., eds. The experimental earthwork project, 1960-1992. York: Council for British Archaeology, 1996.

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K, Nielson K., and Air and Energy Engineering Research Laboratory., eds. Recommended foundation fill materials construction standard of the Florida Radon Research Program: Project summary. Research Triangle Park, NC: U.S. Environmental Protection Agency, Air and Energy Engineering Research Laboratory, 1991.

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K, Nielson K., and Air and Energy Engineering Research Laboratory, eds. Recommended foundation fill materials construction standard of the Florida Radon Research Program: Project summary. Research Triangle Park, NC: U.S. Environmental Protection Agency, Air and Energy Engineering Research Laboratory, 1991.

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Holton, Wilfred E., and William Newman. Boston's Back Bay: The Story of America's Greatest Nineteenth-Century Landfill Project. Northeastern University Press, 2006.

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Holton, Wilfred E., and William Newman. Boston's Back Bay: The Story of America's Greatest Nineteenth-Century Landfill Project. Northeastern, 2007.

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Book chapters on the topic "Project Earthwalk"

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Brunner, Albert. "Zürich Airport Extension Project: Digital Support for Earthwork Construction." In Digital Earth Moving, 1. Berlin, Heidelberg: Springer Berlin Heidelberg, 2001. http://dx.doi.org/10.1007/3-540-44818-7_1.

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"earthwork project." In Dictionary Geotechnical Engineering/Wörterbuch GeoTechnik, 452. Berlin, Heidelberg: Springer Berlin Heidelberg, 2014. http://dx.doi.org/10.1007/978-3-642-41714-6_50348.

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Heath, W., and B. McKinnon. "EARTHWORK MONITORING: A PROJECT MANAGEMENT SYSTEM." In Vegetation and slopes: Stabilisation, protection and ecology, 72–81. Thomas Telford Publishing, 1995. http://dx.doi.org/10.1680/vasspae.20313.0008.

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Gkovedarou, Maria, and Georgios N. Aretoulis. "Neural Networks and Statistical Analysis for Time and Cost Prediction Models of Urban Redevelopment Projects." In Deep Learning and Neural Networks, 552–67. IGI Global, 2020. http://dx.doi.org/10.4018/978-1-7998-0414-7.ch031.

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Over the last few years, a plethora of public works have taken place, focusing towards urban renewal, in the greater Thessaloniki district. Municipality of Thessaloniki, provided data for twelve public projects of urban renewal. Mathematical models have been proposed for cost and time prediction based on regression analysis. Furthermore, the Fast Artificial Neural Network (FANN Tool) was applied, to predict the duration and the final cost of the project, using volume of earthwork, as input variable. Both approaches could facilitate project stakeholders, to forecast the projects' final delivery date and cost and provide early warnings for any deviation from the initial budget. The results indicate that neural networks perform better than regression analysis' models, in the case of urban renewal projects.
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Jakobsen, L. Schneider, J. Lodewijks, P. Nørkjær Gade, and E. Kjems. "Visualizing earthwork and information on a linear infrastructure project using BIM 4D." In eWork and eBusiness in Architecture, Engineering and Construction, 177–83. CRC Press, 2018. http://dx.doi.org/10.1201/9780429506215-23.

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Saunders, Nicholas J. "Conflict on Jebel Sherra." In Desert Insurgency, 86–117. Oxford University Press, 2020. http://dx.doi.org/10.1093/oso/9780198722007.003.0006.

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This chapter explores the town of Ma’an, the largest and most sophisticated conflict landscape of the Arab Revolt in the Great Arab Revolt Project (GARP) study area. It is the site of the largest set-piece battle of the campaign east of the Jordan River, where 4,000 Ottoman troops faced 3,000 Arabs in a fierce five-day struggle. In this respect, it was an anomaly—a true battle in an otherwise mainly guerrilla campaign. Ma’an Station and its hinterland was an archaeological challenge as well. The station itself was surrounded by extensive Turkish earthwork defences—crenelated trench systems interspersed with karakoll hilltop defences—sitting within what is still an active training ground for the Jordanian Army. However, the evidence was mounting that the defence of the railway was a very late affair, that it could be dated to within a few months, and that it had an instructive relationship with the earlier defences of the construction era.
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Conference papers on the topic "Project Earthwalk"

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Raza, Hassnain, Waqas Tanoli, Seungsoo Lee, and Jongwon Seo. "Flexible Earthwork BIM Module Framework for Road Project." In 34th International Symposium on Automation and Robotics in Construction. Tribun EU, s.r.o., Brno, 2017. http://dx.doi.org/10.22260/isarc2017/0056.

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Baek, Hyeongi, and Jongwon Seo. "Optimized Earthwork Planning Methodology for Land Development Projects." In 28th International Symposium on Automation and Robotics in Construction. International Association for Automation and Robotics in Construction (IAARC), 2011. http://dx.doi.org/10.22260/isarc2011/0247.

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Eliou, Nikolaos, Andromachi Gkoutzini, Ioannis Karakikes, Ioannis Gizas, Athanasios Galanis, and George Kaliampetsos Kaliampetsos. "Calculation of road projects earthwork: A comparison of methods." In Fifth International Conference on Road and Rail Infrastructure. University of Zagreb Faculty of Civil Engineering, 2018. http://dx.doi.org/10.5592/co/cetra.2018.783.

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Elmossallamy, Loma Yasser, and Ayman H. Nassar. "Development of a software program to generate a WBS for earthwork projects." In 2019 European Conference on Computing in Construction. University College Dublin, 2019. http://dx.doi.org/10.35490/ec3.2019.179.

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S, Athira, and Subaida E.A. "A Review on sustainable reuse of dredged sediments in earthwork infrastructures." In International Web Conference in Civil Engineering for a Sustainable Planet. AIJR Publisher, 2021. http://dx.doi.org/10.21467/proceedings.112.13.

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Earth structures like embankments involve the use of a huge quantity of soil. Major sources of borrow soil are natural hills and embankments which are to be preserved to prevent structural instability and environmental problems. Bulk quantities of soil are dredged out from various waterfront projects, but poor engineering properties limit their use in construction projects. Stabilization of sediments with suitable reagents to use in embankment construction is considered a sustainable approach. With this motive, many studies are being conducted focusing on finding solutions to propose a sustainable alternative for earthwork infrastructural materials. Latest studies are developing engineering improvement of dredged sediments as a solution for the scarcity of earthen resources for construction.
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Luo, Wei, Quan Liu, Zhigen Hu, and Yafeng Qiu. "The Simulation Study on Dynamic Optimization of Hydropower Project Earthwork Allocation System Based on Petri Net." In 2008 4th International Conference on Wireless Communications, Networking and Mobile Computing (WiCOM). IEEE, 2008. http://dx.doi.org/10.1109/wicom.2008.1836.

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Hronek, John W. "Innovative Design Solutions Speed Construction of Commuter Rail Corridor." In 2010 Joint Rail Conference. ASMEDC, 2010. http://dx.doi.org/10.1115/jrc2010-36157.

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This paper will detail the design challenges and construction of the extension of the New Mexico Rail Runner commuter rail corridor from Bernalillo, NM to Santa Fe, NM. Numerous innovative solutions were implemented in the design and construction of the project to meet the aggressive schedule dictated by the client. The project was awarded to the design-build contractor in August 2007 and the line was opened to traffic in December 2008. This project was an important component of the New Mexico statewide transportation improvement project. Project final design and construction plans for the 18 mile extension were completed in five months. Construction started prior to completion of the final construction documents. The design was planned to provide a steady flow of Approved for Construction (AFC) documents to facilitate construction. Project highlights included eighteen miles of welded rail on concrete ties, six railroad bridges, one highway bridge overpass, two rail passing sidings, six concrete box rail crossings and 18 miles of new 136lb welded rail on concrete ties. The project is designed to meet the operating requirements of Class IV track and an operating speed of 79 mph. The major civil quantities included two million cubic yards of earthwork, 59,000 square feet of MSE retaining walls, 263,000 tons of ballast and subballast, 98,000 track feet of rail, and 50,000 concrete ties. The project team (NMDOT and Design-Build Consortium) collaborated by meeting weekly and reviewing plans and solutions, prior to acceptance for construction. Key to this effort was the use of the 3D design model created for the entire project leading to refining of the project quantities, reducing cost and allowing the NMDOT to remain within the budget established for this project.
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