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International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 09 Issue: 05 | May 2022 www.irjet.net p-ISSN: 2395-0072
© 2022, IRJET | Impact Factor value: 7.529 | ISO 9001:2008 Certified Journal | Page 1276
3D Modelling and Detailing in Tekla Structures
Snehal Manik Burkul1, Yadnya Ranu Jadhav2, Payal Balu Thakare3, Soham Rajendra Jadhav4,
Aishwarya Satish More5, Mr. Prashant. V. Suryawanshi6, Mr. Prashant. S. Chaudhari7,
Mr. Shantanu G. Pande8
(1,2,3,4,5 Students, Department of Civil Engineering, K. K. Wagh Polytechnic, Nashik, Maharashtra, India-422003.)
(6,7 Faculty, Department of Civil Engineering, K. K. Wagh Polytechnic, Nashik, Maharashtra, India-422003)
(8 Staff, CADD Centre, Nashik, Maharashtra, India-422003.)
---------------------------------------------------------------------***---------------------------------------------------------------------
Abstract – In our project we center around 3D Modeling and
Detailing in Tekla structures which involved these days in
development industry for steel and cement both enumerating
and furthermore precast and cast in-situ. Theseproductoffers
upgrades, enhancements and new highlights to helpefficiency
and make smoother work processes. With improvements of
drawing creation, steel cast - set up and precast concrete,
underlying designing plan and cooperation. The most recent
renditions of Tekla structures are generally expected to make
the work more straightforward and quicker. Tekla structures
utilized for configuration, enumerating and data the
executives from applied wanting to manufacture and
development on location.
Key Words: 3D Modelling, Tekla structures, BIM, AutoCAD,
Steel detailing, Import,Quick Launch,Reinforcement,Master
drawing catlog.
1. INTRODUCTION
Tekla structures is a structure data displayingprogramming
ready to make model designs that integrate various types of
building materials, including steel, cement, wood and glass.
This product is utilized to make and oversee 3D primary
models in cement and steel with dealing withtheinteraction
from idea to creation. It contends in the BIM (Building
Information Modelling) market with AutoCAD, Autodesk
Revit, D profiler and advanced project, Lucas Bridge, Priced
and others. Tekla structures is known to help enormoussort
of models with various synchronous clients. This product
utilized broadly for the steel plan of capital entryway (Abu
Dabi) and UAE. Tekla won many honours for its substantial
and steel projects. North American BIM Award for
substantial task is one of them which is hydroelectric
venture that has seen steel, concrete, and rebar completely
point by point utilizing Tekla structures.
1.1 Overview
Tekla technology creates new opportunities for the
disciplines intheconstructionindustry.Tekla structures
is the first intelligent 3D BIM (Building Information
Modelling) software and the most advanced on the
market that provides an accurate, Dynamic, and Data
rich 3D environment. Essentially, the Tekla model
contains all the information required from conceptual
designs, detailing, and manufacturing to constructionof
project in a single Environment. With Tekla software,
your constructible designs will promote error-free
fabrication and successful construction. Tekla models
can deliver LOD 500 + highest level of development
possible making models which make them truly
constructible.
1.2 Future scope
These days numerous underlying steel structures are
coming in India. One of the best examples for steel
structures is Rajiv Gandhi international airport, a
Hyderabad and for these structures Tekla is the top one
option. Tekla is powerful structural BIM (Building
Information Modeling) software for better future
project. In the present market in India Tekla is useful as
designing multistoried building structures and it does
have its usage selectively. Tekla adopted the truly
constructible BIM process and welcome a new age of
reliable project informationandDeliverthe bestwork in
less time. In present modern scenario Tekla becoming
the most adopted and favorite software for steel
detailing and fabrication by many other construction
companies.
1.3 Objectives
1. To study the concept detailing in Tekla structures
software.
2. To analyze and research on availablestudymaterial
related to Tekla structure software.
3. To study and learn actual detailing procedure in
Tekla structure software.
4. Detailing a G+2 RCC structure and generating
drawings in Tekla structures software.
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 09 Issue: 05 | May 2022 www.irjet.net p-ISSN: 2395-0072
© 2022, IRJET | Impact Factor value: 7.529 | ISO 9001:2008 Certified Journal | Page 1277
Opening a blank document
and importing document
Arranging grid
according to plan
creating view
internal plaster
Placing columns, footing,
beams and slab according
to plan
Copying the plan
vertically and generating
floors
pr
op
ort
io
ns
Placing reinforcement for
each component
internal plaster
Generating
drawing
Results and
conclusion
2. METHODOLOGY
Tekla Structures is a structure data demonstrating
programming ready to display structures that integrate
various types of building materials, including steel, cement,
lumber and glass. Tekla permits primary drafters and
architects to plan a structure and its parts utilizing 3D
demonstrating, create 2D drawings and accessbuildingdata.
Tekla Structures is utilized in the development business for
steel and substantial enumerating, precast and cast in-situ.
The product empowers clients to make and oversee 3D
underlying models in cement or steel, and guides them
through the interaction from idea to manufacture.
Fig :2.1 Flow Chart of methodology
2.1 Opening a blank document and importing a
document
Clear venture is a Tekla Structures climate that incorporates
just nonexclusive substance, like parametric profiles and
unclear materials. Import models and drawings from Tekla
structures in another model. Open the Tekla Structures
model into which you need to import the other model. Go to
Quick Launch, begin composing importmodel,andselectthe
Import model order from the rundown that showsup. Select
a model organizer to import and snap OK.
Fig :2.2 Pop-up window for blank project.
Fig :2.3 Finalizing the Auto cad plan.
Fig :2.4 Import the plan
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 09 Issue: 05 | May 2022 www.irjet.net p-ISSN: 2395-0072
© 2022, IRJET | Impact Factor value: 7.529 | ISO 9001:2008 Certified Journal | Page 1278
2.2 Arranging grid according to plan creating view.
You can show matrices and network line marks in single-
part, cast unit, gathering, and general game plan drawings.
You can set programmed lattice properties and furthermore
physically adjust properties in an open drawing. Drawings
might incorporate a few perspectives. Notwithstanding the
perspectives Tekla Structures makes naturally founded on
your determination at drawing creation.
Fig :2.5 Editing the Grid lines
2.3 Placing columns, footings, beams and slab according
to plan.
Tekla Structures includesthefollowingcomponentsthat you
can use to automatically create reinforcement for beams,
columns, and slabs the open drawing, and modify the
existing ones.
Fig :2.6 Placing the column.
Fig :2.7 Placing Footing.
Fig :2.8 Footing in 2D and 3D View.
Fig :2.9 Placing Beams in 2D view.
Fig :2.10 View of Beams
Fig :2.11 2D View of Slab
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 09 Issue: 05 | May 2022 www.irjet.net p-ISSN: 2395-0072
© 2022, IRJET | Impact Factor value: 7.529 | ISO 9001:2008 Certified Journal | Page 1279
Fig :2.12 3D View of Floors
2.4 Placing the reinforcement for each component
At the point when you make a support, Tekla Structures
consequently appends the support to the part for which you
are making the support. If necessary, you can connect a
support to a substantial part additionally physically. The
connected supporting bars follow the part or cast unit when
it is moved, replicated, or erased. Shaft support (63) makes
support for a cement footer. Select the cement footer. The
support is made consequently when you select the shaft.
Bars made in Tekla. Section Reinforcement Tool makes
support to unpredictably formed substantial pieces.
Fig :2.13 Reinforcement in 3D and 2D view
2.5 Generating drawing
Create drawings using the various master drawing types in
the Master Drawing Catalog. Using rule sets is a highly
automated process of creating several drawings of different
type in one go.
Fig :2.14 3D model of G+2 structure with detailing.
2.6 Result and analysis
Fig :2.15 Column 1 Fabrication Drawing.
Fig :2.16 Column 2 Fabrication Drawing.
Fig :2.17 Column 3 Fabrication Drawing.
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 09 Issue: 05 | May 2022 www.irjet.net p-ISSN: 2395-0072
© 2022, IRJET | Impact Factor value: 7.529 | ISO 9001:2008 Certified Journal | Page 1280
Fig :2.18 Column 4 Fabrication drawing.
Fig :2.19 Footing 1 Fabrication Drawing.
Fig :2.20 Footing 2 Fabrication Drawing.
Fig :2.21 GA Drawing 1
Fig :2.22 GA Drawing 2
Engineers have utilized Tekla Structures to demonstrate
arenas, seaward designs, pipe rack structures, plants,
production lines, private structures, scaffolds andhighrises.
Tekla Structures was utilized in the development plan for
different undertakings all over the planet, including:
1. Show off Replacement, Daytona International Speedway
(USA)
2. Frontstretch Grandstands, Daytona International
Speedway (USA)
3. Denver International Airport Expansion (USA)
4. San Jose Earthquakes Stadium (USA)
5. BB&T Ballpark (Charlotte, USA)
6. Spillway Replacement, Manitoba Hydro (USA)
7. Public Stadium Roof, Singapore Sports Hub (Singapore)
8. Red Bear Student Center (Canada)
9. Troja Bridge (Prague)
10. Tesco Supermarket (Sheringham, UK)
11. Baylor University Stadium (Australia)
12. Sutter Medical Center (California, USA)
13. Development, Chennai International Airport (India)
14. Dongdaemun Design Plaza (Seoul)
15. Capital Gate (Abu Dhabi)
16. Lord Abdullah Financial District (Saudi Arabia)
17. Lord Abdulaziz Center for World Culture (Saudi Arabia)
18. Public Museum of Qatar (Qatar)
19. Hilton Garden Inn (UAE)
20. Puuvilla Shopping Center (Finland)
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 09 Issue: 05 | May 2022 www.irjet.net p-ISSN: 2395-0072
© 2022, IRJET | Impact Factor value: 7.529 | ISO 9001:2008 Certified Journal | Page 1281
3. CONCLUSIONS
Tekla structures is a vast product that covers the entire
structural designs processina singleenvironment.It enables
a single BIM model to be used from the conceptual stages
right through to fabrication and beyond its ability to reuse
data through design, analysis and detailing phases and
model in steel, concrete and timber is somewhat unique in
the industry. In terms of modeling this softwareisextremely
powerful. This software does an excellent job ofbridgingthe
gap between design and fabrication and through its single
environment provides the perfect conduit for data to flow
smoothly from engineer to detailer. Most importantly,
through it has been potential to simplify the management of
an often-fragmented process, leading to enhanced
collaboration, better designs, reducetimes,andofcoursethe
lower cost.
ACKNOWLEDGEMENT
With deep sense of gratitude, we would like to thanks all
people who have lid our path with their kind guidance. We
are very grateful to these intellectuals who did their best to
help during project planning work. It is our proud privilege
to express deep sense of gratitude to Prof. P. T. Kadave,
Principal of K. K. Wagh Polytechnic, Nashik, for his comment
and kind permission to complete this projectplanningwork.
We remain indebted to Mr. P. V. Suryawanshi, civil
department for his timely suggestion and valuableguidance.
The special gratitude goes to project guide, Staff members
and all technical staff members of civil departmentsfortheir
excellent and precious guidance in completion of this work.
REFERENCES
[1] Ahmad Jrade & Farzad Jalaei, (2013), “Integrating
building information modelling with sustainability to
design building projects at the conceptual stage”,
Building Simulation |volume 6
[2] A. Marchini & J. O. Patzlaff,(2016), “Buildinginformation
modeling (BIM) application in civil constructions
intending the increase ofservicelife”, Journal ofBuilding
Pathology and Rehabilitation, volume1,Article number:
12
[3] Berardo Naticchia, Alessandra Corneli & Alessandro
Carbonari, (2020), “Framework based on building
information modeling, mixed reality, and a cloud
platform to support information flow in facility
management”, Frontiers of Engineering Management
volume 7
[4] Mingyue Li, Zhuoling Ma & Xi Tang, (2021) “Owner-
dominated building information modeling and lean
construction in a megaproject”, FrontiersofEngineering
Management ,volume 8
[5] Worawan Natephra, Ali Motamedi, TomohiroFukuda &
Nobuyoshi Yabuki, (2017) “Integrating building
information modeling and virtual reality development
engines for building indoor lighting design”,
Visualization in Engineering, volume 5, Article number:
19

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3D Modelling and Detailing in Tekla Structures

  • 1. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 09 Issue: 05 | May 2022 www.irjet.net p-ISSN: 2395-0072 © 2022, IRJET | Impact Factor value: 7.529 | ISO 9001:2008 Certified Journal | Page 1276 3D Modelling and Detailing in Tekla Structures Snehal Manik Burkul1, Yadnya Ranu Jadhav2, Payal Balu Thakare3, Soham Rajendra Jadhav4, Aishwarya Satish More5, Mr. Prashant. V. Suryawanshi6, Mr. Prashant. S. Chaudhari7, Mr. Shantanu G. Pande8 (1,2,3,4,5 Students, Department of Civil Engineering, K. K. Wagh Polytechnic, Nashik, Maharashtra, India-422003.) (6,7 Faculty, Department of Civil Engineering, K. K. Wagh Polytechnic, Nashik, Maharashtra, India-422003) (8 Staff, CADD Centre, Nashik, Maharashtra, India-422003.) ---------------------------------------------------------------------***--------------------------------------------------------------------- Abstract – In our project we center around 3D Modeling and Detailing in Tekla structures which involved these days in development industry for steel and cement both enumerating and furthermore precast and cast in-situ. Theseproductoffers upgrades, enhancements and new highlights to helpefficiency and make smoother work processes. With improvements of drawing creation, steel cast - set up and precast concrete, underlying designing plan and cooperation. The most recent renditions of Tekla structures are generally expected to make the work more straightforward and quicker. Tekla structures utilized for configuration, enumerating and data the executives from applied wanting to manufacture and development on location. Key Words: 3D Modelling, Tekla structures, BIM, AutoCAD, Steel detailing, Import,Quick Launch,Reinforcement,Master drawing catlog. 1. INTRODUCTION Tekla structures is a structure data displayingprogramming ready to make model designs that integrate various types of building materials, including steel, cement, wood and glass. This product is utilized to make and oversee 3D primary models in cement and steel with dealing withtheinteraction from idea to creation. It contends in the BIM (Building Information Modelling) market with AutoCAD, Autodesk Revit, D profiler and advanced project, Lucas Bridge, Priced and others. Tekla structures is known to help enormoussort of models with various synchronous clients. This product utilized broadly for the steel plan of capital entryway (Abu Dabi) and UAE. Tekla won many honours for its substantial and steel projects. North American BIM Award for substantial task is one of them which is hydroelectric venture that has seen steel, concrete, and rebar completely point by point utilizing Tekla structures. 1.1 Overview Tekla technology creates new opportunities for the disciplines intheconstructionindustry.Tekla structures is the first intelligent 3D BIM (Building Information Modelling) software and the most advanced on the market that provides an accurate, Dynamic, and Data rich 3D environment. Essentially, the Tekla model contains all the information required from conceptual designs, detailing, and manufacturing to constructionof project in a single Environment. With Tekla software, your constructible designs will promote error-free fabrication and successful construction. Tekla models can deliver LOD 500 + highest level of development possible making models which make them truly constructible. 1.2 Future scope These days numerous underlying steel structures are coming in India. One of the best examples for steel structures is Rajiv Gandhi international airport, a Hyderabad and for these structures Tekla is the top one option. Tekla is powerful structural BIM (Building Information Modeling) software for better future project. In the present market in India Tekla is useful as designing multistoried building structures and it does have its usage selectively. Tekla adopted the truly constructible BIM process and welcome a new age of reliable project informationandDeliverthe bestwork in less time. In present modern scenario Tekla becoming the most adopted and favorite software for steel detailing and fabrication by many other construction companies. 1.3 Objectives 1. To study the concept detailing in Tekla structures software. 2. To analyze and research on availablestudymaterial related to Tekla structure software. 3. To study and learn actual detailing procedure in Tekla structure software. 4. Detailing a G+2 RCC structure and generating drawings in Tekla structures software.
  • 2. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 09 Issue: 05 | May 2022 www.irjet.net p-ISSN: 2395-0072 © 2022, IRJET | Impact Factor value: 7.529 | ISO 9001:2008 Certified Journal | Page 1277 Opening a blank document and importing document Arranging grid according to plan creating view internal plaster Placing columns, footing, beams and slab according to plan Copying the plan vertically and generating floors pr op ort io ns Placing reinforcement for each component internal plaster Generating drawing Results and conclusion 2. METHODOLOGY Tekla Structures is a structure data demonstrating programming ready to display structures that integrate various types of building materials, including steel, cement, lumber and glass. Tekla permits primary drafters and architects to plan a structure and its parts utilizing 3D demonstrating, create 2D drawings and accessbuildingdata. Tekla Structures is utilized in the development business for steel and substantial enumerating, precast and cast in-situ. The product empowers clients to make and oversee 3D underlying models in cement or steel, and guides them through the interaction from idea to manufacture. Fig :2.1 Flow Chart of methodology 2.1 Opening a blank document and importing a document Clear venture is a Tekla Structures climate that incorporates just nonexclusive substance, like parametric profiles and unclear materials. Import models and drawings from Tekla structures in another model. Open the Tekla Structures model into which you need to import the other model. Go to Quick Launch, begin composing importmodel,andselectthe Import model order from the rundown that showsup. Select a model organizer to import and snap OK. Fig :2.2 Pop-up window for blank project. Fig :2.3 Finalizing the Auto cad plan. Fig :2.4 Import the plan
  • 3. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 09 Issue: 05 | May 2022 www.irjet.net p-ISSN: 2395-0072 © 2022, IRJET | Impact Factor value: 7.529 | ISO 9001:2008 Certified Journal | Page 1278 2.2 Arranging grid according to plan creating view. You can show matrices and network line marks in single- part, cast unit, gathering, and general game plan drawings. You can set programmed lattice properties and furthermore physically adjust properties in an open drawing. Drawings might incorporate a few perspectives. Notwithstanding the perspectives Tekla Structures makes naturally founded on your determination at drawing creation. Fig :2.5 Editing the Grid lines 2.3 Placing columns, footings, beams and slab according to plan. Tekla Structures includesthefollowingcomponentsthat you can use to automatically create reinforcement for beams, columns, and slabs the open drawing, and modify the existing ones. Fig :2.6 Placing the column. Fig :2.7 Placing Footing. Fig :2.8 Footing in 2D and 3D View. Fig :2.9 Placing Beams in 2D view. Fig :2.10 View of Beams Fig :2.11 2D View of Slab
  • 4. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 09 Issue: 05 | May 2022 www.irjet.net p-ISSN: 2395-0072 © 2022, IRJET | Impact Factor value: 7.529 | ISO 9001:2008 Certified Journal | Page 1279 Fig :2.12 3D View of Floors 2.4 Placing the reinforcement for each component At the point when you make a support, Tekla Structures consequently appends the support to the part for which you are making the support. If necessary, you can connect a support to a substantial part additionally physically. The connected supporting bars follow the part or cast unit when it is moved, replicated, or erased. Shaft support (63) makes support for a cement footer. Select the cement footer. The support is made consequently when you select the shaft. Bars made in Tekla. Section Reinforcement Tool makes support to unpredictably formed substantial pieces. Fig :2.13 Reinforcement in 3D and 2D view 2.5 Generating drawing Create drawings using the various master drawing types in the Master Drawing Catalog. Using rule sets is a highly automated process of creating several drawings of different type in one go. Fig :2.14 3D model of G+2 structure with detailing. 2.6 Result and analysis Fig :2.15 Column 1 Fabrication Drawing. Fig :2.16 Column 2 Fabrication Drawing. Fig :2.17 Column 3 Fabrication Drawing.
  • 5. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 09 Issue: 05 | May 2022 www.irjet.net p-ISSN: 2395-0072 © 2022, IRJET | Impact Factor value: 7.529 | ISO 9001:2008 Certified Journal | Page 1280 Fig :2.18 Column 4 Fabrication drawing. Fig :2.19 Footing 1 Fabrication Drawing. Fig :2.20 Footing 2 Fabrication Drawing. Fig :2.21 GA Drawing 1 Fig :2.22 GA Drawing 2 Engineers have utilized Tekla Structures to demonstrate arenas, seaward designs, pipe rack structures, plants, production lines, private structures, scaffolds andhighrises. Tekla Structures was utilized in the development plan for different undertakings all over the planet, including: 1. Show off Replacement, Daytona International Speedway (USA) 2. Frontstretch Grandstands, Daytona International Speedway (USA) 3. Denver International Airport Expansion (USA) 4. San Jose Earthquakes Stadium (USA) 5. BB&T Ballpark (Charlotte, USA) 6. Spillway Replacement, Manitoba Hydro (USA) 7. Public Stadium Roof, Singapore Sports Hub (Singapore) 8. Red Bear Student Center (Canada) 9. Troja Bridge (Prague) 10. Tesco Supermarket (Sheringham, UK) 11. Baylor University Stadium (Australia) 12. Sutter Medical Center (California, USA) 13. Development, Chennai International Airport (India) 14. Dongdaemun Design Plaza (Seoul) 15. Capital Gate (Abu Dhabi) 16. Lord Abdullah Financial District (Saudi Arabia) 17. Lord Abdulaziz Center for World Culture (Saudi Arabia) 18. Public Museum of Qatar (Qatar) 19. Hilton Garden Inn (UAE) 20. Puuvilla Shopping Center (Finland)
  • 6. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 09 Issue: 05 | May 2022 www.irjet.net p-ISSN: 2395-0072 © 2022, IRJET | Impact Factor value: 7.529 | ISO 9001:2008 Certified Journal | Page 1281 3. CONCLUSIONS Tekla structures is a vast product that covers the entire structural designs processina singleenvironment.It enables a single BIM model to be used from the conceptual stages right through to fabrication and beyond its ability to reuse data through design, analysis and detailing phases and model in steel, concrete and timber is somewhat unique in the industry. In terms of modeling this softwareisextremely powerful. This software does an excellent job ofbridgingthe gap between design and fabrication and through its single environment provides the perfect conduit for data to flow smoothly from engineer to detailer. Most importantly, through it has been potential to simplify the management of an often-fragmented process, leading to enhanced collaboration, better designs, reducetimes,andofcoursethe lower cost. ACKNOWLEDGEMENT With deep sense of gratitude, we would like to thanks all people who have lid our path with their kind guidance. We are very grateful to these intellectuals who did their best to help during project planning work. It is our proud privilege to express deep sense of gratitude to Prof. P. T. Kadave, Principal of K. K. Wagh Polytechnic, Nashik, for his comment and kind permission to complete this projectplanningwork. We remain indebted to Mr. P. V. Suryawanshi, civil department for his timely suggestion and valuableguidance. The special gratitude goes to project guide, Staff members and all technical staff members of civil departmentsfortheir excellent and precious guidance in completion of this work. REFERENCES [1] Ahmad Jrade & Farzad Jalaei, (2013), “Integrating building information modelling with sustainability to design building projects at the conceptual stage”, Building Simulation |volume 6 [2] A. Marchini & J. O. Patzlaff,(2016), “Buildinginformation modeling (BIM) application in civil constructions intending the increase ofservicelife”, Journal ofBuilding Pathology and Rehabilitation, volume1,Article number: 12 [3] Berardo Naticchia, Alessandra Corneli & Alessandro Carbonari, (2020), “Framework based on building information modeling, mixed reality, and a cloud platform to support information flow in facility management”, Frontiers of Engineering Management volume 7 [4] Mingyue Li, Zhuoling Ma & Xi Tang, (2021) “Owner- dominated building information modeling and lean construction in a megaproject”, FrontiersofEngineering Management ,volume 8 [5] Worawan Natephra, Ali Motamedi, TomohiroFukuda & Nobuyoshi Yabuki, (2017) “Integrating building information modeling and virtual reality development engines for building indoor lighting design”, Visualization in Engineering, volume 5, Article number: 19