Wednesday, 20 September 2017

Indian Culture – The Right Fit for Architectural Outsourcing


Indian Culture – The Right Fit for Architectural Drafting Outsourcing

Ask most people from the West about their impression of Indian culture, and most likely, you’re going to get answers ranging from cows and elephants roaming the streets, intense poverty, Bollywood and a powerful onslaught of vibrant colours, sounds and smells. But there is more to Indian culture. And the Indian work culture in particular is refreshingly professional.

One of the advantages of the Indian working class is a certain reverence for learning, in-depth technical expertise, updated training and a healthy working knowledge of the English language. On a global scale, this can be invaluable. 

Diversity in a nation of 29 states and 7 union territories, each with its own distinct flavor, means people are familiar with adapting to varied situations, circumstances, other cultures and professional needs. Add to the mix India’s increasing collaboration with Western corporate and technical entities, eagerness to adapt, and it’s no surprise that Indian work culture exudes a universal appeal. Specific to the architectural CAD outsourcing services industry, these unique Indian cultural features, and more, make India a logical destination for international firms. 

In an age of worldwide economic stress, human resources and work culture are bound to be affected. There is an increasing demand for relevant talent, and so, companies are paying keen attention to retaining and encouraging that talent. Work culture, especially in the emerging outsourced CAD services sector, is a key factor in overall economic growth. Thus, understanding the significance of the Indian work culture, what it was and how it is adapting, becomes fundamentally beneficial for Western firms. 

How the Work Cultures Compared Previously:

- In India, it was perfectly acceptable to work for 10 hours or more; in the West, it is an exception to the rule, where work hours are from 7-8 in a day.

- In India, the relationship between the boss and subordinates was very formal and hierarchical, and it is not so in the West. 

- In India, the hierarchical structure did not always focus on the individual employee but consistently placed management welfare on the top of the pyramid. In the West, the less formal practice of addressing people on a first-name basis, speaking only of work-connected issues and exhibiting less interpersonal skills is more common. 

- Accomplishing a project by a set deadline was sometimes an issue for Indian companies. In the West, it is mandatory to honour commitments and complete tasks on time. Punctuality is not a choice; it is a necessity in the Western work culture. 

- In India, being direct could easily be misunderstood to be rude or disrespectful. Direct communication is appreciated in Western countries. 

 - Indians strove to maintain flexibility and practiced it easily. They tried to adjust wherever possible and whenever required. In the West, this is not so. Professionals function according to a set process and frown on frequent changes. In particular last-minute changes are unacceptable. 

- In Indian companies, the prime focus remained on productivity, with the exclusion of almost everything else. Western nations see the work place as a place of recreation, enjoyment, innovation and creativity, with facilities such as gyms, clubs, lounges, etc. With the progressive march of globalisation, the architectural drafting industry in India quickly adapted to global requirements and certain definitive characteristics of Indian culture helped it along.

Strengths of Indian Culture 

 - Communication – Indians have a fairly good grasp of the English language compared to Asian competitors. Being able to understand building and design elements and recognising problem areas is great, but getting that message across to a customer in the clearest and most concise manner improves productivity and creates a lasting impression that breeds confidence. 

 - A skilled workforce, especially in the IT-enabled industry means that the Indian firms have access to a large amount of number of skilled architectural technicians and architectural 3D modelling resources. Indian firms focus heavily on the latest technology and infrastructure, training the workforce to use the latest technologies, with training programmes conducted on a regular basis to ensure employees are up to date with new software releases that are acquired using the latest releases of Autodesk and ArchiCAD software. 

- Indian culture tends to be biased towards politeness and keeping people happy. This trend is also seen at work – leading to greater customer satisfaction and higher levels of retention. This is really important in an industry such as architecture, where it is important to ‘learn once and apply forever’ to ensure ongoing quality, accuracy and productivity. 

- The employee-employee relationship in India is much more social. Employees are friendly, and being on good terms within an organisation generally helps processes move faster and more efficiently. In architecture support firms, this can aid retention, which is vital to build long-term relationships with client teams from homebuilding, retail and architectural practices. 

- Working hours can easily be 9-10 hours a day, increasing productivity and allowing customers to meet time scales and deadlines in an industry that is constantly seeking to deliver new construction projects on time. 

The strengths of Indian culture would best be served by adopting some of the better practices of Western culture. These include:

- Focus on delivering tasks and following set processes – A professional approach to the completion of various deadlines with quality output and adhering to set processes.

- Positive work environment – This involves a relationship with co-workers and supervisors, an organisational culture and room for personal development. 

- Transparent and open communication - Transparent and open communication lets employees feel what they say has value, makes employees feel they belong in the organisation. Work becomes meaningful, as employees know their contribution affects the company. Communication promotes trust in daily interactions between co-workers, as well as between subordinates and supervisors. Thus, employees will not be afraid to suggest ideas to improve work processes, thus benefiting everyone in the organisation in return.

- Balance between work and personal life - This sense of balance improves job satisfaction, fulfils various needs and goals in life, like of family, friends, spiritual pursuits, self-growth, etc., which increases self-confidence and better performance. Additionally, employees that are exposed to more experiences in life outside of work can use what they’ve gained and apply that to their work. In other words, work-life balance promotes creative solutions to new challenges, with out-of-the-box thinking. 

How a Western-owned culture can impact others

Generally, the Indian cultural ethos sees individuals handle technical tasks, perform simultaneously and focus on results, but previously, all on ‘Indian Standard Time’, which excused an almost karmic acceptance of delays. Also, a certain pull-back to following processes, committing to repetitive tasks and paying attention to detail were all historically practiced. Due to greater interaction and collaboration with Western firms, these laxities are changing quickly. 

Today, in India, the workforce is at ease with structure, capable of managing time, following processes, focusing on tasks and not being diverted with relationships. People and training culture in architectural design support firms in India is influenced by a number of factors, including:

- Employees keep themselves regularly updated with the rapid evolution of technology, although support and personalised CAD training programs from employers help enormously.

- Hard skills impact work productivity directly, and the importance of training is well recognised, with work study and method study applied to CAD tasks to measure productivity being welcomed by most employees.

- Soft skills, such as interpersonal skills, positively affect morale, and thus productivity. and it is common to see good architectural support firms in India investing in English language development for their teams.

- Acknowledging and rewarding employees who put in extra effort encourages similar effort by others. This includes verbal recognition and daily interaction by superiors. 

- A movement towards accepting and tolerating different perspectives and styles enhances a stronger team spirit and helps to find solutions to architectural design challenges all along the architectural design workflow. This changing scenario is heavily influenced by the working style of Western companies. 

How well an Anglo-Indo culture works in the outsourced CAD service industry

Recent years have seen a new wave of young Indians, who are dynamic and modern in their ambitions and working styles. This has led to a wealth of outsourcing options, especially in technical fields, where corporate culture has adopted the best practices of different worlds. For instance, in the architectural drafting world, where BIM outsourcing plays a key role, this change is visibly prevalent.

General practices which are becoming progressively common with architectural CAD outsourcing services in this part of the world include the following: 

- Employees plan tasks for the week, with hourly entries. This detailed plan is an estimate, but it helps project managers to monitor manpower and resources. By the weekend, each employee records their work in a database that works out how much of what was planned got completed. The data is used to monitor utilisation, which is typically targeted in excess of 80. percent. 

- A blueprint explains the content of a schematic design set of drawings, or a DD or CD set of drawings, and instructs how and when to build it, broken down into manageable phases and deliverables. 

- Each phase contains defined tasks, and projects can be viewed as checklists, detailing each employee’s progress. This way, a competitive environment is created and the workforce is encouraged to follow set guidelines. This format helps people know exactly which part of the process they are currently at.

- Other than accountability, people can function without interruptions, since everyone has access to each other’s checklist, which in turn aids project management.

- Architectural tools, such as AutoCAD, cut turnaround time. BIM has the potential to squeeze production cycles even shorter, while at the same time expand, by leaps and bounds, the quality and quantity of data in the final ‘product’. 

With these new tools and new attitudes, clients from the West are expecting, demanding and receiving more from a culture primed to adapt constantly. Industry-specific deliverables, now being processed with global professional standards, have attained a new level of expertise and quality in India – a perfect fit indeed.

Monday, 27 June 2016

Benefits of using Revit Architecture for 3D Renders


Autodesk Revit was introduced well over a decade ago, it is software for architects, designers, MEP engineers, structural engineers and contractors. Over the years, Revit adoption has progressed rapidly in the AEC industry, which in itself has seen revolutionary developments in the same period.

Revit is available in many packages, which includes, Autodesk Revit Architecture and Autodesk Revit MEP, amongst others. Autodesk Revit Architecture provides an array of tools required for projects across a range of architectural sectors, including home building and retail  along with the ability to prepare 3D renders. It is a tool extensively used by companies providing Architectural CAD Services, Architectural Drafting Service and Architectural 3D Rendering Services.

Revit architecture utilises parametric design processes which enable seamless modification of a related environment whenever an element in the adjacent environment is changed, thus maintaining continuity within a single project file. One of the more recent tools of Revit architecture is its ability to generate 3D renders, as 3D renders enable architects, consultants and associated professionals to present their design ideas and  architectural vision through 3D images to clients and associated project stakeholders. The main highlight of architectural rendering using Revit Architecture is its capability to augment visualization and facilitate the creation of 3D views.

Listed below are a few of the features and benefits of using Revit Architecture for 3D renders:

Precise sun settings in the renders
 Revit Architecture carries settings to produce accurate colour reproduction such as proper set up of  lighting and materials. Exterior daytime renders are created by using sun setting option, allowing to  create a precise sun angle and position relative to the building. Revit Architecture also accurately  portrays the sunlight for specific locations around the world, by just stating time and date with the  desired location in the settings.

• Accurate production of Resolution -
 Based upon client requirements and the end use of the image, the resolution of rendered images can  be selected. If the rendered image is going to be used for a large presentation board then a high  resolution setting can be selected and for a relatively small image, where the level of detail is less, a  lower resolution setting can be selected.

• Comparatively quicker than the competition -
 The majority of the competitive rendering engines utilise a high amount of CPU memory and also  require advanced GPU’s, which ultimately results in a lot of time consumption to produce high  quality renders. Revit Architecture is fine tuned to utilise less CPU memory and in most cases does  not require a GPU to handle complex scenes and lightings, improving the overall efficiency and  creating high resolution renders in significantly less time.
• Higher reliability ratio -
 Due to advanced settings that provide the best performance under varied settings,  Revit Architecture  creates renders with high resolution in much less time, where similar rendering engines fail to create  renders of lower resolution. Hence, along with providing an optimum output, Revit Architecture is a  highly reliable tool to create high quality 3D renders.

• Variety of tool options -
 Revit Architecture comes  with a variety of tool options, such as a visualisation related ‘election  tool’  in the ‘View’ panel on the ‘Modify’ tab. There are many more similar tools available on Revit  Architecture which can be useful for various tasks other than creating renders.

Revit Architecture is becoming one of the more versatile tools for overall design modeling and documentation.  The ability to generate 3D renders using an array of options has broadened the appeal and use of the tool for architects and designers.There are a variety of additional benefits of using Revit Architecture for 3D Renders other than the few listed above, which are updated in every new iteration of the software, making it a sought after tool for designers around the world..

Wednesday, 14 October 2015

10 Reasons to Use Revit MEP for MEP Coordination

Autodesk Revit MEP is an important component used for design by the AEC industry. Globally, AEC firms are increasingly using Revit MEP to produce 3D M&E (MEP) coordinated drawings, and Revit MEP tools to update their BIM models with MEP information, and thus, enhance their architectural and engineering design development and construction documentation process. Businesses using Revit MEP are starting to realise the potential of this technology to deliver more value to the AEC industry and also manage their own budgets and profitability at the same time. Before we look at the reasons to use Revit MEP for MEP coordination, let’s briefly cover the subject of Autodesk Revit MEP for MEP coordination.

Autodesk Revit MEP for MEP Coordination

Autodesk Revit MEP, a building information modelling (BIM) software is a leading Autodesk product that is used by users engaging in MEP engineering projects. MEP is an acronym for Mechanical, Electrical and Plumbing which forms the three engineering disciplines addressed by Revit MEP. Using BIM software rather than CAD (computer aided drafting), Revit MEP consists of dynamic information in the form of intelligent models, letting complex building systems to be precisely designed and documented in a shorter amount of time. Within Revit MEP there are a series of intelligent models that combine to form a complete project, all stored in a single database file. With this, the changes made in one part of the model can then be automatically propagated to other parts of the model, thus reducing the timeframe to alter designs during the design process. As far as MEP coordination is concerned, it involves coordination of all building services (HVAC, pipework, public health and electrical systems) with other disciplines making up the structure of the building, fabric and external envelope, i.e. steel, concrete, false ceilings, etc.

Having refreshed our memories with Autodesk Revit MEP, let us focus on the reasons why it is useful for MEP coordination. There are of course many reasons, however a few are listed below that will hopefully demonstrate the value of this tool for coordination.

10 Reasons to Use Revit MEP for MEP Coordination

The top 10 reasons to use Revit MEP during MEP design and coordination are summarised below:
  • Revit MEP produces high end building information models that represent realistic, real time design scenarios, helping users to make more informed design decisions earlier in the process. The team working on the project can better meet goals and sustainability initiatives, execute energy analysis, examine system loads, and produce heating and cooling load reports with native integrated analysis tools
  • Revit MEP software’s modelling and layout tools let engineers create mechanical, electrical, and plumbing systems more easily and precisely. Also, the software’s parametric change technology means that any change to the MEP model is automatically coordinated throughout the model
  • The complexities of today’s buildings require leading edge system’s and engineering tools to optimize performance in both use and efficiency. As complexities increase in the projects, communicating design changes among MEP engineers and their extended teams is critical. Revit MEP’s purpose built systems analysis and optimization tools lets team members receive feedback about their MEP designs in real time, resulting in better performing designs in the process
  • Using Revit MEP, the MEP engineers can more effectively collaborate and interact based on workflow and project requirements through use of a range of compatible collaboration tools such as BIM360. The software also helps to minimize design coordination errors among the extended project team, and helps to reduce design conflicts with real time clash and interference detection.
  • In Revit MEP, all model information is stored in a single, coordinated database. Revisions and modifications to information are automatically updated throughout the model, helping to significantly reduce errors and omissions. Autodesk refers to this database driven simultaneous update to file output as multi-directional associatively which explains that a change in one area manifests in all other parts of the file.
  • Parametric components, also called families, are the basis for all building components designed in Revit MEP. These components provide an open graphical system for design thinking and form making and offer the opportunity to adjust and express design intent at increasingly detailed levels.
  • Revit MEP software is a much more streamlined and intuitive user interface that is easier to learn and adopt. Users can thus find favourite tools and commands faster, identify tools more efficiently, and discover relevant new features easily.
  • Revit MEP works holistically, treating information in terms of entire building, linking mechanical, electrical, and plumbing systems with the building model - thus increasing collaborative working and a team based approach to projects.
  • Revit MEP updates model views and sheets, thus helping to maintain document and project consistency. With its help MEP engineers can for example, create HVAC systems with mechanical functionality and offer 3D modelling for ductwork and piping.
  • Revit MEP has built in calculators that allows MEP engineers to execute sizing and pressure loss calculations as per the industry standard methods and specifications

At XS CAD, we have developed the required expertise and extensive knowledge of providing Revit 3D BIM Modelling and MEP coordination drawings services to MEP engineers, MEP consultants and MEP trade contractors in the US, UK, Canada, Australia and India. To learn more about our Revit MEP Services, drop us an email or call us for more information.

Friday, 29 May 2015

Detailed Retail Construction Drawings Play a Key Role in Design-Bid-Build Projects

The design-build model of project delivery is one of the most used approaches, particularly for large-scale, high-end architecture, engineering, and construction (AEC) projects. These include infrastructure projects, such as healthcare and medical research facilities, airport terminals, bridges, educational institutes, and large custom homes. Nevertheless, very few residential and retail construction/redevelopment projects, primarily with tight budgets, use the design-build delivery method. Department stores, supermarkets, warehouse stores, and shopping centres / malls which are not linked to multinational retail owners and have a limited geographical reach fall into this category.

In case of such projects, a design/architectural firm is contracted to come up with the designs, plans, drawings, and detailed specifications which clearly convey the architect's / designer's intent. After initial meetings between the owner and architect/designer, all retail construction drawings are finalised. Depending on the scope of the project, this set includes floor plans, internal& external elevations, construction plans, setting out drawings, composite plans, finishing plans, lighting plans, ceiling plans and sections.

Once all the plans and CAD drawings are in place, the project undergoes a competitive bidding process used to shortlist a general contractor (main contractor) to implement the construction work mapped out in the detailed retail construction documents. Since this design-bid-build method of project delivery involves roping in distinct teams for design/planning and construction, detailed and accurate retail construction drawing sets play a key role in ensuring that the change orders on-site are avoided. Owing to a significant reduction of change orders during construction, the time, effort, and resources that would have been wasted on rework or modification are saved.

Whilst the retail construction drawing sets are important to seek site permits and regional building licenses, the level of detail/development necessitated by the permit documents are far less than what ideally need to be passed on to the general contractors (main contractors). Moreover, in the design-bid-build method, the amount of information incorporated in the construction drawing sets determine, to a large extent, the number of change orders. Since the construction documents are made especially to seek permits from the local authorities feature less detail, the competitive bids from all the participating general contractors (main contractors) will be lower; however, the lower bids will not truly reflect the nature of project's requirements.

As a result, detailed, clear, and unambiguous retail design drawings significantly lessen the chances of unanticipated change orders on site. When the chances of change orders reduce, the project becomes more profitable and completes on time, which is precisely what all the key parties involved in the project strive for. In order to achieve this, designers/architects involved in such design-bid-build projects perform constructability review of design at regular phases during the pricing phases.

In some cases, designers/architects rope in offshore CAD services providers to prepare detailed production drawing sets for them. Experienced companies providing retail design and documentation services take basic conceptual and schematic designs or sketches from the architects and deliver detailed construction drawing sets as per requirements. This enables architects to efficiently focus on seeking client's and local council's approvals over schematic designs, manage the project effectively, and administer construction-related issues.

All things considered, detailed retail construction drawing sets and specifications not only benefit designers, architects, and contractors but also reduces construction change-orders, which effectively leads to on-time and within-budget project delivery for relatively small-scale retail construction projects using design-bid-build delivery method.

Tuesday, 26 August 2014

Key Traits of an Effective Architectural BIM Support Partnership

In the building design and construction industry, construction documentation forms an important phase between design development and on-site construction administration. In scenarios where architectural practices decide to transition to object-oriented BIM modelling or there is a need to turn around more projects than can be executed by the internal team, firms decide to look for experienced architectural BIM modelling support partners. Whilst such collaboration models provide cost-effective and high-quality access to CAD and BIM expertise, issues can crop up if your support partner does not have appropriate processes and quality standards in place.

As a result, to make the BIM outsourcing engagement work successfully for your architectural practice, there is a need to ensure that the following are in place:

A Dedicated Point of Contact

A dedicated point of contact in the form of a project manager serves as an integral link between your firm and the outsourcing partner. He/she liaises with the architectural firm’s representative (in most cases the project’s chief architect or the design head) to gather and analyse in detail the project’s requirements, construction specifications, and CAD/BIM standards followed.

Well Defined Project Flow

After a comprehensive needs analysis by the project manager, a clear process should be in place to break down the client’s 3D architectural modelling and construction documentation requirements into a tangible project scope. The scope then dictates the roles/responsibilities and the turnaround schedules of each of the senior team members, including team leader, senior BIM technicians, senior CAD technicians, BIM coordinators, and draftsmen.

Production Planning Roadmap

Depending on the resources at hand, the project manager along with team leader should map out a timeline for documentation delivery. Traditional CAD-based processes necessitate clear guidelines pertaining to drawing scales, dimensions, symbols, targets, annotations, and abbreviations. Modern BIM-enabled workflows also require establishment of protocols and standards for master model worksharing, data exchange, library creation, and model coordination.

Multi-Tier Quality Checks 

Rigorous quality check protocols are an integral part of delivering accurate standards-compliant architectural BIM modelling and construction documentation support to architectural practises. The first tier entails draftsmen involved to cross-review their peer’s work followed by an inspection by the team leader on local models. The final tier of quality check phase requires the project manager to undergo a detailed review of the master model. Once the central master model gets a go-ahead from the project manager, it is used to extract construction documents. Finally, the construction documents are reviewed to check whether they fulfil the construction specifications set by the client.

Ability to Coordinate Online with Clients

The success of your outsourcing partnership will also depend on the associate firm’s ability to hold regular update and doubt-solving virtual sessions. Focussed meetings ensure both you as well as those on the outsourcing team are on the same page as far as the project progress is concerned.
To know about how our architectural BIM modelling and proven BIM/CAD outsourcing model, contact us.

Wednesday, 23 July 2014

Residential Architectural Renderings: How they Benefit Distinct Stakeholders?

In the realm of homebuilding construction, though residential architectural renderings are predominantly used to pre-sell housing projects during the post-design phase, there are other key facets to it that are often overlooked. The residential project stakeholders use different forms of architectural visualisation to serve distinct needs. On the one hand, homebuilders may use low-detail birds-eye rendered views and other perspectives to study how the essential components of a project relate to its context. Alternatively, building companies may partner with AEC visualisation firms providing photorealistic architectural 3D rendering services to create high-detail fly-through animations of the project’s exteriors and interiors complete with surroundings, furniture, wall textures, natural/artificial lights and fixtures.

Right from concept planning and designing to the post-design and pre-construction phases, 3D rendered walkthroughs and stills in the residential construction domain provide value to the three distinct participants (potential residents, contractors, and homebuilders) involved.

Offers Clarity to Potential Users

Architectural 3D renderings clearly benefit end users as well as potential buyers in a number of ways. Firstly, they gain in-depth clarity about the project which is not always possible with 2D CAD floor plans and section drawings. Secondly, they can readily assess the pros and cons of alternative design options using detailed virtual walkthroughs even before any actual construction work kicks off on-site. Lastly and more importantly, residential architectural renderings (both interiors and exteriors) help the end users conveniently identify and estimate the cost implications of each of the design choices. As a result, detailed 3D scenes allow potential users to study how distinct components relate to their respective contexts whilst avoiding unpleasant and costly changes during construction.

Serves as Design Validation Tool for Contractors

Residential architectural renderings help contractors validate design before actual construction begins. The 3D photorealistic scenes, including both stills and videos, offers a real insight to the contracting team on the spatial coordination of distinct architectural elements. Whilst floor plans, section drawings, services drawings, and construction documents are essential, detailed 3D visualization ensure the homebuilder, the contractor and the end user are all on the level playing field as far as understanding the form, function, and scope of the residential project. In addition to this, 3D rendered assets can expedite the local regulatory approval process.

Helps Homebuilders Convey and Promote Detailed Concept 

The most important gap that architectural renderings can fill is that they allow homebuilders to convey accurate, precise, and detailed design intent to the end users. Serving as a key tool to promote, exhibit, and market their design concepts, 3D renders can add life to otherwise technical floor plans and monochrome perspective views by adding important facets that include textures, finishes, interiors, landscaping, and contextual and a humanistic environment. Accordingly, homebuilders can communicate and market their project details in a life-like photorealistic manner whilst the end users can navigate through finer nuances and request changes or clarifications before on-site construction commences.

For more information about our residential architectural 3D rendering services, kindly contact us

Monday, 2 June 2014

Why Residential Architectural Rendering is Paramount for Homebuilders?

With the homebuilding industry becoming fiercely competitive in developed markets, the expectations from both the demand side (potential owners) as well as the investor side (financial institutions) have significantly changed. As return on investment is crucial for both the owners and the funding institutions, homebuilders walk on a tightrope. In addition to this, homebuilding companies are required to procure permits and approvals from construction and local planning authorities. In such a scenario, residential architectural 3D renderings are a boon to homebuilders in addition to adding value to the potential owners and investors.

Following are the multifaceted benefits that rendered 3D stills and walkthroughs offer homebuilders during the different stages of a residential construction project:

1.  Pre-Construction Planning

In the homebuilding industry, the pre-construction planning stage requires evaluating attractive markets, identifying sites, and securing investment from potential investors and funding institutions. As a result, both conceptual and detailed architectural 3D renderings can help homebuilders communicate the viability of the project to investors. This also gives potential investors a thorough insight into the project and a greater decision-making ability.

2.  Design Stage

Known as the most critical phase, the design stage starts with concept ideation and ends with construction documentation submittals to seek necessary approvals and permits from local planning authorities and regulatory bodies. Homebuilder’s major responsibilities include preparing conceptual sketches, developing detailed floor plans, sections, elevations, perspective images, and construction drawing sets. In addition to mandatory construction documentation, detailed 3D renderings complete with lighting, materials, landscaping, environment, interiors, and furniture can empower residential builders to communicate complex concepts to planning authorities and expedite the approval process. Moreover, the potential clients get a life-like visualisation before construction begins.

3.  Construction Stage

At this stage, the finalised design is handed over to the contractor to initiate the build process. A detailed rendering at this stage helps homebuilders and potential clients administer the construction and check whether the build is in line with the proposed design. Furthermore, residential architectural 3D renderings help discover design inconsistencies and resolve them. These renderings, in combination with construction documents, act as a yardstick in the hands of homebuilders and clients to assess and review the project’s progress. 

4.  Post-Construction Stage

Once the construction phase is complete, customised interior and exterior renderings can help homebuilders pre-sell their property to clients. Detailed renderings and walkthroughs present potential stakeholders with an all-round visualisation to speed up their decision-making whilst reducing the time-to-market for homebuilders. Compared to 2D floor plans and drawings, photorealistic renderings provide clients with the holistic details needed to choose a property that accurately fits their requirements. 

To summarise, 3D architectural rendering for residential projects can add value to homebuilders during different phases. It can help them instil confidence in funding partners and investors; expedite their approval seeking process from local planning authorities; assess and review project’s progress vis-à-vis proposed design; and act as a perfect marketing tool to convince potential owners.

For more information about our architectural 3D rendering services, kindly contact us.