Highrise 3D Rendering Designs: CGI for Architectural Company’s Presentations
- 3D Modeling , 3D Rendering , CAD Design
- last updated Feb 24, 2024
This post covers high-rise rendering designs – computer generated images for architectural company presentations. High-rise buildings go beyond the scope of ordinary architectural projects, encompassing a range of complexities from design to construction. Highrise rendering services encompasses more intricacies than standard residential rendering projects. This heightened complexity arises due to the involvement of multiple stakeholders, significant financial risks, and the challenge of obtaining project approval.
Given these factors, your architectural company must present the project flawlessly, ensuring meticulous attention to detail and a comprehensive understanding of all aspects. When undertaking the visualization process for a high-rise project, it is crucial to assess and address all the associated risks carefully. As the responsible architectural company, it is imperative to deliver a presentation of the utmost quality that not only impresses but also showcases the project in its most favorable light.
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Creating a top-notch presentation for a high-rise project is vital for 3D architectural modeling companies . It impresses stakeholders, showcases the project effectively, and convinces clients of its perfect alignment with their needs. In company projects, particularly in developing new high-rise structures, 3D renderings emerge as a game-changer. High-rise projects present unique challenges, many of which can be effectively overcome using the appropriate 3D tools. By leveraging CGI for architectural company presentations, you can enhance your project’s visualization and overcome the hurdles encountered.
What is 3D high-rise rendering?
3D high-rise or skyscraper rendering uses CGI or computer-generated images to create a realistic and lifelike representation of a high-rise project or skyscraper building. It is one type of commercial rendering services that developers and architects use to give prospective investors and buyers a more accurate and close-to-reality idea of what and how the project will be like upon completion.
3D high-rise visualization is helpful for proposed development projects and new construction projects. In the case of new construction, 3D rendering firms that offer 3D high-rise rendering services can use CGI to show how the new skyscraper will fit into and blend with the existing skyline. On the other hand, CGI can come in handy in showing how an older building that will undergo redevelopment will be transformed once new wings or floors are added. Specialized 3D modeling software is often used for 3D skyscraper renderings.
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After creating the building’s basic shape, the software will add more details, including doors, windows, and balconies. Different formats can be used to output the final image, including 3D architectural animation services and 2D images. If your architectural company is in the process of preparing for a presentation for an upcoming high-rise project, or you have plans to bid for a skyscraper project that has always fascinated your team, here are more specific reasons to take advantage of 3D high-rise rendering services:
Showcase the design from multiple angles
First, an architect can get many views when using 3D high-rise rendering to present a new skyscraper project. These include street, close-up, aerial, and worm’s eye views. Each view serves a specific purpose by emphasizing a particular design aspect, including the materials, shape, height, and the like.
- Use an aerial view to showcase how the new building will work with the surroundings. Bird’s eye or aerial view of high-rise renderings portrays the total size of the structure from a distance and captures the surroundings. By looking at aerial CGI, the viewers can see if the concept and its environment are in harmony, given the project and its specific goal.
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These CG images can also come in handy if the high rise is constructed in a place with strict regulations on architectural design. In cases like this, presenting a lifelike architectural CGI is the only means to prove and show visual compliance.
- Use a close-up view for a detailed presentation of materials and design. A close-up view will allow zooming in on the details and present certain design aspects, including terraces, balconies, panoramic windows, and others. With a close-up 3D high-rise rendering, your 3D architectural visualization company can also have a detailed demonstration of your chosen quality materials. Your client will better understand your vision and reach more educated decisions about the project.
- Use street view to offer casual context in real life. This 3D rendering is the view from a person’s eye level on the street. The street view shows how people will see the new building when they enter or pass by its location. It gives your clients visual context to understand the appearance of the skyscraper from future occupants.
- Use a worm’s eye view to appreciate the future structure’s size. The direct opposite of the bird’s eye view, a worm’s eye view, presents the skyscraper from underneath as if the viewer is looking up at the building from a low angle. A worm’s eye view is a great way to showcase skyscrapers because this will emphasize their height and perspective.
You can effectively captivate and impress your client by utilizing a range of CGI views.
Unveil what’s inside the skyscraper
While the exterior of a high-rise building is essential, its interior shouldn’t be taken for granted, either. This is why an architectural company should work with professional 3D high-rise rendering services to take your presentations to a new level. You can also use a photorealistic 3D walkthrough animation or 3D flythrough services to unveil the interior design of the future building. 3D flythroughs enable clients to feel like they are getting a walkthrough of the building in person. This experience is valuable because the building only exists in drawings at this stage.
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Create more impressive presentations with dramatic visual effects
Spice up and give your high-rise rendering an extra unique glow with the addition of visual effects. With the help of CGI rendering, you can use your preferred season and weather. You can also choose a color grading to set the mood for your concept. 3D high-rise rendering artists can also add other effects, like vignettes and lens flares, to further highlight the place and its ambiance. Once you combine all of these, you will get images with an impressive effect that will significantly improve the chance of project success.
Display exterior lighting artistically
Lighting significantly affects how people perceive architecture at night when the surrounding environment becomes dark. It is crucial for massive structures like high-rise buildings with meticulously planned and complex exterior lighting features and systems. An architectural company must be able to show clients every aspect of the architectural design in various lighting conditions. 3D skyscraper rendering can showcase fixtures at various times of the day. 3D architectural rendering services showcase lighting solutions in extensive detail using nighttime and dusk renders. 3D high-rise visualization is a tremendously helpful visual aid that your presentation shouldn’t miss.
Come up with captivating marketing material
Architectural companies can harness the power of 3D high-rise rendering to develop compelling marketing materials. By utilizing this advanced technology, firms can create visually stunning printed brochures or captivating website banner ads, offering prospective investors and buyers an immersive and lifelike glimpse into the future of their projects. Through carefully crafted 3D renderings, these marketing materials vividly showcase the high-rise development’s architectural design, intricate details, and overall aesthetics.
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Realistic visual representations from a 3D presentation design firm enable potential stakeholders to experience the project more tangibly and engagingly, fostering a deeper understanding and connection. Architectural firms can instill confidence and generate heightened interest among investors and buyers by providing visual representations, facilitating informed decision-making, and driving overall project success.
Hire the best 3D rendering services to bring your skyscraper projects to life
3D Photorealistic rendering services provide one of the most effective ways to capture the interest and imagination of your clients. These 3D skyscraper renderings remove the mystery surrounding the end building design. These tools transform concepts into reality, no matter how daring or audacious they may seem, as with larger-than-life high-rise buildings.
Professional 3D high-rise rendering services will showcase every intricacy and detail of your design, emphasize the carefully chosen materials, and present the cautiously curated ambiance of a grand structure. These services understand architectural companies’ struggles when dealing with skyscraper projects and offer ideal 3D skyscraper rendering solutions.
RELATED: Why hire an architectural design service?
With the help 3D rendering tools, your architectural company can expect to receive a plethora of animated and static visuals that will showcase your high-rise concepts in all their glory. 3D high-rise visualization will also allow you to cover each area of the project that your clients might be interested in and curious about.
How Cad Crowd can help
We pride ourselves on having access to a global network of pre-vetted, talented, and experienced freelance designers. Our experts are more than capable of handling your next project and also work with an accuracy guarantee . Choosing a Cad Crowd designer ensures that you work with excellent design talent. You will receive design services from someone skilled at helping you achieve the unified vision you and your customer developed. Contact us for a free quote.
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Highrise Building: The Latest Architecture and News
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- Area Area of this architecture project Area: 138295 m²
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STRUCTURAL SYSTEMS IN HIGH-RISE BUILDINGS
Nov 04, 2019
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STRUCTURAL SYSTEMS IN HIGH-RISE BUILDINGS. KARTHIK.S A-9021 S9 B.ARCH. DISSERTATION. INTRODUCTION AND DEFINITION High rise is defined differently by different bodies. Emporis standards-
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STRUCTURAL SYSTEMS IN HIGH-RISE BUILDINGS KARTHIK.S A-9021 S9 B.ARCH DISSERTATION
INTRODUCTION AND DEFINITIONHigh rise is defined differently by different bodies • Emporis standards- • “A multi-story structure between 35-100 meters tall, or a building of unknown height from 12-39 floors is termed as high rise. • Building code of Hyderabad,India- • A high-rise building is one with four floors or more, or one 15 meters or more in height. • The International Conference on Fire Safety – • "any structure where the height can have a serious impact on evacuation“ • Massachusetts, United States General Laws– • A high-rise is being higher than 70 feet (21 m). Buildings higher than 100m is termed as skyscraper according to emporis. Buildings 300m or higher is termed as super tall and buildings 600m or taller is termed as mega-tall. In this study we shall consider all buildings above 35metres
DEMAND FOR HIGH-RISE BUILDINGS • High rise buildings are becoming more prominent these days due to following reasons • scarcity of land • increasing demand for business and residential space • economic growth • technological advancement • innovations in structural systems • desire for aesthetics in urban settings • cultural significance and prestige • human aspiration to build higher
DEVELOPMENT OF STRUCTURAL SYSTEMS • First Generation1780-1850 • The exterior walls of these buildings consisted of stone or brick, although sometimes cast iron was added for decorative purposes. • The columns were constructed of cast iron, often unprotected; steel and wrought iron was used for the beams; and the floors were made of wood. • Second Generation 1850-1940 • The second generation of tall buildings, which includes the Metropolitan Life Building (1909), the Woolworth Building (1913), and the Empire State Building (1931), are frame structures, in which a skeleton of welded- or riveted-steel columns and beams, often encased in concrete, runs through the entire building. HOME INSURANCE BUILDING EMPIRE STATE BUILDING
DEVELOPMENT OF STRUCTURAL SYSTEMS • This type of construction makes for an extremely strong structure, but not such attractive floor space. The interiors are full of heavy, load-bearingcolumns and walls • Third Generation 1940-present • Buildings constructed from after World War II until today make up the most recent generation of high-rise buildings. • Within this generation there are those of steel-framed construction( core construction and tube construction ), reinforced concrete construction(shear wall), and steel-framed reinforced concrete construction . • Hybrid systems also evolved during this time. These systems make use more than one type of structural system in a building. Structural system classification
TALL BUILDING TRENDS IN 2013 Considering the worlds 100 tallest buildings in 1990: • 80 percent were located in North America. • Almost 90 percent were exclusively office use. • More than half were constructed of steel. In 2013, for the world's 100 tallest buildings: • The largest share (43 percent) are now in Asia. (Only one new 200-m-plus building was built in North America in 2013, compared to 54 in Asia.) • Less than 50 percent are exclusively office use. Almost a quarter are mixed-use and 14 percent are residential. • Almost half were constructed of reinforced concrete and only 14 percent of steel. (The remaining are composite or mixed structural materials.)
TALL BUILDING TRENDS IN 2013 A composite tall building utilizes a combination of both steel and concrete acting compositely in the main structural elements. A mixed—structure tall building is any building that utilizes distinct steel or concrete systems above or below each other. Structural material usage from 1930 to 2013
STRUCTURAL CONCERNS • The primary structural skeleton of a tall building can be visualized as a vertical cantilever beam with its base fixed in the ground. The structure has to carry the vertical gravity loads and the lateral wind and earthquake loads. • Gravity loads are caused by dead and live loads. Lateral loads tend to snap the building or topple it. The building must therefore have adequate shear and bending resistance and must not lose its vertical load-carrying capability. The skyscraper pushes down on into the ground .But when the wind blows, the columns in the windy side stretch apart, and the columns on the other side squeeze together.
STRUCTURAL CONCERNS • Fighting gravity • The weight of the building is supported by a group of vertical coloumns • Each floor is supported by horizontal steel girders running between vertical coloumns. • Curtain wall made of steel and concrete attaches to the outside • Wind resistance • Buildings taller than 10 storeys would generally require additional steel for lateral system. • The most basic method for controlling horizontal sway is to simply tighten up the structure. At the point where the horizontal girders attach to the vertical column, the construction crew bolt: and welds them on the top and bottom. as well as the side. This makes the entire steel super structure move more as one unit, like a pole, as opposed to a flexible skeleton.
STRUCTURAL CONCERNS • For taller skyscrapers, tighter connections dont really do the trick To keep these buildings from swaying heavily. engineers have to construct especially strong cores through the center of the building. • The effects of wind can also be minimized by aerodynamic shaping of the building. Wind tunnel testing considers appropriate loading for overall lateral system design and cladding design, and predicts motion perception and pedestrian level effects. • Use of damping systems as the building becomes taller and the building’s sway due to lateral forces becomes critical, there is a greater demand on the girders and columns that make up the rigid-frame system to carry lateral forces.
CLASSIFICATION OF TALL BUILDING STRUCTURAL SYSTEMS • Can be classified based on the structural material used such as concrete or steel • Structural systems of tall buildings can also be divided into two broad categories: • 1)INTERIOR STRUCTURES • 2)EXTERIOR STRUCURES • This classification is based on the distribution of the components of the primary lateral load-resisting system over the building. A system is categorized as an interior structure when the major part of the lateral load resisting system is located within the interior of the building. Likewise, if the major part of the lateral load-resisting system is located at the building perimeter, a system is categorized as an exterior structure. It should be noted, however, that any interior structure is likely to have some minor components of the lateral load-resisting system at the building perimeter, and any exterior structure may have some minor components within the interior of the building.
INTERIOR STRUCTURES By clustering steel columns and beams in the core, engineers create a stiff backbone that can resist tremendous wind forces. The inner core is used as an elevator shaft , and the design allows lots of open space on each floor EXTERIOR STRUCTURES In newer skyscrapers, like the Sears Tower in Chicago, engineers moved the columns and beams from the core to the perimeter, creating a hollow, rigid tube as strong as the core design, but weighing much, much less.
Seagram building INTERIOR STRUCTURAL SYSTEM • 1)RIGID FRAME • A rigid frame in structural engineering is the load-resisting skeleton constructed with straight or curved members interconnected by mostly rigid connections which resist movements induced at the joints of members. Its members can take bending moment, shear, and axial loads. • Consist of columns and girders joined by moment resistant connections. • Can build upto 20 to 25 floors • 2)SHEAR WALL STRUCTURE • Concrete or masonry continuous vertical walls may serve both architecturally partitions and structurally to carry gravity and lateral loading. Very high in plane stiffness and strength make them ideally suited for bracing tall building • Usually built as the core of the building • Can build upto 35 Floors Shear wall core
3)OUTRIGGER STRUCTURES • The core may be centrally located with outriggers extending on both sides or in some cases it may be located on one side of the building with outriggers extending to the building columns on the other side • The outriggers are generally in the form of trusses (1 or 2 story deep) in steel structures, or walls in concrete structures, that effectively act as stiff headers inducing a tension-compression couple in the outer columns. • Belt trusses are often provided to distribute these tensile and compressive forces to a large number of exterior frame columns. • An build upto 150 floors Shangai World financial centre
EXTERIOR STRUCTURES • 1)Tube system • The tube system concept is based on the idea that a building can be designed to resist lateral loads by designing it as a hollow cantilever perpendicular to the ground. In the simplest incarnation of the tube, the perimeter of the exterior consists of closely spaced columns that are tied together with deep spandrel beams through moment connections. This assembly of columns and beams forms a rigid frame that amounts to a dense and strong structural wall along the exterior of the building. • The different tubular systems are- • 1)Framed tube 2)Braced tube 3)Bundled tube 4)Tube in tube
2)Diagrid systems • With their structural efficiency as a varied version of the tubular systems, diagrid structures have been emerging as a new aesthetic trend for tall buildings in this era of pluralistic styles. • Early designs of tall buildings recognized the effectiveness of diagonal bracing members in resisting lateral forces. • Most of the structural systems deployed for early tall buildings were steel frames with diagonal bracings of various configurations such as X, K, and chevron. However, while the structural importance of diagonals was well recognized, the aesthetic potential of them was not appreciated since they were considered obstructive for viewing the outdoors. • Efficiently resists lateral shear by axial forces in the diagonal members but have Complicated joints Hearst tower , New York
3)Space truss • Space trussstructures are modified braced tubes with diagonals connecting the exterior to interior. In a typical braced tube structure, all the diagonals, which connect the chord members – vertical corner columns in general, are located on the plane parallel to the facades. • However, in space trusses, some diagonals penetrate the interior of the building. • 4)Exo skeleton structure • In exoskeleton structures, lateral load-resisting systems are placed outside the building lines away from their facades. • Due to the system’s compositional characteristics, it acts as a primary building identifier – one of the major roles of building facades in general cases. • Fire proofing of the system is not a serious issue due to its location outside the building line. Bank of China, Hong Kong Hotel de lasAtres
5)Super frame structures • Superframe structures can create ultra high-rise buildings upto 160 floors. • Superframes or Megaframes assume the form of a portal which is provided on the exterior of a building. • The frames resist all wind forces as an exterior tubular structure. The portal frame of the Superframe is composed of vertical legs in each corner of the building which are linked by horizontal elements at about every 12 to 14 floors. • Since the vertical elements are concentrated in the corner areas of the building, maximum efficiency is obtained for resisting wind forces.
Case Study : PETRONAS TOWER Petronas tower is a symbol of national pride and shows the nation's advancement in the word economy and technologies. Conrete was used for its construction mainly because it was easily available and cheap when compared with steel, which was a new material for the builders. The architect successfully incorporated malaysian and Islamic motiffs in the design. The skybridge was an important feature of the design which was implemented later .Petronas tower has 'tube in tube' structural system. The structural members are made with high strength concrete which was cast in site . The perimeter columns are held together with the help of ring beams. The internal core structure is made of concrete shear walls. The building didn't require extra damping systems because the heavy strructual members nade of concrete. Even though no new advncements in technology was made during the project , the available technology was used smartly.
BURJ KHALIFA DUBAI, UAE • The Burj Dubai project is designed to be the centerpiece of the large scale Burj Dubai Development that rises into the sky to an unprecedented height of 800 meters and that consists of more than 160 floors .The decision to build BurjKhalifa is reportedly based on the government's decision to diversify from an oil based economy to one that is service and tourism based.Unlike many super-highrise buildings with deep floor plates, the Y-shape floor plans of Burj Dubai maximize views and provide tenants with plenty of natural light. According to officials, it is necessary for projects like BurjKhalifa to be built in the city to garner more international recognition, and hence investment. The structural system of burjkhakifa was a new system developed for the building. The system is called 'butressed core' . In this system the lateral loads and gravity loads are shared equally between the interior core and perimeter structural systems linked by the link beam which makes the structure super strong.
BURJ KHALIFA DUBAI, UAE The image shows the structural systems employed in the building, the blue members are the load carrying concrete wall system, all the wall structures are linked to the core with the help of link beam.
FUTURE TALL BUILDINGS • Nothing could be more stunning than the latest generation of skyscrapers, known as the 'supertalls'.A tower has to be over 300 metres high to qualify as a supertall, but there is no shortage of contenders: at 829.8 metres high, the BurjKhalifa in Dubai is undeniably the world’s tallest building, but it won’t be for very long as the race to build upwards continues around the world. • We are entering the era of the “megatall.” This term is now officially being used by the Council to describe buildings over 600 meters in height, or double the height of a supertall.
CONCLUSION • With the present technology and known materials , it is possible to build more higher and faster. • It is now possible to build skyscrapers so fast using pre- fabricated units that it can lead to environmental problems, stress on resources and overcrowding if not controlled. • To build higher the base of the building will have to be made wider. The bundled tube system was a great innovation and was able to span great heights during it's time , to attain the height of burjkhalifa the bundled tube system will need a bigger base when compared with the buttressed core system. • New improved structural systems and new materials in the future can lead us to even greater heights and more stable buildings. It’s not technology holding buildings back. It’s money.
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Structural System in Resisting the Effect of Lateral Load in High Rise Building
In the structural systems of high rise buildings there are a multitude of structural systems forms, such as twisted, tilted, tapered and free forms. The article describes the characteristics of the diagrid system and its applicability in the construction of tall buildings in relation to other modern construction systems braced tube. This is an attempt to evaluate the effectiveness of this system for G 30 Steel structure.. The characteristics of buildings with very complex geometry and that use the diagrid system are presented. Varun S P | B. S. Sureshchandra "Structural System in Resisting the Effect of Lateral Load in High Rise Building" Published in International Journal of Trend in Scientific Research and Development (ijtsrd), ISSN: 2456-6470, Volume-3 | Issue-6 , October 2019, URL: https://www.ijtsrd.com/papers/ijtsrd28024.pdf Paper URL: https://www.ijtsrd.com/engineering/structural-engineering/28024/structural-system-in-resisting-the-effect-of-lateral-load-in-high-rise-building/varun-s-p
105 views • 5 slides
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Clocktower Center high-rise proposed for…
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Clocktower center high-rise proposed for downtown santa cruz, proposed project is 18 stories.
SANTA CRUZ — The Santa Cruz Town Clock could be overshadowed in the coming years by an 18-story mixed-use high-rise building dubbed Clocktower Center by local development firm Workbench, which submitted plans for the project, and an eight-story alternative building in early March.
“At Workbench as a whole, we really have a focus on creating more housing,” said Workbench founder and President Tim Gordin. “We have a passion for that coming through experience — seeing people move away and our homeless population increase due to lack of housing — the inequalities that we see in housing for people trying to stay in a place, or get a new place. It’s such a challenge and it’s something we’re passionate about solving. Clocktower Center is another iteration of one solution to this problem and our goal there is to create, not just a project that can house people, but also a place that’s walkable, sustainable and nature-infused, kind of urban living experience.”
The plans for both the 260-unit, 18-story building and the 174-unit, eight-story building have been in the works since last year, according to Gordin.
He said that although he and the Workbench team weren’t worried about the outcome of the city’s March 5 election in regard to Measure M and the high-rise project, but didn’t want to submit the project plans to the city’s Planning and Community Development Department during the election season as to avoid confusion. The pre-applications for the 18-story and eight-story projects were handed over to the city on March 4.
“I didn’t want to cause an unneeded uproar beforehand and confusion,” said Gordin. “So our timing kind of aligned anyway, where we were submitting around that time.”
Measure M would have had no effect on the 18-story Clocktower Center project even if the initiative passed, as the developers are taking advantage of state density bonus laws to reach such great heights and the project requires no changes to the city’s current general plan or zoning ordinances, so it would not have triggered a citywide vote under the language of the now-failed ballot initiative even if it passed.
The 18-story version of the U-shaped center is approximately 200 feet high, 279,480 gross square feet and would span two parcels — the site of the former Santa Cruz County Bank and the adjacent parcel that contains the Rush Inn and real estate office. The average size of the 260 housing units in the building, which would have a mix of one, two and three-bedroom units, is about 400 gross square feet, according to the project plans.
“We’ve gone through 20-plus design options as we’ve gone through this process to land at the layout we currently have,” said Gordin. “The goal is to really maximize natural light in the building and make a building that can fit the amount of units that are allowed as well as creating something that hopefully stands the test of time and stands on its own for being a beautiful design.”
The ground floor of the 18-story project contains a parking garage, which would house commercial and residential parking spaces, a commercial space with Pacific Avenue frontage and a residential lobby, alongside amenities for residents and utilitarian purposes such as a trash room. The upper floors of the building contain residential units, additional resident amenities and bicycle storage, among other features. Gordin mentioned that he would also like to have a public commercial use on the rooftop of the building.
The building is intended for people seeking “a car-free lifestyle,” according to the Workbench website , and the 260-unit building with about 11,100 square feet of commercial space would feature 78 total automobile parking spaces with 64 standard spaces, four handicapped-accessible spaces and 10 spaces intended for electric vehicles.
“Our developments are typically geared toward alternative means of transportation,” said Gordin. “We do believe that building densely in transit-oriented areas can reduce the number of cars on the road and global greenhouse gas emissions, ease the need for maintenance and upkeep of infrastructure, those kinds of things and this project is right in that same vein.”
Gordin mentioned that because of AB 2097 , Workbench does not have to include any automobile parking, save the handicapped-accessible and electrical vehicle components, but it wanted to include some parking for residents and those visiting the commercial spaces.
The increased size of the building is made possible through the state’s density bonus laws, such as AB 2345 and AB 1287 , which allow developers certain concessions or waivers to ignore certain local building standards if the project’s base number of units includes a certain percentage of lower-income housing units or if the building is within a certain proximity to a transit center, among other criteria.
The city of Santa Cruz currently has an inclusionary rate of 20% and Gordin and the Workbench team have committed to providing 30% of the units in the Clocktower Center project as affordable units, which provides additional concessions under the law. Because the 30% applies to the base plans for the project, which is 130 units, the 260-unit building would have 40 units set aside for those with low income.
Gordin said that the building to a greater height is really about fitting more units into the limited space, and the more units in the building, the less the cost to the renter, and are “affordable by design.”
“Our focus is really creating housing and as much of it as we can to help solve our housing crisis,” said Gordin. “The height is a little bit of a byproduct of creating a project that works. It could be 18 (stories). It could be 14. It’s something that we’re still figuring out.”
Gordin mentioned that this year Workbench has submitted 10 project applications to the city, which equates to 16.5% of the housing required in the current Regional Housing Needs Allocation cycle.
“We’re working hard to try and create some housing and hopefully make this place a little more affordable for everyone,” said Gordin.
Workbench is currently exploring feasibility and investment models for the projects before submitting official applications to the city, which Gordin foresees happening in the next few months.
For information, visit cityofsantacruz.com .
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WATCH: Water gushes from Manhattan high-rise
No injuries were reported, but it was quite a spectacle on 42nd street, by nbc new york staff • published april 4, 2024 • updated on april 4, 2024 at 8:50 pm.
Water was seen pouring from the side of a Manhattan high-rise Thursday.
The FDNY said it got a call around 12:15 p.m. about a water leak from a building on Eighth Avenue and West 42nd Street. Video posted to the Citizen app shows what looked like a geyser erupting from the side of the building.
No injuries were immediately reported.
The water had stopped flowing by the time News 4 cameras got to the scene around 12:30 p.m.
Get Tri-state area news and weather forecasts to your inbox. Sign up for NBC New York newsletters.
The Department of Buildings says it was not called to the scene.
A spokesperson for the building’s developer tells NBC New York the DOB was already on scene as part of routine testing.
It turns out the scene was nothing more than a fire pump test being done and the area on the ground was cordoned off from people.
This article tagged under:
Water Spews From High-Rise Building in NYC
Posted: April 5, 2024 | Last updated: April 6, 2024
Water spewed wildly from a high-rise building in New York City on Thursday, April 4, but the cause was not yet clear, local media reported. According to the report, NYFD crews responded to a water leak early Thursday afternoon from the building on Eighth Avenue and West 42nd Street. A spokesperson for the building’s developer told NBC New York the scene was a fire pump test being done and the area on the ground, which was cordoned off from people. Video recorded by Joe Giarratano shows water gush from the building. Storyful has reached out to the FDNY for comment. Credit: Joe Giarratano via Storyful
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1 killed, 2 hospitalized after crane section falls from a Florida high-rise
FORT LAUDERDALE, Fla. — One person was killed and two others were hospitalized Thursday afternoon when a section of crane fell from a building in downtown Fort Lauderdale, officials said.
Crews were in the process of “stepping the crane” during the construction of a high-rise building when a section being prepared to increase the crane’s height came loose, Fort Lauderdale Fire Rescue Chief Stephen Gollan said during a news conference. A construction worker fell with the crane section, causing fatal injuries, officials said. The crane itself remained secured to the building.
The crane section landed on a nearby bridge, damaging at least two vehicles, Gollan said. A man and a woman who had been on the ground were taken to a nearby hospital, where they were listed in stable condition. Another person was treated at the scene and refused transport to the hospital.
The bridge was damaged by the falling crane section, meaning the roadway will be closed indefinitely until it’s repaired. The river that runs under the bridge was also closed to marine traffic.
Officials didn’t immediately know what caused the crane section to fall. The Occupational Safety and Health Administration and Fort Lauderdale Fire Rescue will investigate.
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1 killed, 2 others hospitalized after crane section falls from a South Florida high-rise
One person was killed and two others were hospitalized Thursday afternoon when a section of crane fell from a building in downtown Fort Lauderdale, officials said.
A construction worker was killed and two people were taken to the hospital after a portion of a crane dropped onto the Southeast Third Avenue bridge over the New River in downtown Fort Lauderdale, Fla., Thursday afternoon, April 4, 2024. (Carline Jean/South Florida Sun-Sentinel via AP)
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The facade of a building under construction is damaged after a portion of a crane dropped onto the Southeast Third Avenue bridge over the New River in downtown Fort Lauderdale, Fla., Thursday afternoon, April 4, 2024. A construction worker was killed and two people were taken to the hospital, authorities said. (AP Photo/Daniel Kozin)
A construction worker was killed and two people were taken to the hospital after a portion of a crane dropped onto the Southeast Third Avenue bridge over the New River in downtown Fort Lauderdale, Fla., Thursday, April 4, 2024. (AP Photo/Daniel Kozin)
People leaving the Broward County Courthouse stop to look at part of a crane that dropped onto the Southeast Third Avenue bridge over the New River in downtown Fort Lauderdale, Fla., Thursday afternoon, April 4, 2024. (Carline Jean/South Florida Sun-Sentinel via AP)
FORT LAUDERDALE, Fla. (AP) — One person was killed and two others were hospitalized Thursday afternoon when a section of crane fell from a building in downtown Fort Lauderdale, officials said.
Crews were in the process of “stepping the crane” during the construction of a high-rise building when a section being prepared to increase the crane’s height came loose, Fort Lauderdale Fire Rescue Chief Stephen Gollan said during a news conference. A construction worker fell with the crane section, causing fatal injuries, officials said. The crane itself remained secured to the building.
The crane section landed on a nearby bridge, damaging at least two vehicles, Gollan said. A man and a woman who had been on the ground were taken to a nearby hospital, where they were listed in stable condition. Another person was treated at the scene and refused transport to the hospital.
The bridge was damaged by the falling crane section, meaning the roadway will be closed indefinitely until it’s repaired. The river that runs under the bridge was also closed to marine traffic.
Officials didn’t immediately know what caused the crane section to fall. The Occupational Safety and Health Administration and Fort Lauderdale Fire Rescue will investigate.
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Definition of High-Rise Building. A high-rise building is a tall structure, typically with multiple floors, specifically designed for residential or commercial purposes. They are often defined as architectural structures that stand taller than average buildings, usually having more than 12 stories.
The selection of case studies for this research prioritised high-rise academic laboratory buildings due to their complex building elements and design challenges (Shakir et al., 2021), particularly ...
The country's new construction rules dictate that skyscrapers taller than 150 meters (490 ft.) will be strictly limited, and those higher than 250 meters (820 ft.) will be banned for areas with ...
high-rise building, multistory building tall enough to require the use of a system of mechanical vertical transportation such as elevators. The skyscraper is a very tall high-rise building.. The first high-rise buildings were constructed in the United States in the 1880s. They arose in urban areas where increased land prices and great population densities created a demand for buildings that ...
Stories about the architecture of high-rise buildings including residential towers and office buildings below 150 metres tall.
This post covers high-rise rendering designs - computer generated images for architectural company presentations. High-rise buildings go beyond the scope of ordinary architectural projects, encompassing a range of complexities from design to construction. Highrise rendering services encompasses more intricacies than standard residential rendering projects. This heightened complexity arises due ...
Austin -based office HKS announced the design of the Wilson Tower, a high-rise of 315 meters in Texas' capital featuring 80 floors, 450 units, outdoor terraces, and gardens. The tower will be ...
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INTRODUCTION AND DEFINITIONHigh rise is defined differently by different bodies • Emporis standards- • "A multi-story structure between 35-100 meters tall, or a building of unknown height from 12-39 floors is termed as high rise. • Building code of Hyderabad,India- • A high-rise building is one with four floors or more, or one 15 ...
HIGH RISE BUILDING - Free download as Powerpoint Presentation (.ppt / .pptx), PDF File (.pdf), Text File (.txt) or view presentation slides online. The word "skyscraper" originally was a nautical term referring to a small triangular sail set above the skysail on a sailing ship. With a population of 6100people per square kilometer, Hong Kong has built lots of high-rise residential, industrial ...
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The Santa Cruz Town Clock could be overshadowed in the coming years by an 18-story mixed-use high-rise building dubbed Clocktower Center by local development firm Workbench, who submitted plans for…
New Yorkers were told to stay away from high-rise buildings after a rare earthquake struck Manhattan on Friday morning.. The 4.8-magnitude tremor shook the city at 10:23am, with rumbling felt as ...
NEW YORK (PIX11) — A massive stream of water spilled from the side of a Manhattan high-rise building on Thursday, video on Citizen App shows. The incident happened just after 12 p.m. at a ...
Water was seen pouring from the side of a Manhattan high-rise Thursday. The FDNY said it got a call around 12:15 p.m. about a water leak from a building on Eighth Avenue and West 42nd Street.
Water spewed wildly from a high-rise building in New York City on Thursday, April 4, but the cause was not yet clear, local media reported. According to the report, NYFD crews responded to a water ...
Crews were in the process of "stepping the crane" during the construction of a high-rise building when a section being prepared to increase the crane's height came loose, Fort Lauderdale ...
Rare storms with typhoon-like winds have killed at least seven people in China's southern Jiangxi province since the weekend, three of them blown out of their high-rise apartments in their sleep.
Updated 3:31 AM PDT, April 3, 2024. BEIJING (AP) — Violent rain and hailstorms have killed seven people in eastern China's Jiangxi province this week, including three people who fell from their apartments in a high-rise building. Dozens of homes were severely damaged by the storms, which started Sunday, and more than 800 people have been ...
Air conditioners were blown out of high-rises in the city, while more than 2,000 trees were toppled, state media said. China has been hit by a series of extreme weather events in recent years.
Updated 7:50 PM PDT, April 4, 2024. FORT LAUDERDALE, Fla. (AP) — One person was killed and two others were hospitalized Thursday afternoon when a section of crane fell from a building in downtown Fort Lauderdale, officials said. Crews were in the process of "stepping the crane" during the construction of a high-rise building when a ...