Pre-Engineered Multi-Sport Arenas Built to International Standards
We design and construct premium indoor sports stadiums. Utilizing advanced Pre-Engineered Building (PEB) structural steel columns, double-skin insulated roof profiles, draft-free ventilation systems, acoustic controls, and spectator galleries, we build world-class venues.
Building an indoor stadium requires large portal frame steel design, climate control systems, and acoustics for spectators.
Elite International Sports provides turnkey construction of pre-engineered steel sports arenas. Standard masonry structures cannot provide the column-free, high clear spans needed for basketball, volleyball, gymnastics, and handball courts under one roof. Our structural steel framing systems achieve clear spans up to 60 meters, ensuring zero columns on playing courts.
We build our stadiums to meet structural codes (IS 800 and National Building Code guidelines) for safety and accessibility. The roofing features double-skin sandwich panels filled with high-density polyurethane insulation. This dampens heavy rain noise, blocks heat, and lowers HVAC power bills.
Beyond primary steel framing, our stadium systems integrate HVAC draft-free ventilation, acoustical wall soundboards to manage echo, spectator seating structures, and high-lux LED sports lighting. This creates a professional, tournament-ready environment for schools, community clubs, and universities.
High-span steel portal frames with integrated spectator seating and HVAC units.
We manage the entire construction process, from geotechnical soil testing and base foundations to steel frame erection, roof insulation, floor preparation, and lighting layout.
The engineering of a modern indoor stadium begins with structural design. We design the steel frames using specialized design tools, calculating wind load parameters based on local weather records. Foundation design features reinforced concrete pedestal footings anchor-bolted with high-tensile fasteners to secure the main steel columns.
The primary columns and rafters are built-up steel sections fabricated in our quality-controlled factory. Once transported to the site, they are bolted together using high-strength fasteners. This avoids field welding, reducing structural defects. The wall cladding utilizes single or double-skin color-coated galvanized steel sheets.
Sports are highly sensitive to wind currents that affect ball flight. We design the ventilation system using gravity roof ventilators and wall-mounted louvers. This keeps the air fresh without creating strong, targeted drafts over the courts.
High-tensile steel portal frames engineered to carry regional wind and seismic loads, designed for fast onsite assembly.
Column-free portal frame spans up to 60 meters, giving you complete flexibility for multi-court configurations.
Passive continuous ridge ventilators that discharge warm air from the hall naturally, without affecting shuttlecock flight.
Double-skin roofing panels filled with high-density mineral wool, damping rain noise and preventing internal echoes.
Anti-glare LED sports fixtures aligned along the lanes, providing 500-1500 Lux illumination at the court surface.
Mezzanine galleries and side walkways designed for spectator seating, player benches, and equipment storage.
Features a large clear span designed to accommodate basketball, volleyball, badminton, and handball courts in a single layout. Equipped with retractable bleacher seating.
High clear-height steel buildings designed for gymnastics pit equipment or weightlifting platforms. Features heavy acoustic paneling and specialized HVAC climate zones.
Medium-span structures with high clear ceiling heights (9m to 12m). Equipped with side-aligned LED lighting loops to prevent glare during overhead play.
We manage the entire construction process from site inspection to final handover, ensuring every step meets our strict quality standards.
We work with the client to determine court layout requirements, clear height needs, and site boundaries.
We test the soil load capacity and map elevations to design concrete foundation pedestals.
We check site specifications against FIBA/FIVB guidelines, planning clear height and spacing requirements.
We create 3D drawings of the frame layout, sheeting profiles, and access doors.
We draw up the connection details, purlin layouts, anchor bolt positions, and frame dimensions.
We calculate the steel member thickness and wind load parameters to ensure compliance with building codes.
We select high-grade steel, insulated PUF panels, anchor bolts, and DMX-controlled LED fixtures.
We cast the concrete foundation, erect the primary steel columns, assemble roof rafters, and install cladding.
We check the alignment of columns, test the water tightness of roofing seams, and inspect lighting output.
We run a final safety walk-through, checking bolt torque levels, frame paint thickness, and door operations.
We hand over the keys to the new indoor stadium arena, along with structural manuals and warranty documents.
High-tensile steel framing fabricated to exact size under strict quality standards in our factory, reducing field assembly issues.
Double-skin roofing panels filled with PUF/PIR or glass wool insulation, providing acoustic insulation and heat control.
High-density soundboards installed on side walls to absorb high crowd noise levels and control echoes.
Non-electric, wind-driven stainless steel turbofans. These extract hot air from the roof without consuming power.
High-tensile Grade 8.8 bolts. These secure the main columns to the concrete base, resisting strong wind lifts.
High-grade neutral cure silicone sealants used to seal panel seams, ensuring a leak-proof roof.
| Parameter | Value / Specification | Standards Compliance |
|---|---|---|
| Portal Frame Span | 30 meters to 60 meters (clear span column-free) | IS 800:2007 (Steel design) |
| Clear height (center) | 12.5 meters minimum (unobstructed space) | FIBA / FIVB competitive guidelines |
| Primary Steel Material | Grade Q345B structural steel members | ASTM A572 / IS 2062 |
| Roof sandwich panels | 50mm to 100mm PUF core insulation | IS 14246 (sandwich panels) |
| Wind Load Rating | Up to 200 km/h (depending on site location) | IS 875 Part 3 (Wind loads) |
| Floor flatness base | Deviation < 3mm over 3-meter span | BWF / FIBA standard concrete substrate |
| Acoustic Echo Absorption | Noise reduction rating (NRC) > 0.70 | IS 2526 (Acoustics) |
| Lighting Output | 750 Lux (training) to 1500 Lux (competitive events) | EN 12193 Sports Lighting |
| Structural Coating | Epoxy primer + polyurethane finish paint | ISO 12944 (Corrosion protection) |
| Expected Service Life | 30+ Years (Steel framing durability) | Design life guidelines |
Protects the courts from monsoons, wind currents, and summer heat, enabling consistent play year-round.
The PUF core roofing panels damp rain noise and reduce echoes inside, improving communication on courts.
Our layouts satisfy FIBA, FIVB, and BWF tournament requirements, allowing you to host sanctioned matches.
Fitted sports lights direct light downward, preventing direct glare and helping players track ball movements.
The pre-fabricated portal frames are bolted together on site, cutting installation time by 50% compared to RCC structures.
Insulated panels and roof turbofans keep the interior cool, reducing HVAC cooling bills.
Elite competition indoor stadiums require strict compliance with international standards. Our stadium structures are designed and constructed to meet the standards of **FIBA**, **FIVB**, and **National Building Code (NBC)**.
FIBA and FIVB guidelines define dimensions, boundary layouts, clear ceiling heights, and spectator seating parameters. Satisfying these specifications is necessary to host sanctioned national and international tournaments.
Our structural and wall systems are tested by third-party inspectors to ensure compliance with structural codes, providing a safe, high-performance, and tournament-ready stadium venue.
Following a standard maintenance routine preserves the finish and keeps the structural steel framing stable for years.
Checking gutters for debris blockages weekly, inspecting roof sealants, and testing LED light panels.
Checking bolt tension levels on steel columns, evaluating frame paint coatings, and testing roof water tightness.
Upgrading old board structures, repairing wall plaster dents, and modernizing floor sanding and painting.
Our engineers bring over 15 years of experience in structural steel design and PEB stadium construction.
We source steel members and insulated sandwich panels directly from leading certified steel mills.
We handle everything—from excavation and casting to steel frame erection, roofing, lighting, and sports flooring.
Designing the portal frame layout, testing soil bearing values, and planning concrete foundations.
Fabricating steel frames in our factory, casting pedestals, erecting columns, and installing roof sheeting.
Installing sports flooring, setting up LED lights, verifying structural bolt torque levels, and court handover.
Engineered for structural durability, optimal clearance heights, weatherproofing, and competitive player comfort.