Venue Envelope System
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- Product Description
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Systematic exposition
This system employs thermal break technology to create a highly efficient and energy-saving enclosure structure that eliminates both linear and point thermal bridges. It encompasses components such as exterior walls, doors and windows, curtain walls, roofs, and daylighting systems, and integrates multiple functions including thermal insulation, waterproofing, vapor barrier, exterior finishes, interior finishes, sound absorption, and condensation prevention. It is a high-performance, integrated enclosure system. It boasts excellent features such as high air tightness, water tightness, superior thermal insulation, condensation prevention, sound absorption, and exceptional durability. This system is suitable for the exterior walls and roofs of new construction and renovation projects in venues such as ice arenas, swimming pools, water parks, airports, high-speed railway stations, large-scale sports facilities, industrial parks, and office buildings.
Structural hierarchy
The structural layers of an energy-efficient building envelope system include the exterior wall’s main structure, sound-absorbing membrane, decorative panels, vapor-barrier membrane, insulation layer, furring strips, thermal insulation spacers, breathable membrane, internal thermal insulation filling, and exterior finishing materials, among others.
* The indicated structural hierarchy can be adjusted or optimized according to the owner’s requirements and the project’s actual design plan.
Core Advantages
1. All-Region Climate-Efficient Buildings: Adaptable to various environmental conditions, delivering energy efficiency and comfortable experiences across all climate zones.
2. Outstanding spatial efficiency: Integrates multiple functions—including thermal insulation, decoration, and structural protection—eliminating the need for additional functional layers. This reduces wall thickness by approximately 30%, thereby increasing the usable floor area of the building.
3. Rich decorative options: The facade decoration can fully meet the architectural design requirements, is compatible with various dry-hanging and coating-based decorative materials, and supports the installation of photovoltaic systems.
4. Significantly shortened construction period: Modular design and factory prefabrication, combined with digital production accuracy up to ±0.5mm, enable easy installation and reduce the construction period by approximately 40%.
5. Structural Safety and Ultra-Long Durability: The module’s main body and core load-bearing components are made of high-quality steel, backed by a 50-year manufacturer’s warranty, ensuring safety and reliability throughout the entire lifecycle.
6. Excellent overall cost-effectiveness: The integrated system features a streamlined, deeply optimized design that reduces the complexity of coordination among different disciplines, minimizes on-site auxiliary labor and materials, and enables precise control over overall project costs.
7. Industry-leading energy efficiency: Featuring a uniquely designed low-thermal-bridge structure, combined with high-performance windows, doors, and curtain walls, our products exceed current stringent standards such as passive house and zero-energy building requirements.
8. Transportation: Module dimensions can be customized according to transportation requirements, and the modules can be loaded into standard sea freight containers, enabling efficient global logistics and distribution.
Technical indicators
Energy-saving indicators of the Shinaida modular prefabricated energy-efficient building system Thermal Performance Limits
K[W/(㎡·K)]
Exterior wall Roof Window Curtain wall window Glass curtain wall ≤0.10 ≤0.10 ≤0.80 ≤0.80 ≤1.20 Building airtightness n50 ≤ 0.6/h Building watertightness Level 6 (ΔP ≥ 700 Pa) Acoustic Performance of the Enclosure in the Shinaida Modular Prefabricated Energy-Saving Building System Integrated module Reverberation time Indoor noise reduction Rainfall noise Indicator 0.8-1.25s 25-35dB ≤6dB Condensation Resistance Performance of the Shinaida Modular Prefabricated Energy-Efficient Building Envelope System Material properties Testing method Unit Numerical value 0° angle water absorption rate FILC in.19 g/m² 1000 45° Angle Water Absorption Rate 800 90° Angle Water Absorption Rate 600 * The indicated indicators and parameters can be adjusted according to the owner’s requirements and the actual design scheme of the project. Energy-saving indicators and acoustic performance can be optimized as needed.
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