Conforme aux normes internationales
Vertical Spherical Storage Tanks
Catégorie : Réservoir de stockage vertical
The spherical storage tank is the most efficient geometry for high-pressure containment. By distributing internal stress uniformly across the entire surface, these tanks can handle significantly higher pressures than cylindrical designs with the same wall thickness. They are the global industry standard for the bulk storage of liquefied gases (LPG,<span…
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Product Structure
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Spherical Shell Plates: Precision-pressed “orange peel” or “soccer ball” patterned steel segments, double-groove welded to form a perfect sphere.
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Equatorial Support Columns: High-strength tubular steel legs attached at the sphere’s equator, designed to accommodate thermal expansion and contraction.
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Internal Access Infrastructure: Includes internal ladders and manways for inspection, often featuring a central pipe for instrument routing.
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Top & Bottom Manways: Heavy-duty, pressure-rated ports for maintenance and emergency access.
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Fireproofing & Insulation: Columns are typically encased in fire-resistant materials, and the shell can be outfitted with polyurethane foam or perlite insulation for cryogenic service.
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Safety Relief System: Dual high-capacity pressure relief valves (PRVs) and vacuum breakers to prevent over-pressurization.
Product Advantages
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Optimal Stress Distribution: The spherical shape eliminates “weak spots” or corners, allowing for thinner walls compared to cylindrical tanks at the same pressure rating.
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Minimal Surface Area: A sphere has the smallest surface-area-to-volume ratio, which significantly reduces the rate of heat gain from the environment (critical for refrigerated storage).
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Space Efficiency: Spheres provide massive storage volumes (up to 10,000m³ or more) while occupying a much smaller ground footprint than a battery of smaller horizontal tanks.
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Reduced Evaporation Loss: The high-pressure design allows the product to remain in a liquid state at ambient temperatures, eliminating the need for constant boil-off gas (BOG) management.
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Long-Term Structural Integrity: Designed with a high safety factor against seismic activity and wind loads due to the aerodynamic shape and symmetrical support system.
Material & Specifications
| Feature | Specification |
| Primary Materials | High-tensile Carbon Steel (Q345R, ASME SA516 Gr.70) or Low-temp Alloy Steel |
| Design Codes | ASME Section VIII Div. 1/2, GB/T 12337, or API 620 |
| Manufacturing Method | Factory-pressed segments / On-site professional welding |
| NDT Testing | 100% Radiographic (RT), Ultrasonic (UT), and Magnetic Particle (MT) testing |
| Volume Capacity | 50m³ to 10,000m³+ |
Technical Parameters
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Working Temperature Range: -50°C to +50°C (Specialized cryogenic designs available for LNG/Oxygen down to -196°C).
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Design Pressure: Typically ranging from 0.5 MPa to 3.0 MPa (up to 30 bar).
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Corrosion Allowance: 1.0 mm to 3.0 mm depending on the aggressiveness of the stored medium.
Application Scenarios
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LPG & LNG Terminals: Bulk storage of Liquefied Petroleum Gas (Propane/Butane) and Liquefied Natural Gas.
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Petrochemical Plants: Storage of Ethylene, Propylene, Ammonia, and Vinyl Chloride Monomer (VCM).
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Refineries: Management of pressurized refinery gases and intermediate volatile feedstocks.
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Industrial Gas Facilities: High-pressure containment of Oxygen, Nitrogen, and Hydrogen for industrial distribution.
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Chemical Logistics: Maritime and inland hubs for the transshipment of volatile liquid chemicals.
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