API 650 Standard Oil Storage Tanks
API 650 Standard Oil Storage Tanks
Our company specializes in the design and engineering of petroleum storage tanks, manufacturing in strict accordance with API 650 standards—an internationally recognized specification by the American Petroleum Institute for welded steel tanks used in atmospheric and low-pressure environments.
We possess authorized tank design software and advanced engineering capabilities, enabling us to provide end-to-end solutions…

Complies with international standards

Seaworthy reinforcement & anti-corrosion treatment

Third-party inspection supported
Lead time: 15-30 days
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I. Basic Parameters (Tank Basic Attributes)

Tank Type and Dimensions

  • Diameter (inside diameter / outside diameter), total height, effective height (maximum height for media storage);
  • Head type (ellipsoidal, dished, conical, etc.), head height;
  • Number of tanks (to be counted for multi-tank system design).

Design Standards

  • Execution standards (e.g., API 650, GB 50128, ASME, etc.);
  • Design pressure (positive pressure / negative pressure, 0 for atmospheric pressure tanks), design temperature (maximum / minimum media temperature).

II. Process Parameters (Media and Storage Requirements)

Media Characteristics

  • Media name (e.g., crude oil, gasoline, chemicals, water, etc.);
  • Media density (ρ), viscosity, flash point, corrosivity (presence of sulfur, acids, alkalis, etc.);
  • Media volume (total volume, working volume, with safety margin reserved);
  • Filling coefficient (maximum filling ratio for liquid media, e.g., 0.95, to prevent overflow due to thermal expansion).

Process Operation Requirements

  • Inlet / outlet methods (top / bottom feeding, pumping / gravity discharge);
  • Media temperature range (e.g., high temperature in summer, low temperature in winter);
  • Whether mixing, heating / cooling systems (e.g., jacket, coil) are required.

III. Structural Parameters (Tank Body Design)

Tank Wall Structure

  • Tank wall thickness (calculated per API 650, considering corrosion allowance);
  • Tank wall section height, circumferential weld positions;
  • Number and spacing of tank wall stiffeners (required for large tanks).

Support Structure

  • Support type (skirt support, truss support, ground support);
  • Skirt height, diameter, material;
  • Foundation design parameters (ground bearing capacity, settlement requirements).

Accessory Parameters

  • Manholes, nozzles (number, location, pipe diameter);
  • Inlet and outlet pipes (media type, pipe diameter, pressure class);
  • Safety accessories (safety valve, breather valve, level gauge, thermometer, drain outlet);
  • Anti-corrosion coating thickness (e.g., epoxy coating, galvanized layer).

IV. Material Parameters (Material Selection)

Main Materials

  • Materials for tank wall, tank bottom, and head (e.g., Q235B, 16MnR, 304 stainless steel, etc.);
  • Material yield strength (σs), tensile strength (σb), elongation.

Welding Materials

  • Electrode types (e.g., E4303, E5015), wire types;
  • Welding process requirements (e.g., pre-welding preheating temperature, post-welding heat treatment).

Anti-corrosion Materials

  • Anti-corrosion coating types (primer, topcoat), thickness;
  • Cathodic protection system parameters (sacrificial anode, impressed current).

V. Environmental Parameters (External Conditions)

Geographic Environment

  • Seismic intensity of the location (seismic fortification intensity);
  • Wind load (maximum wind speed, wind pressure);
  • Snow load (snow thickness);
  • Soil type (e.g., silty soil, sandy soil), groundwater level.

Other Environmental Factors

  • Corrosive environment (e.g., salt spray corrosion in coastal areas, atmospheric corrosion in industrial zones);
  • Fire risk (proximity to ignition sources, fire protection distance requirements).
8000+
COMPLETED TANK PROJECTS
 
15+
Manufacturing experience
 
121000+
SQ FT FABRICATION SPACE
 
300+
EMPLOYEE OWNERS
 

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