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Equipment Design

ASME · API · PED Certified Design

Equipment Design

Pressure vessels, heat exchangers, reactors, columns, and storage tanks — engineered to international codes with fabrication and lining requirements designed in from the start.

/images/eqd-01.webp — Hero Photo
ASME
U & R Stamps
1000+
Vessels Designed
PV Elite
Primary Platform
3
Code Systems
What We Do

Designed for the code. Designed for the shop floor.

Jasmino's equipment design team engineers pressure vessels, heat exchangers, reactors, columns, and storage tanks to ASME Section VIII, API 650/620, PED, IS 2825, and BS 5500 standards.

Because our designers sit in the same office as our fabricators, every design decision accounts for manufacturing reality — weld access, rolling capacity, head forming limits, and lining geometry requirements.

For equipment requiring rubber or plastic lining, our design engineers coordinate with the corrosion protection team from day one — ensuring nozzle projections, internal access, and surface geometry support flawless lining application.

Pull Quote
“We don't design equipment that someone else has to figure out how to build. We design it — then we build it ourselves.”
— Integrated Design-to-Fabrication
Equipment Types
Pressure VesselsHeat ExchangersReactorsColumnsStorage TanksAgitators
Design Codes
ASME VIII Div 1&2API 650/620PED 2014/68/EUIS 2825BS 5500
Software
PV EliteHTRIANSYSCompressAutoCAD
/images/eqd-02.webp — Design Office
Design Office

Where code meets craft

Jasmino Engineering · Equipment Design Team

Equipment Categories

Engineered to code, designed for manufacturing

Each equipment type follows specific design codes and manufacturing constraints.

PV — Pressure Vessels

ASME VIII Div 1 & 2

Vertical and horizontal vessels, columns, and reactors. Design pressures up to 350 bar, temperatures to 550°C. FEA for complex geometries.

ASME VIIIFEACyclic Analysis
HX — Heat Exchangers

TEMA · HTRI Rated

Shell-and-tube, plate, air-cooled, and jacketed designs. Thermal rating, mechanical design, and vibration analysis under one roof.

TEMAHTRIVibration Analysis
TK — Storage Tanks

API 650 · API 620

Atmospheric and low-pressure storage tanks. Fixed roof, floating roof, and cone roof configurations with seismic and wind analysis.

API 650API 620Seismic
RX — Reactors & Columns

Custom Internals · Lining-Ready

Chemical reactors, distillation columns, absorption towers with internal distribution systems. Designed with lining access geometry.

InternalsDistributionLining-Ready

Designed & delivered

Vessel

Large Pressure Vessel — ASME VIII

Chemical Plant · Middle East

Heat Exchanger

Shell & Tube Bundle — TEMA C

Petrochemical · India

Reactor

Agitated Reactor — Rubber Lined

Fertilizer Plant · Africa

Column

Absorption Column — FRP Internals

Water Treatment · India

Tank

API 650 Storage Tank — 5000m³

Chemical Storage · SE Asia

Design Process

From datasheet to shop-ready drawings

A structured design workflow with built-in manufacturing coordination.

0
Design rework on shop floor
Step 01 — Design Basis & Data Review
Process datasheet review, material selection, code determination. Design basis document issued for alignment.
Step 02 — Mechanical Design Calculations
Shell, head, nozzle, flange, and support calculations per applicable code. Wind, seismic, and operational load cases.
PV EliteCompressFEA
Step 03 — Thermal Rating
HTRI thermal rating for heat exchangers. Optimised for process duty while maintaining mechanical feasibility.
HTRITEMA
Step 04 — General Arrangement Drawings
GA drawings with nozzle orientation, internals, supports, and lifting. Reviewed against fabrication and lining constraints.
AutoCAD3D Model
Step 05 — Detail & Shop Drawings
Fabrication drawings with weld details, bill of materials, and cutting plans. Issued directly to Jasmino's manufacturing division.
BOMWeld Map
Step 06 — Third-Party Approval
Submission to TÜV, BV, Lloyd's, or client-nominated TPI. Drawings revised and stamped for production.
TÜVBVLloyd's
Design Capabilities

Code coverage at a glance

Equipment types and applicable design codes handled in-house.

Equipment TypeASME VIIIAPI 650/620PEDIS 2825
Pressure VesselsFull CapabilityN/AFull CapabilityFull Capability
Heat ExchangersFull CapabilityN/AFull CapabilitySupported
Storage TanksSupportedFull CapabilitySupportedSupported
ReactorsFull CapabilityN/AFull CapabilityFull Capability
Columns & TowersFull CapabilityN/AFull CapabilitySupported

Full Capability = primary | Supported = available | N/A = not applicable

Case Study

316L Reactor Cluster — Design Through Lining

Four agitated reactors designed, fabricated, and rubber-lined for a phosphoric acid plant. Lining access geometry designed into the vessel from the first GA drawing.

4 nos
Reactors Delivered
316L
Material Grade
0
Shop Floor Queries
Process & Plant Design
Piping Design
Equipment Manufacturing

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