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Project-Specific Electric Process Heating

LINSON OIL // Electromagnetic Heating Equipment

Explosion-Proof Electromagnetic Heater / Heating Skid

Electric process-heating equipment based on electromagnetic induction for crude oil, pipelines, tanks and packaged oilfield applications. Each configuration is engineered around the heating duty, electrical supply, fluid conditions, hazardous-area basis and required delivery scope.

Heating Principle
Electromagnetic Induction
Design Basis
Project-Specific
Supply Scope
Unit / Series / Skid
Verification
Inspection & FAT

What It Does

Electromagnetic electric process heating for project-defined duties.

LINSON OIL electromagnetic heating equipment uses electrical power to create an alternating magnetic field. The field induces eddy-current heating in a ferromagnetic heat-carrying component, producing thermal energy for the required process-heating duty.

Depending on the product arrangement, heat can be transferred to oil flowing through the heater or through an engineered heat-transfer medium for tank or vessel applications. Final heater geometry, electrical execution, control logic, protection functions and package boundary are confirmed from the approved project data.

Important engineering basis

Explosion-protection marking is not treated as one universal rating for every order. The applicable hazardous-area classification, equipment marking, electrical components and project documentation must be confirmed for the selected configuration and destination requirements.

How It Works

From electrical input to controlled process heat.

The sequence below describes the electromagnetic-induction principle at a system level. Exact electrical and thermal configuration is confirmed during engineering.

  1. 01 // POWER

    Power & Control

    Incoming electrical conditions and control requirements are defined for the project.

  2. 02 // FIELD

    Induction Coil

    The coil produces an alternating magnetic field around the heating assembly.

  3. 03 // HEAT

    Eddy-Current Heating

    Induced currents generate heat in the ferromagnetic heat-carrying component.

  4. 04 // TRANSFER

    Heat Transfer

    Thermal energy is transferred through the configured process interface or heat-transfer medium.

  5. 05 // PROCESS

    Process Heating

    The process fluid is heated toward the defined operating temperature requirement.

  6. 06 // PROTECT

    Control & Protection

    Temperature control, alarms, interlocks and shutdown logic operate to the approved scope.

Electromagnetic heating principle showing power input, induction coil, magnetic field, eddy-current heating and process heat transfer

Technical Visual

Show the induction path clearly.

Use an approved principle or section drawing that matches the actual heater configuration and shows the induction coil, heat-carrying component, process interface and control/protection boundary.

Electrical Input → Magnetic Field → Eddy Current → Heat Carrier → Process Heat

Typical Applications

Electric heating for field and process duties.

Application suitability depends on fluid behavior, heating duty, available electrical power, hazardous-area basis and installation conditions.

High-Viscosity Crude Heating

Temperature conditioning that can support viscosity reduction, fluidity and downstream handling of heavy or high-pour-point crude when confirmed for the project duty.

Pipeline & Transfer Heating

Heating for oilfield transfer lines and pipelines where low ambient temperature, wax, pour point or viscosity is part of the operating challenge.

Tank & Vessel Heating

Tank or vessel heating arrangements using a project-selected electromagnetic heating configuration and thermal interface.

Cold-Climate Oilfield Service

Heating duties for field installations where maintaining process-fluid temperature and mobility is important to operation.

Wellsite & Gathering Facilities

Electric process-heating equipment for wellsite, gathering and production facilities with coordinated controls and field interfaces.

Integrated Heating Skids

Packaged heating systems combining heater equipment, piping, valves, instruments, controls, electrical components and structural support by scope.

Electromagnetic heater or heating skid applied to oilfield pipeline, crude-oil or field process heating

Application Evidence

Use a real project, field or skid image that matches the electromagnetic-heating application.

Do not use a generic heater photo if the equipment type or hazardous-area execution cannot be verified.

Engineering Inputs

Start with the process duty and electrical basis.

Accurate heater selection requires both process and electrical information. Preliminary data is welcome; open points can be clarified before the technical proposal is finalized.

Send Your Available Data →

01

Flow & Temperatures

Normal/minimum/maximum flow, inlet temperature, target outlet temperature and operating profile.

02

Pressure

Operating/design pressure, allowable pressure drop and relevant mechanical design conditions.

03

Fluid Properties

Composition, density, viscosity, water content, pour point, corrosive components and solids where relevant.

04

Heat Duty

Required thermal duty if known, continuous/intermittent operation, startup condition and control range.

05

Electrical Supply

Voltage, frequency, available capacity, earthing basis and any owner electrical specifications.

06

Hazardous Area

Area classification, gas group, temperature-class requirements and destination-market/project standards.

07

Control Philosophy

Temperature control, local/remote operation, alarms, interlocks, shutdowns and communication interfaces.

08

Site & Package Limits

Ambient conditions, installation location, footprint, transport limits, tie-ins, access and required skid boundary.

Main Configuration

Electrical, thermal and mechanical scope engineered together.

Component selection and final equipment list are configuration-dependent and subject to the approved technical basis.

01 // HEATER BODY

Process Heating Body

Mechanical pressure boundary, process connections and heater arrangement configured for the specified duty.

02 // INDUCTION

Coil & Heat Carrier

Induction coil and ferromagnetic heat-carrying arrangement selected around the required heating configuration.

03 // CONTROL

Electrical Control Cabinet

Power switching, temperature control, electrical protection, terminals and control components by project scope.

04 // PROTECT

Protection & Interlocks

Temperature protection, leakage protection, alarms and shutdown logic are coordinated with the selected system configuration.

05 // PROCESS

Piping & Instruments

Process piping, valves, temperature/pressure instruments and field interfaces can be included within the agreed package boundary.

06 // STRUCTURE

Skid & Integration

Structural base, supports, cable/interface provisions and packaged arrangement for transport and site installation where required.

Electrical & Hazardous-Area Basis

Explosion protection must match the ordered configuration.

Hazardous-area execution is treated as an engineering input rather than a generic marketing label. Final equipment marking and documentation should be checked against the selected model, area classification and project specification.

Electrical control cabinet and protection system for an electromagnetic heating package

Power Basis

Confirm voltage, frequency, available electrical capacity, earthing and upstream protection.

Area Classification

Confirm hazardous-zone basis, gas group, temperature-class requirement and owner/site standards.

Protection Functions

Company product materials describe leakage protection and dual over-temperature protection; final functions are confirmed for the ordered system.

Control & Documentation

Control cabinet execution, alarms, interlocks, drawings, electrical documents and project records are aligned with the agreed scope.

Specification Note

Do not assume one fixed Ex marking, heater power, efficiency or energy-saving percentage without confirming the exact model and project data.

Supply Options

Individual heater, series arrangement or integrated heating skid.

The delivery boundary can be adapted to the project. Company product materials include single-unit and multi-unit series arrangements; wider skid integration can be engineered where field interfaces need to be coordinated before shipment.

Compare Oilfield Heating Systems →

Option 01

Individual Heater

A defined heater package for integration into the client’s existing process and electrical system.

Option 02

Multi-Unit Series Arrangement

Multiple electromagnetic heating units can be evaluated in series where the duty and project design require a combined arrangement.

Option 03

Integrated Heating Skid

Heater, piping, valves, instrumentation, electrical cabinet, controls, structural steel, testing and documentation integrated to the agreed boundary.

Manufacturing, Testing & FAT

Mechanical and electrical scope verified before delivery.

Execution can cover fabrication, electrical assembly, instrumentation, inspection, applicable testing, functional verification, documentation and export preparation according to the approved order scope.

LINSON OIL electromagnetic heater fabrication, electrical assembly, skid integration or factory acceptance testing
Use media that matches the actual manufacturing, electrical assembly, inspection or FAT activity.
01 / ENGINEERING

Technical Clarification

Heating duty, electrical basis, hazardous-area requirements, drawings, controls and package interfaces are reviewed before execution.

02 / FABRICATION

Mechanical & Electrical Assembly

Heater fabrication, welding/machining as applicable, cabinet assembly, instrumentation, piping and skid integration by scope.

03 / INSPECTION

Inspection & Testing

Material/dimensional checks, NDT and pressure testing where applicable, plus electrical, protection and instrumentation checks to the agreed plan.

04 / FAT

Functional Verification

Agreed FAT activities, documentation review, preservation and export preparation support shipment readiness.

Technical FAQ

Questions before specification.

For a technical proposal, send the process duty together with the available electrical and hazardous-area information.

How is electromagnetic heating different from resistance heating?
The electromagnetic system uses an induction coil to create an alternating magnetic field. Eddy currents generated in a ferromagnetic heat-carrying component produce the heat. Final system architecture still depends on the application and ordered configuration.
Is one explosion-proof marking used for every heater?
No. The applicable marking must be confirmed against the selected equipment configuration, hazardous-area basis, gas group, temperature-class requirement and project documentation.
Can the heater be used for high-viscosity crude or cold-climate pipelines?
These are among the applications described in LINSON OIL product materials. Suitability and required heating capacity still depend on the actual crude properties, flow, temperatures, heat loss, pipeline or vessel conditions and available electrical power.
Can multiple units be installed in series?
Yes. Company product materials describe both single-unit operation and multi-unit series arrangements. The required number, electrical capacity, controls and process layout should be determined from the project duty.
Can LINSON OIL supply a complete heating skid?
Yes. Depending on the agreed scope, the heater can be integrated with piping, valves, instrumentation, electrical/control components, structural steel, testing and project documentation.

Request for Quotation

Discuss your electric heating duty.

Send your process conditions, electrical basis, hazardous-area information, P&ID, data sheet or preliminary scope. Our team will review the available data and identify the technical clarification points required for quotation.

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