Ultra Large Capacity Continuous Diesel Generator

Ultra Large Capacity Continuous Diesel Generator

Ultra Large Capacity Continuous Diesel Generator is engineered for uninterrupted long-hour power supply in industrial facilities, remote projects, and critical infrastructure requiring stable continuous-duty operation.
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Description
Technical Parameters

Product Overview

 

Ultra Large Capacity Continuous Diesel Generator is engineered for uninterrupted long-hour power supply in industrial facilities, remote projects, and critical infrastructure requiring stable continuous-duty operation.

 

Continuous Duty Technical Data

Item

Specification

Power Range

1000kW – 4500kW

Duty Type

Continuous / Prime Power

Rated Voltage

400V / 415V / 480V / 6.3kV

Frequency

50Hz / 60Hz

Engine Speed

1500 RPM / 1800 RPM

Fuel Injection Type

Electronic direct injection

Governor System

Electronic speed governor

Cooling Method

Closed-loop water cooling

Lubrication System

Forced pressure lubrication

Alternator Type

Brushless industrial alternator

Voltage Regulation

AVR automatic regulation

Continuous Load Capacity

100% continuous operation supported

Protection Grade

IP23 / IP44

Starting Method

24V DC electric start

 

Continuous Operation Performance

 

24/7 Prime Power Capability: Designed for continuous operation with industrial-grade engine components and stable thermal control under constant load conditions.


Extended Runtime Fuel Design: Large-capacity fuel supply system supports long-duration operation with reduced refueling frequency.


Low-Speed Heavy-Duty Engine Structure: Optimized engine speed reduces internal wear and improves long-term operational durability.


Stable Output Under Constant Load: Electronic governor maintains stable voltage and frequency during continuous industrial operation.


High-Efficiency Cooling Circulation: Oversized radiator and coolant circulation system improve temperature stability during extended running periods.


Industrial Lubrication Protection: High-capacity oil filtration and forced lubrication system reduce engine wear during continuous-duty applications.

 

Operational Reliability Testing

 

Continuous Load Endurance Test: Generators complete extended runtime testing under continuous load conditions before shipment.


Thermal Stability Verification: Cooling performance and temperature consistency are tested during long-hour operation.


Fuel Consumption Evaluation: Fuel efficiency and injection system performance are verified under different load stages.


Vibration & Noise Inspection: Operational vibration and mechanical stability are tested throughout factory operation cycles.

 

Selected Custom Options

Power & Electrical Configuration

  • Parallel operation synchronization system
  • Medium-voltage output (6.3kV optional)

Environmental Adaptation Package

  • High-temperature cooling upgrade
  • Low-temperature cold start system

Control System Upgrade

  • Deep Sea / ComAp controller options
  • Remote cloud monitoring module

 

FAQ

 

Q: How to determine the correct unit size for a project?

A: Selection is based on total connected load, motor starting current, and expected load factor. For industrial projects, typically a 20–30% capacity margin is reserved for surge demand.

Q: Can the generator operate as the primary power source in off-grid projects?

A: Yes. When configured as prime power with proper fuel logistics and maintenance planning, it can serve as a primary power source for remote industrial sites.

Q: What is the typical delivery form for large-capacity units?

A: Depending on project scale, units are delivered as complete assembled sets or modular split components for on-site installation and lifting constraints.

Q: Is on-site commissioning support available?

A: Yes. Technical support can be provided for installation guidance, system synchronization setup, load testing, and commissioning validation.

Q: What kind of load conditions must be considered in design stage?

A: Motor-heavy loads, step load variations, and non-linear loads (such as rectifiers or converters) must be evaluated during system design to ensure stable operation.

Q: How is system reliability ensured in long-term industrial use?

A: Reliability depends on correct sizing, proper ventilation design, fuel quality control, and scheduled maintenance planning based on operating hours and load intensity.

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