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WOODWARD

Woodward 8200-1312 Turbine Control Unit

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    Warranty: 365 days

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Woodward 8200-1312 Turbine Control Unit Product Details Page

1. Product Overview

Woodward 8200-1312 is a precision-focused turbine control unit built to optimize the performance, safety, and reliability of industrial gas and steam turbines. It integrates advanced speed regulation algorithms, load management logic, and built-in safety interlocks—all designed to adapt to dynamic operating conditions in high-demand sectors. Compliant with global standards (ISO 8528, API 612) and compatible with Modbus RTU/TCP protocols, it seamlessly connects to on-site sensors and control networks, making it a critical component for minimizing downtime and ensuring consistent turbine operation.

2. Key Technical Specifications

ParameterDetails
Model Number8200-1312
Product TypeTurbine Control Unit
Speed Control Range100–10,000 RPM
Steady-State Control Accuracy±0.05%
Input SignalsMagnetic speed pickup (0.5–30 V AC), 4–20 mA load/pressure signals
Output Signals4–20 mA (fuel valve actuation), relay-based safety interlocks
Power Supply24 V DC (±15% tolerance)
Operating Temperature-40°C to +70°C
Protection ClassIP54
CertificationsCE, UL, ATEX, IECEx

3. Core Application Scenarios (Optimized for Performance & Safety)

This section highlights how the Woodward 8200-1312 solves real-world challenges across key industries:

3.1 Power Generation (Thermal & Distributed Energy)

Challenge: Steam/gas turbines in thermal power plants or distributed energy systems (DES) require stable speed control to match grid frequency and avoid power fluctuations.

Solution: The 8200-1312’s ±0.05% steady-state accuracy ensures turbine speed stays aligned with grid demands, even when load shifts (e.g., peak electricity usage). Its compatibility with SCADA systems enables remote monitoring of turbine performance, reducing on-site maintenance needs.

Key Benefit: Minimizes grid disconnections and ensures reliable power supply for residential, commercial, and industrial users.

3.2 Oil & Gas (Upstream Drilling & Downstream Refining)

Challenge: Turbine-driven compressors (for natural gas pipelines) and pumps (for crude oil transfer) operate in harsh, remote environments—any downtime risks costly production delays.

Solution: The unit’s -40°C to +70°C operating range and IP54 protection withstand extreme temperatures and dust/moisture. Built-in over-speed and under-pressure interlocks shut down turbines safely if anomalies occur, preventing equipment damage.

Key Benefit: Ensures 24/7 operation of critical oil & gas infrastructure, reducing revenue loss from unplanned outages.

3.3 Petrochemical Industry (Process Turbines)

Challenge: Turbines powering reactor agitators or heat exchangers need precise load management to maintain consistent process temperatures and pressures (e.g., in polymer production).

Solution: The 8200-1312 integrates speed and load control in one unit, automatically adjusting fuel valve actuation (via 4–20 mA outputs) to match process demands. It connects to DCS systems for centralized control of multiple turbines.

Key Benefit: Reduces product defects caused by process instability and simplifies system integration for large petrochemical plants.

3.4 Marine Vessels (Auxiliary Power Systems)

Challenge: Auxiliary turbines (for shipboard electricity, heating, or propulsion backups) must comply with strict marine safety standards and operate reliably in 颠簸,high-humidity conditions.

Solution: The unit’s ATEX/IECEx certifications meet marine explosive atmosphere requirements, while its redundant signal processing resists interference from shipboard electrical systems.

Key Benefit: Ensures safe, uninterrupted auxiliary power for cargo ships, offshore support vessels, and naval crafts.

4. Core Features (Aligned with Application Needs)

Precision Speed Control: ±0.05% accuracy directly addresses grid alignment (power generation) and process stability (petrochemicals).

Harsh Environment Durability: -40°C to +70°C temp range and IP54 protection solve oil & gas and marine industry challenges.

Seamless Integration: Modbus/DCS compatibility simplifies setup in large-scale plants (power, petrochemicals).

Built-In Safety: Over-speed/under-pressure interlocks prevent costly failures in high-risk sectors.

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