Shunt reactor
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Shunt Reactor, Current-Limiting Reactor 6kv/10kv/20kv
High Performance Three Phase Dry Type Air Core Shunt Reactor 5000kvar/110kv
Indoors and Outdoors 10kv, 35kv, 66kv Dry-Type Air-Core Shunt Reactor
Stainless Steel Lab Biodiesel Shunt Mixing Ceramic Coating Reactor
Stainless Steel High Pressure Shunt Chemical Bio Hydrothermal Reactor
Dry Iron Core Shunt Reactor Low Loss, Low Noise, Custom Voltage
Electric Three Phase Series Reactors: Enhance Performance with Capacitor Shunt and Harmonic Filter Solutions
Filter Reactor, Current Limiting Reactor, Shunt Reactor, Professional Manufacturer, Famous Brand, Made in China
Reactor, Specialized for Steel Smelting Power System, 6kv~330kv, 200A~20000A, Shunt Reactor, Current-Limiting Reactor, DC Reactor
Shunt Reactor, Filter Reactor, Current Limiting Reactor, Russian Power System, Professional Manufacturer, Famous Brand
High Voltage 500kv 70Mvar Shunt Reactor Bkd-70000-500 for Reactive Power Compensation
31.5kv 2000kVA Oil Immersed Shunt Reactor/Oil Type Reactor
500L 1000L Stainless Steel Packed Bed Reactor PTFE Lined Reactor Shunt Reactor
48kv 30kvar Three-Phase Shunt Reactor for Capacitor Compensation System
48kv 30kvar High-Voltage Shunt Reactor for Capacitor Bank Reactive Power Compensation
Bks-60000/35 Reactor 35kv Single Phase Shunt Reactor
Bks-8000/132kv Reactor 8mva 132kv Oil Type Shunt Reactor
Bkd2 30000/69kv 66kv 30mva Electric Shunt Reactor Oil Immersed Reactor
High-Efficiency 3-Phase Shunt Reactor for Reactive Power Compensation and Power Factor Correction
Premium High Voltage Reactor for Optimal Energy Management Solutions Voltage Shunt Reactor
High Voltage Reactor for Industrial Power Solutions and Efficiency Voltage Shunt Reactor
Sourcing guidance for Shunt Reactor
How to choose the right Shunt Reactor for high-voltage power systems?
Selecting a shunt reactor requires a deep dive into electrical parameters and insulation classes. Buyers must prioritize rated voltage (kV) and reactive power capacity (kVAR/MVAR) to ensure the unit can effectively compensate for capacitive reactive power in long transmission lines. It is essential to verify the insulation level (BIL) and cooling method (ONAN/ONAF) to match the environmental conditions of the installation site. For B2B procurement, always request Type Test Reports from independent labs to confirm compliance with IEC 60076-6 or IEEE C57.21 standards.
What are the key technical specifications to evaluate for long-term reliability?
Focus on the magnetic core design (gapped core vs. air-core) and vibration control. Gapped iron cores are preferred for compact footprints but require high-quality silicon steel sheets to minimize noise and vibration. Ensure the winding material is high-purity electrolytic copper to reduce load losses. Additionally, check the temperature rise limits; high-quality reactors should maintain a temperature rise below 60K/65K under continuous rated load to prevent premature aging of the insulation system.
What compliance and safety standards are mandatory for international trade?
For global markets, the product must adhere to ISO 9001 for manufacturing quality and ISO 14001 for environmental management. Specifically, for the North American market, ANSI/IEEE compliance is necessary, while the European market requires CE marking and adherence to EN standards. Ensure the supplier provides a Certificate of Origin and Factory Acceptance Test (FAT) documentation before shipment to facilitate customs clearance and grid connection.
How does the usage scenario affect the choice of Shunt Reactor?
The choice depends on whether the reactor is for line compensation or bus compensation. Line-connected reactors must handle switching surges and potential transient overvoltages, requiring robust surge arresters. For variable load conditions, consider Magnetically Controlled Shunt Reactors (MCSR) or Tap-Changer Shunt Reactors, which allow for dynamic adjustment of reactive power, enhancing grid stability compared to fixed-capacity units.
Cross-Border Procurement Considerations for Shunt Reactors
What are the primary risks when importing heavy electrical equipment like Shunt Reactors?
The biggest risks are logistical damage and technical non-conformity. Due to their extreme weight and sensitivity, reactors can suffer internal core displacement during sea transit. It is vital to install impact recorders on the crates. To mitigate technical risks, use Made-in-China.com’s inspection services to verify that the nameplate parameters and internal components match the agreed-upon technical datasheet before the final payment.
How should buyers negotiate with suppliers regarding warranty and after-sales support?
Negotiate for a comprehensive warranty of at least 24 to 36 months from the date of commissioning. Given the complexity of the equipment, insist on on-site installation supervision or remote video technical guidance as part of the contract. Ensure the supplier maintains a spare parts inventory (such as bushings and gaskets) that can be dispatched via air freight to minimize downtime in case of failure.
What are the best practices for secure international transactions for high-value industrial goods?
Utilize Letters of Credit (L/C) or Escrow services provided by reputable platforms like Made-in-China.com to ensure payment is only released upon the presentation of valid shipping documents and inspection certificates. Avoid 100% upfront payments; a standard structure is 30% deposit, 60% upon successful FAT, and 10% after commissioning or expiration of the initial performance bond.
What shipping and handling precautions are necessary for Shunt Reactors?
Shunt reactors are often shipped oil-filled or nitrogen-filled to prevent moisture ingress. If nitrogen-filled, the supplier must provide a pressure monitoring kit for the duration of the voyage. Use Heavy Lift vessels or Flat Rack containers for transport, and ensure the equipment is secured with professional sea-fastening calculations to prevent shifting during rough seas.





























