YBTD Series Substation for Wind Power and Photovoltaic Generation - Reliable Solutions from China Suppliers & Factory
Service conditions
Structure features
- Substation skeleton was embalmed channel steel and angle steel manufacturing, and has sufficient mechanical strength and rigidity;
- The shell material can be made of cold rolled steel plates, stainless steel plate, composite color plate, aluminum alloy plate or glass fiber reinforced cement;
- Substation using steel plate isolation between each room, and have a lighting device;
- Substation cover is a double-layer structure, and can effectively prevent the heat radiation;
- Transformer room is divided into open and closed two structure. The open structure of the radiator of a transformer in an outdoor, and can effectively utilize natural wind to dissipate heat; Closed type structure of the transformer room has independent chamber, and is provided with an automatic air exhausting device, used to control the temperature of transformer room;
- Housing door of substation adopts the low temperature type seal, and in low temperature environment can also achieve good sealing effect;
- Surface paint of substation with high temperature paint handling, that can effectively delay the aging caused by ultraviolet ray paint;
- The housing has a variety of colors to choose, so that it with the environment is harmonious.
- Various types of high-voltage switchgear can be used in the high-voltage compartment, such as XGTD9, HXGN11, XGTD6, (H)XGTD10, etc., with compact structure and convenient combination. Users can choose different switchgear according to own requirements;
- The high-voltage switchgear has the advantages of simple structure, convenient installation & operation and strong reliability;
- The switchgear has the complete prevention of erroneous operation function, to ensure the safety of maintenance personnel.
- Transformer using S9-M, S11-M oil immersed transformer or SCB dry type transformer;
- The transformer has the advantages of small volume, convenient maintenance;
- Transformer room has a good natural ventilation, or through automatic control fan to exhaust air force to reduce the temperature of the room;
- The use of flexible connections between the low-voltage side terminal of the transformer and the busbar can effectively protect the low-voltage bushings of the transformer, preventing them from cracking or oil leakage.
- GGD, GCS and GCK series produced by our company can be selected for LV switchgear;
- Metering, measuring and capacitance automatic compensation devices can be set according to users requirements;
- Other schemes can be confirmed by engineer according to user requirements.
- Use automation terminal equipment, which are optimized to take full account of the hard operating environment of wind power transformer and photovoltaic substation.
- It features strong adaptability to temperature ambient, dual-fiber ring network communication functionality, high resistance to interference, vibration, humidity, and lightning, and low power consumption.
- Illustrations of Wind power transformer and photovoltaic substation automatic monitoring
Technical data
| Unit | Item | Unit | Data | ||
|---|---|---|---|---|---|
| HV unit | Switch type | Combined electrical apparatus | Circuit breaker | ||
| Rated voltage | kV | 40.5 | 40.5 | ||
| Rated frequency | Hz | 50 | 60 | ||
| Rated current | A | 630 | 1250 | ||
| 1min Rated power frequency withstand voltage (for ground and phase/isolation fracture) | kV | 95/118 | 95/118 | ||
| Lightning withstand voltage (for ground and phase /isolation fracture) | kV | 185/215 | 185/215 | ||
| Rated short time withstand current | kA/s | 20/2 | 25/4 | ||
| Rated peak withstand current | kA | 50 | 63 | ||
| Rated short-circuit current | kA | 31.5 | 63 | ||
| Rated short circuit breaking current | kA | 31.5 | 25 | ||
| LV unit | Rated voltage | V | 690/270 | ||
| Main circuit rated current | A | 1600~3300 | |||
| Rated ultimate short circuit breaking capacity | kA | 50 | |||
| Rated short-circuit breaking capacity | kA | 40 | |||
| Rated short-time withstand voltage | kA/s | 40/1 | |||
| Transformer unit | Rated capacity | kVA | 1000~5500 | ||
| Impedance voltage | % | 6.5 | |||
| Tapping range | % | ±2X2.5; ±5 | |||
| Connected group | D, yn11 or Y, d11d11 | ||||
| Main body | Enclosure degree of protection | HV room | IP33 | ||
| LV room | IP33 | ||||
| Transformer room | IP23 | ||||
| Sound level | dB | ≤55 | |||
Frequently Asked Questions
The equipment is designed to operate under ambient temperatures with a maximum of 40℃ and a minimum of -25℃. The maximum daily average temperature must not exceed 35℃, and the maximum annual average temperature must not exceed 25℃.
Yes. When normal use conditions cannot be met (such as high altitude, extreme temperatures, or special site requirements), we can design and manufacture the substation as requested by customers.
The HV room and LV room both offer an enclosure protection degree of IP33, while the Transformer room offers a protection degree of IP23.
The substation shell can be constructed using cold rolled steel plates, stainless steel plates, composite color plates, aluminum alloy plates, or glass fiber reinforced cement, depending on customer requirements.
The transformer unit is compatible with S9-M, S11-M oil-immersed transformers, or SCB dry-type transformers, with a rated capacity ranging from 1000kVA to 5500kVA.
The automation terminal equipment is optimized for wind power and photovoltaic settings, featuring high adaptability to ambient temperatures, dual-fiber ring network communication, and strong resistance to interference, vibration, humidity, and lightning with low power consumption.








