• 100kVA 15kV 3 Phase Oil-immersed distribution transformer
100kVA 15kV 3 Phase Oil-immersed distribution transformer
$66666.00
S-M-15KV-100KVA
S-15KV-0.4KV-25KVA
S-30KV-0.4KV-500KVA
S-M-15KV-0.4KV-160KVA
S-15KV-0.4KV-250KVA
S-15KV-0.4KV-2000KVA
S-15KV-0.4KV-500KVA
S-15K-1000KVA
S-M-30KV-50KVA
S-M-30KV-0.4KV-25KVA
S-M-20KV-250KVA
S-M-15KV-50KVA
S-30KV-0.4KV-630KVA
S-M-30KV-1000KVA
S-30KV-400KVA
S-M-30KV-160KVA
S-M-30KV-100KVA
S-M-30KV-50KVA
S-15KV-25KVA
S-M-30KVA-100KVA
S-M-30KV-0.4KV-50KV
S-M-30KV-0.4KV-100KVA
S-M-33KV-0.4KV-50KVA
S-M-30KV-0.4KV-25KVA
RCW-380V
S-M-15Kv-0.4KV-100KVA
Basic info
Brand ROCKWILL
Model NO. 100KVA 15KV 3 PhaseOil-immersed distribution transformer
Rated voltage
Rated capacity 100kVA
Primary voltage 30kV
Secondary voltage 0.4kV
No-load loss <320w
Load loss <1950w
Series S-M
Product Detail

Description:

Oil immersed transformer, use ourcompany special calculation and validation procedures to make sure theperformance of products. superior process equipment, elaborate materialselecting and efficient manufacturing make the transformer have smallvolume,light weight,low loss,low partial discharge,low noise characteristics.

The product is stable,reliable,economic, environmental protection. lt can beapplied to many places such as power plants,transformer substation ,largeindustrial mining and petrochemical enterprise and so on.

Features:

  • Ultralow no-load loss.

  • Energy saving and great power consuming efficiency.

  • Copper/ aluminum coil winding, strong short circuit resistance ability.

  • Dyn11 coil connection decrease the influences of harmonic wave.

  • Fully sealed structure for maintenance free.

  • Slow insulation aging & longer serving life.

Parameters:

Oil-immersed distribution transformer three-phase

Model NO.

S-M-100/15/0.4

Product classification

Distribution transformer

Rated capacity

100kVA

Primary voltage

15kV

Secondary voltage

0.4kV

Number of phase

3

Number of winding

2

Rated frequency

50Hz

Tap changer

OCTC

Tap range

±2×2.5%

Vector group

Dyn11

Cooling system

ONAN

No-load loss

>320W

Load loss

>170W

Impedance

4%

Basic insulation level

——

Winding material ( H.V & L.V)

Copper

The way the bushing appears

Porcelain

Power frequency withstand voltage

38kV

Lightning impulse

——

The temperature rise—Winding

62k

The temperature rise --Top oil

57k

Tank color

——

Creepage distance

>576mm

Fitting requirement

——

Environmental requirement

——

Transformer structure

Sealed

Standard

IEC60076

Port of loading

——

HS code

——

Transportation

——


External dimensions:

企业微信截图_17103775276834.png

Size

885mm×875mm×1120mm

Weight

590KG

Environmental requirement:

Max. ambient temperature

——

Altitude

——


Product show:

Yawei 160kVA 10kv Hot Selling Oil-Filled Three-Phase Distribution Transformer with UL


 How to choose the model and specification of oil-immersed three-phase distribution transformer according to load capacity?


Selecting a Transformer Based on Load Capacity:

Calculate Total Load Power:

  • First, it is necessary to determine the total power of the loads to be supplied. For residential areas, this involves considering the total power of all household electrical appliances, including lighting fixtures, televisions, refrigerators, air conditioners, etc. For example, in a residential area with 100 households, if the average power consumption per household is 5 kW (considering the simultaneous use factor), the total load power would be approximately 500 kW.

  • In industrial settings, it is necessary to tally the power of all production equipment, lighting, and office devices within the factory. For instance, in a small mechanical processing plant, the total power of machine tools might be 300 kW, and adding the power of lighting and office devices, the total load power could reach around 350 kW.

Consider Simultaneous Factor and Power Factor:

  • The simultaneous factor refers to the probability that all loads will operate simultaneously at any given moment. In residential areas, the simultaneous factor is generally between 0.4 and 0.6. In industrial settings, it is determined based on production shifts and equipment operating patterns, typically ranging from 0.7 to 0.9.

  • The power factor reflects the efficiency of energy utilization by the load. In scenarios with a high proportion of inductive loads (such as motors), the power factor is lower, usually between 0.7 and 0.9. It is essential to calculate based on actual load conditions and then select the transformer capacity based on the calculated actual load capacity.

Other recommendations
New Knowledges
Free Download Now
Wone is dedicated to serving the personnel in the global power industry.
Join WONE, not only can you discover power equipment and power knowledge, but also can find like-minded friends!
Message
Email
Inquiry
Inquiry