63 How many kw can the OKVA transformer carry

Updated on Financial 2024-02-09
14 answers
  1. Anonymous users2024-02-05

    Power factor calculation, transformer capacity, for a single transformer with stable load power supply, the load rate is generally about 85%, and the power of electrical appliances = 504 * 85% =. This is equivalent to approximately 420kw.

  2. Anonymous users2024-02-04

    80% of 630, which is approximately equal to 500 kva

    It is also necessary to remove some line loss, that is to say, the equipment running at the same time, the overall load is about 500kva, if you choose the transformer, high and low voltage cabinets are qualified products, and there is no problem with the line, it is safe within 500kva.

  3. Anonymous users2024-02-03

    It is safe up to 500kva.

    A transformer is a device that uses the principle of electromagnetic induction to change the alternating voltage, and the main components are the primary coil, the secondary coil and the iron core (magnetic core). The main functions are: voltage conversion, current conversion, impedance conversion, isolation, voltage regulation (magnetic saturation transformer), etc.

    According to the use, it can be divided into: power transformer and special transformer (electric furnace transformer, rectifier transformer, power frequency test transformer, voltage regulator, mining transformer, audio transformer, intermediate frequency transformer, high frequency transformer, impact transformer, instrument transformer, electronic transformer, reactor, transformer, etc.). Circuit symbols often start with t.

    Example: T01, T201, etc.

  4. Anonymous users2024-02-02

    Summary. Hello dear, happy to answer for you.

    The nominal capacity of the nameplate of the three-phase power transformer is the apparent power, and under normal circumstances, it is converted into the conversion efficiency that should be considered when converted into active power, so that it can not actually carry 630kw of active power.

    With 630.

    How many kW can a 630kva transformer carry

    Hello dear, I am glad to answer for you that 630kva transformer can bring 535kw three-phase power transformer nameplate with nominal capacity as apparent power, under normal circumstances, it is converted into active power should consider the conversion efficiency, so that it can not actually carry 630kw active power. With 630.

    I hope mine can help you, I wish you a happy life and a happy life, oh and <><

  5. Anonymous users2024-02-01

    Summary. How many kW can a 630kva transformer carry

    0kva transformer with 400kw load, no problem at all.

    KVA is the apparent power (or nominal power) of the transformer. is the sum of the active power and the reactive power (is the geometric sum, that is, the vector sum, not the algebraic sum).

    kW is the total active power consumption of your load.

    3. If the power factor of your load is 80% (generally the minimum requirement, after compensation, it will be greater than 80%). Then, the apparent power of the transformer he needs is: p=400 <630kva.

    If you choose a 500kVA transformer, it can also meet the requirements. And the choice of 630kva is to leave room for improvement. Hope it helps!

    How many kW can a 630kva transformer carry

    How many kw can 630kva transformer carry, hello! The power factor of 630kva transformer is generally (and there are), then, the total power of the transformer = 630*. Hope it helps!

    How many kws can a 630kva transformer carry 0kva transformer with a load of 400kw is no problem kva is the apparent power (or - nominal power) of the transformer. is the sum of the active power and the reactive power (is the geometric sum, that is, the vector sum, not the algebraic sum).

    kW is the total active power consumption of your load. 3. If the power factor of your load is 80% (generally the minimum requirement, after compensation, it will be greater than 80%). Then, the apparent power of the transformer he needs is:

    p=400/<630kva。If you choose a 500kVA transformer, it can also meet the requirements. And the choice of 630kva is to leave room for improvement.

    Hope it helps!

    If my answer is helpful to you, please give it a thumbs up (comment in the bottom left corner), your efforts are important to me, and your support is also my motivation for progress. Wishing you good health and a happy mood!

  6. Anonymous users2024-01-31

    According to the power factor, according to the "Electric Power Engineering Design Manual", the transformer capacity, for a single transformer with stable load power supply, the load rate is generally about 85%, and the power of electrical appliances = 504 * 85% =. This is equivalent to approximately 420kw.

    The capacity of the transformer is an apparent power (with kVA). The unit of electrical appliances is active power ((kw), and there is a difference between the two. Because there is still reactive power when the power supply system is running.

    Generally speaking, the capacity * power factor of a transformer is the capacity of the electrical equipment it can carry.

  7. Anonymous users2024-01-30

    560kva transformer maximum load capacity, power factor.

    Below yes, its power should be 476kw!

    Transformer**.

    If the power factor is likely to be reached, then the maximum load capacity of the transformer of 560kVA can reach 504kw!

    In order to reduce unnecessary losses and give full play to the maximum energy of the transformer, it is recommended that you should ensure that the power factor of the system is not lower than or above during use!

  8. Anonymous users2024-01-29

    The transformer 560k A can carry a load capacity of 448 kW.

  9. Anonymous users2024-01-28

    It is possible to carry 560 kW of electrical appliances.

  10. Anonymous users2024-01-27

    504 kilowatts.

    In the process of using the transformer, the usual choice is that the total power is not higher than 80% of the apparent power of the transformer, and the 630 kVA transformer in the problem is concerned, and the electrical load does not exceed the kilowatt.

    The transformer is manufactured according to the principle of electromagnetic induction, and the magnetic circuit is the medium of electrical energy conversion, because the core is made of silicon steel sheets with high permeability, as long as a small excitation current is introduced, the required magnetic flux can be obtained. The no-load loss of the transformer at no load mainly includes the hysteresis loss (proportional to the frequency) and eddy current loss (proportional to the square of the frequency) in the core silicon steel sheet.

  11. Anonymous users2024-01-26

    High-power electricity, in the construction of the power plant is equipped with a power factor compensation device, the minimum power factor is not less than, according to the calculation, 630kva transformer can carry a load of 567kw, overload 10% is allowed.

  12. Anonymous users2024-01-25

    KVA apparent power S, KW active power P, when the load is pure resistance, S is equivalent to P, the power factor Cos is, when the load is inductive, the power factor Cos is less than 1 (hysteresis), P is less than S, S = the vector sum of active P + reactive Q. Sum up; When the power factor is 1, the full load energy band is 630kw, and when the power factor is 315kw, it can be seen that improving the power factor is equal to improving the utilization rate of the equipment.

  13. Anonymous users2024-01-24

    According to the calculation, the power factor of the transformer is 504KW at full load

  14. Anonymous users2024-01-23

    Dear, hello, it is a pleasure to serve you, transformer 63kva can carry electric power. The capacity of a transformer is generally expressed in kilovolt-amperes (kVA), while the electrical power is measured in kilowatts (kw). In order to calculate the carrying capacity of a transformer, we need to specify its rated capacity and efficiency.

    In general, the rated capacity of the transformer (i.e. 63 kWa) means that it is able to convert and transfer maximum power safely and continuously, so it can theoretically carry loads up to 63 kW. However, in actual use, the actual efficiency of the transformer will be slightly less than 100%, usually around 95%, because the transformer will have a certain loss. In other words, in practice, the transformer can only transmit up to x 63kW of electrical power.

    It should be noted that the carrying capacity of the transformer is also affected by many other factors, such as the load type, the manufacturing process and the use environment of the transformer, etc., so it needs to be calculated and selected according to the actual situation in specific use.

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