Variateur de fréquence dans ventilateur aspirant de système de purification de gaz d'évacuation

Variateur de fréquence dans ventilateur aspirant de système de purification de gaz d'évacuation
2009-12-21 9:13:55
Résumé : cette page introduit notre variateur de fréquence VFD série HARSVERT-A dans le ventilateur aspirant de système de purification de gaz d’évacuation et en indique les fonctions et effets.
Mots clés : technologie de variation de fréquence moyenne tension, ventilateur aspirant, économie d’énergie, harmonique.

 

I. Preface

In most middle/large mining companies, power consumption of motor accounts for 50% of total power consumption. LV VFD is very common. But, defectiveness of MV variable frequency technology, and voltage withstand capacity of components have been restricting MV VFD development and its application. In recent years, with rapid development of MV technology and voltage withstand function, MV VFD has been used widely. Its energy saving effect is considerable.

 

II. Project introduction

There were 4 low voltage motors (Y355M-4315kW562A1476r/min) in flue gas purification system. In general, 2~3 motors worked and another was spare. Fans connected in parallel. Subpressure was controlled by valve. Valve opening was controlled just by personnel experience. In 2005, plant decided to reform purification system with medium voltage VFD. Mode of one work and one spare was suggested to ensure safety and reliability.

 

 

Fig1: purification system layout drawing

1.      Driving equipments

MV asynchronous motor: YP7560-6, 1000kW, 50Hz , Ve=6300VIe=108.95Ane=994r/mincosφ=0.876, insulation class: F, connecting: Y, allowed to start once in hot state and twice in cold state, produced by Lanzhou Motor Co., Ltd.

2. Centrifugal ID fan

Model: Y7-2X36-22F338600m3/h7500Pane=990r/min 1000kW.

 

III. VFD structure and principal

HARSVERT-A adopts technology of cell-cascaded, high-medium voltage source, 6kV input. Medium voltage is transferred to low voltage through transformer. Then it goes through diode and IGBT inverter. Then cells cascaded output 6.3kV.

Fig 36kV VFD system drawing


IV. Effect

MV VFD has been running stably in flue gas purification system for 3 years since Augst, 2005. System also runs healthily. Energy saving is considerable and achieves expected goal. It also meets technology requirement and improves purification effect, which makes plant be prized by local environmental protection bureau. According to related statistics, power consumption of purification system has been down 19%. Actual data is in following:

NO

Furnace

Subpressure (Pa)

Frequency (Hz)

Current (A)

Result

Remark

1

1system

960—1020

19

26

Up to standard

2

2 systems

1000—1100

24

34

Up to standard

3

3 systems

1050—1150

27

41

Up to standard

4

4 systems

1100—1200

31

47

Up to standard

5

5 systems

1160—1250

35

52

Up to standard

6

6 systems

1200—1130

38

58

Up to standard

 

V. Concluding remarks

VFD application in purification system optimizes the system performance, improves purification effect, reduces power consumption greatly. According to related statistic, flue gas consumption reduces 19m3/t. Total power consumption reduces 137000kW.h per month.

 

 

 

Reference:

[1] HARSVERT-A series VFD operation instruction, Beijing Leader Harvest Technologies Co., Ltd. 2005.1

 [2] Power Smart TM   series VFD manual   2006.8

 

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