
The Ultimate Guide to Solar Panels & Inverters in Singapore (2025 Edition)
The Ultimate Guide to Solar Panels & Inverters in Singapore (2025 Edition) Introduction: Why Solar Energy is the Future of Singapore Singapore’s push toward sustainable
Project summary:
Beijing’s tallest building (China Zun) project in the core area of CBD, Chaoyang District, Beijing will be the tallest landmark building in Beijing after completion. The west side of the project faces the third phase of China World Trade Center, the tallest building in Beijing at present. The total height of the building is 528 meters. It will be planned as the headquarters building of CITIC Group in the future. The China Zun project uses our company’s reactive power compensation device, which once again reflects the brand influence of Tysen-KLD in the power automation industry.
The China Zun project is located in the Z15 plot in the core area of CBD, Chaoyang District, Beijing. The total building height is 528 meters, with 108 floors above ground and a construction area of 350,000 square meters; 7 floors underground, a construction area of 87,000 square meters, and a foundation depth of about 37.8 meters. It integrates Grade A office buildings, conferences, commerce, sightseeing and a variety of supporting service functions. After completion, it will become the tallest building in Beijing and a new landmark of the capital.
Our company’s BKS reactive power compensation device:
Product Introduction
KLD-BKS series static filter compensation components are composed of low-voltage power capacitors and filter reactors, and are specially designed for reactive power compensation and filtering of harmonic pollution distribution systems. KLD-power factor controller provides effective reactive power compensation, measurement and monitoring for the power grid, and can be applied to the automatic control of low-voltage reactive power compensation systems.
Main advantages
Reasonable configuration of capacitors and reactors can simultaneously achieve the purpose of reactive power compensation and filtering of some harmonics;
Use low-voltage power capacitors with higher rated voltage: 7% BKS series compensation filter components use 480V capacitors; 14% BKS series compensation filter components use 525V capacitors, which are more stable and reliable in 400V distribution systems;
Use H-class insulation filter reactors, low power consumption and high reliability;
The installation layout in the cabinet is highly autonomous, and other auxiliary devices are self-configured and flexible to select;
Support three-phase compensation, split-phase compensation, and mixed compensation schemes, and different controllers can be selected for control.
Applications
BKS series filter compensation components are suitable for distribution systems where reactive power changes are not frequent.
Reactance rate is 7%: BKS series filter compensation components with a tuning frequency of 189Hz can effectively suppress 5th and above harmonic pollution while providing reliable reactive power compensation.
Reactance rate is 14%: BKS series filter compensation components with a tuning frequency of 134Hz can effectively suppress 3rd and above harmonic pollution while providing reliable reactive power compensation.
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