Sustainable savings in powering Submersible Bore Pumps

專案詳情

Location

Australia

Main Contractor

TBC

Project Type

Mining

Country

AUS

325 tonnes

of carbon emissions saved1 (vs. 1 X 100 kVA generator)

54%

lower OPEX2 (vs. 1 X 100 kVA generator)

30 times

quieter than a generator

70%+

daily battery level

1Assuming a CO2 emission intensity of 2.64 kg per litre.

背景

Further information about this project will be available soon. Please check back for updates.

了解更多

挑戰

Further information about this project will be available soon. Please check back for updates.

了解更多

解決方案

Further information about this project will be available soon. Please check back for updates.

了解更多

成果

Further information about this project will be available soon. Please check back for updates.

下載案例研究

了解我們的 Enertainers 如何在保護環境並降低成本的同時,提升營運效率。

下載

"The startup current of a submersible bore pump motor is 6 times the running current. A diesel generator is typically oversized by a factor of 6 or more to power the submersible pump. All diesel engines must be run above 40% loading to allow for complete fuel combustion, and operation of engine at the correct cylinder temperatures. To address these challenges, an Ampd Silo, an advanced, compact and connected battery energy storage system (ESS), was used to replace a large diesel generator to support a submersible bore pump for mining applications. Without grid access, a 60 kVA Genset was used to recharge the Silo. The battery and generator operate seamlessly, providing consistent, highly efficient power. The generator was programmed to automatically start and stop for charging, allowing the ESS to manage load demand effectively."