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- W4323305582 abstract "Abstract In line with sustainable energy utilization and global decarbonization effort to reach net-zero emission targets, a closer look to variable speed Electrical Drives (ED) as system for Rotating Equipment (RE) is investigated to assess the impact of drive selection towards achieving higher operational excellence in conjunction with end-user and plant operator operation excellence targets. The paper briefly introduces main available variable speed ED systems with relevant attributes for holistic Total Cost of Ownership (TCO) assessment approach that can be streamlined for any RE application in energy industries with pre- defined application-specific boundary conditions. Paper focuses on RE asset such as centrifugal gas compressors and pumps driven by means of Electric Motor (EM) in oil and gas, petrochemicals, and energy industry. Holistic TCO approach covers practical methodology of impact calculation for ED systems. Namely Mechanical Variable Speed Drive (MVSD), Electro-Mechanical Drive (EMD), or Variable Frequency Drive (VFD) system technologies. Established valuable insight from system-wise TCO assessment provides decision makers with reliable feasibility and data-driven conclusion measure to select most sustainable system for RE operation with variable speed over desired lifetime cycle as TCO holistic approach covers ED systems CAPEX and OPEX respectively. System TCO approach is further presented as deployed on real project assessment in Middle East for a compressor drive running at 10,900 kW rated power and 10,000 rpm. With Holistic TCO assessment including commercial and ecosystem requirements, EMD and MVSD solutions respectively demonstrated higher success measures as sustainable ED solutions over compressor train lifecycle. Benefits for each ED technology is briefly discussed with its relevant carbon footprint saving potential through equivalent CO2 emissions from consumed energy. Finally, brief highlight on recent successful project deployment of MVSD technology is presented for compressor drive in bio-fuel application as adaptability potential to current market agile shift in sustainable energy sources and various application operability requirements demand." @default.
- W4323305582 created "2023-03-07" @default.
- W4323305582 creator A5029171467 @default.
- W4323305582 creator A5074213916 @default.
- W4323305582 date "2023-03-07" @default.
- W4323305582 modified "2023-09-24" @default.
- W4323305582 title "Sustainable Energy for Rotating Equipment: Train Driver Technology Selection and Lifecycle Impact Assessment" @default.
- W4323305582 cites W4205989166 @default.
- W4323305582 doi "https://doi.org/10.2118/213351-ms" @default.
- W4323305582 hasPublicationYear "2023" @default.
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