DocumentCode
3296936
Title
Economic benefits of hybrid drive propulsion for naval ships
Author
Castles, Gene ; Reed, Greg ; Bendre, Ashish ; Pitsch, Robert
Author_Institution
DRS Power Technol., Inc., Fitchburg, MA
fYear
2009
fDate
20-22 April 2009
Firstpage
515
Lastpage
520
Abstract
The typical operating profile for destroyers and other marine vessels includes a significant amount of time loitering or other low-speed activity. Low-speed operation is accompanied by propulsion system inefficiency, as the propulsion turbines are operating off-design. Low speeds are further enabled by propeller pitch variation, which exacerbates system inefficiency. A practical hybrid electric drive system will be proposed that complements the ship´s existing mechanical propulsion and electrical plants. Electrical power generated by the ship service turbine-generators (SSTGs) is used to drive large permanent magnet motors. The motors then drive the propeller shafts during low speed operation. This scheme allows the propulsion turbines to be shut down and the SSTGs to run closer to design point, resulting in fuel savings. Additional savings are possible at higher speeds by operating the motor(s) in generation mode, enabling SSTG shut down and propulsion turbine performance optimization. This paper describes in detail the concept of hybrid drive operation and demonstrates the economic justification for such a system using the DDG-51 class of destroyers as an example platform.
Keywords
electric propulsion; permanent magnet motors; ships; turbogenerators; hybrid drive propulsion; hybrid electric drive system; marine vessels; naval ships; permanent magnet motors; propulsion turbines; ship service turbine-generators; Fuel economy; Marine vehicles; Optimization; Permanent magnet motors; Power generation; Power generation economics; Propellers; Propulsion; Shafts; Turbines;
fLanguage
English
Publisher
ieee
Conference_Titel
Electric Ship Technologies Symposium, 2009. ESTS 2009. IEEE
Conference_Location
Baltimore, MD
Print_ISBN
978-1-4244-3438-1
Electronic_ISBN
978-1-4244-3439-8
Type
conf
DOI
10.1109/ESTS.2009.4906560
Filename
4906560
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