Practical experiences in upgrading and standardising the safety & environmental systems (SEMS) for the RN marine power & propulsion systems division

Author(s):  
J.P. Olivier ◽  
C. Blake
2013 ◽  
Vol 17 (2) ◽  
Author(s):  
Greig Krull ◽  
Brenda Mallinson

Higher Education Institutions (HEIs) in Africa face the challenge of responding to the expanding demand for tertiary education while maintaining or enhancing the quality of their course offerings. This has led to some HEIs introducing interactive web technologies to support their distance teaching and learning practices. However, academic staff at these institutions may struggle to provide sufficient support to online learners in part due to inadequate staff capacity in terms of familiarity with and use of online communication tools. This paper reports the practical experiences of building academic staff capacity within three southern Africa institutions, in order to initiate skills development and introduce foundational concepts in support of engaging online learners. The design of the course material is discussed and the experiences of the facilitators and participants are examined.


Author(s):  
M Benatmane ◽  
B Salter

With the ever tightening of budgets and legislation, new vessel builds are facing tough times.  The future maritime industry requires more efficient vessels to minimise ship operational costs with cleaner technologies that meet stringent environment regulations, reduce greenhouse gas emissions, specifically carbon emissions. Emissions reduction continues to be high on the agenda for the marine industry, it is responsible for about 2.5 percent of global greenhouse emissions1 and is under great pressure to reduce its environmental impact. With pressure comes the opportunity to incentivize innovation, developments and implementation of energy efficient measures, both design and operational. Naval propulsion systems are no different from other industries, and the industry is exploring ways to optimise propulsion and electrical power generation systems architecture for better performance and efficiency. Electric technology plays a leading role. The paper will: Provide a brief overview about the hybrid propulsion concept, with key electrical, mechanical qualities and issues. Describe different designs configurations and performances of hybrid propulsion systems from demonstrated and operational systems in the commercial and naval world. Cover the lessons learnt in technologies and controls used on such systems. Examine future architectures including energy storage and explore the benefits and the flexibility these can bringto the hybrid propulsion sphere.


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