Global Electric Boats, Small Submarines and Autonomous Underwater Vehicles (AUV) 2014-2024: Worldwide Industry Share, Investment Trends, Growth, Size, Strategy

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Albany (PRWEB) February 14, 2014

Electric Boats, Small Submarines and Autonomous Underwater Vehicles (AUV) 2014-2024

Ten year forecasts

Marine electric vehicles are now a rapidly growing market due to new capability, affordability and legislation banning or restricting internal combustion engines. Our research finds that the market for electric water craft, including those on and under water, will increase rapidly from $2.6 billion to $6.3 billion in 2023. In addition there is a market for electric outboard motors that will more than triple in value as high power pure electric versions become increasingly viable. There is also a new market for water borne electric aircraft.

Scope of coverage

This report covers marine electric vehicles hybrid and pure electric, on-water and underwater, inland and seagoing. It covers the closely allied topics of electric outboard motors and electric planes operating from water and even has some mention of electrification benefiting conventional craft. Overall, it encompasses leisure, military, industrial, commercial and other applications and the technology trends.

Browse Complete report with TOC: http://www.marketresearchreports.biz/analysis-details/electric-boats-small-submarines-and-autonomous-underwater-vehicles-auv-2014-2024.

Marine electric vehicles make new things possible and increasingly they have lower cost of ownership and are the only practicable way of meeting the newer, more onerous pollution regulations for inland waterways and harbours. Marine electric craft are increasingly made by existing shipyards making conventional craft but there is also a trend for those making land or airborne electric vehicles to make marine ones as well. Sometimes we see Apple levels of innovation with new entrants, something notably absent with such things as electric cars. As with all electric vehicles, the advances in the components in these vehicles and their infrastructure are proceeding disruptively rather than incrementally and the report discusses this in the marine context.

The many interviews and investigations carried out in the preparation of the report have revealed a market that is larger and growing faster than is popularly assumed, though some incumbents miss what is happening with new entrants and in other parts of the world. The military aspect for example is very concentrated in the USA and involves small numbers and large unit prices until such things as swarming robot jellyfish become a reality. Water borne electric aircraft and the hybridisation of ocean going leisure yachts are impressive in Europe, where the leader in AUVs is located. Some of the most advanced pure electric and fuel cell hybrid AUVs are in India and Japan. Clearly a global view, presented here for the first time, is essential if the full potential is to be understood. 50 organisations from across the world are profiled and many more are mentioned in context.

Table of Contents

1. EXECUTIVE SUMMARY AND CONCLUSIONS
1.1. The whole picture
1.1.1. Global marine EV forecasts 2013-2024
1.1.2. AUV market
1.1.3. Marine EVs compared to all EVs
1.2. Forecast rationale
1.3. Benefits of marine electric vehicles
1.3.1. Price sensitivity
1.3.2. Favoured Marine EV Technologies
1.3.3. Examples of backup data
1.4. Latest view from Europe

2. INTRODUCTION
2.1. Definitions and scope of this report
2.2. The EV value chain
2.3. Benefits of marine electric vehicles
2.4. Pure electric marine vehicles
2.5. Hybrid marine vehicles
2.6. Born electric
2.7. New structural advances and smart skin
2.8. Electric outboard motors
2.8.1. Regen Nautic Inc USA
2.8.1. Outboard motor market size
2.8.2. Oceanvolt SD electric saildrive system wins Pittman Innovation Award

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3. SURFACE CRAFT
3.1. Commonality with land EVs
3.1.1. Grants for land and water
3.1.2. Effect of land EV manufacturers entering marine
3.1.3. Pollution laws back electric boats - India, Europe, Taiwan, USA
3.2. Small electric surface craft
3.2.1. Andaman and Electric Boats Thailand
3.2.2. aquawatt Mechatronik und Yachtbau Austria
3.2.3. Bionx Austria, Canada
3.2.4. Boesch Boats for water skiing Switzerland
3.2.5. Boote Marian luxury inland boats Austria
3.2.6. CleaneMarine Denmark
3.2.7. Duffy inland electric deck boats, USA
3.2.8. Epic Wakeboats hybrid sport boat USA
3.2.9. Erun GmbH inland sport boats Switzerland
3.2.10. Leisure Life USA
3.2.11. MarineKart Switzerland
3.2.12. Mercedes Germany
3.2.13. Ruban Bleu France with 2013 interview
3.2.14. Tamarack Lake foldable inland boat USA
3.3. Large electric surface craft
3.3.1. ALU MARINE France with 2013 interview
3.3.2. Callender Designs UK
3.3.3. CAT hybrid powertrain USA
3.3.4. Corvus Energy Canada
3.3.5. Ferguson\'s shipyard in Port Glasgow, UK
3.3.6. Foss Maritime Canada, USA
3.3.7. GE Power Conversion USA
3.3.8. Hydrogenics New York
3.3.9. Kitegen Italy and Sauter UK
3.3.10. Larger solar lake boats Switzerland
3.3.11. MW Line Switzerland
3.3.12. Sauter supertanker
3.3.13. SCOD / Atlantic Motors USA
3.3.14. Seagoing yachts France
3.3.15. Tag Yachts South Africa, New Zealand
3.3.16. Tugboats UK
3.3.17. Türanor PlanetSolar Germany
3.3.18. Unmanned boat gathering oil USA
3.3.19. Waternet The Netherlands
3.4. Electric flying boats
3.4.1. Equator Aircraft Norway
3.4.2. FlyNano Finland
3.4.3. Marine Unmanned Aerial Vehicles UAV

4. MANNED UNDERWATER ELECTRIC VEHICLES
4.1. Sea scooters for scuba divers, Italy, China
4.2. Leisure and tourist submarines
4.2.1. Kittredge UK
4.2.2. Odyssea USA
4.2.3. International Venture Craft USA
4.2.4. Hawkes Ocean Technologies USA
4.2.5. Silvercrest/UVI Canada, UK
4.2.6. Submarines that are efficient surface boats
4.2.7. US Submarines Inc USA
4.2.8. Will submarines fly?

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5. AUTONOMOUS UNDERWATER VEHICLES (AUVS)
5.1. Swimmers vs gliders
5.2. Wave and sun powered sea gliders
5.2.1. Virginia Institute of Marine Science USA
5.2.2. Falmouth Scientific Inc USA
5.2.3. Liquid Robotics USA
5.3. AUV swimmers North America
5.3.1. Hydroid USA
5.3.2. OceanServer Technology USA
5.4. AUV swimmers Europe
5.4.1. Kongsberg
5.4.2. Teledyne USA, Iceland
5.4.3. Mine Destruction AUV UK
5.4.4. Autosub6000 UK
5.4.5. a.r.s Technologies GmbH Germany
5.5. AUV swimmers East Asia
5.5.1. DRDO India
5.5.2. JAMSTEC Japan
5.6. Deploying AUVs Canada 2013
5.7. Network of unmanned undersea platforms assist manned vessels

6. BIOMIMETIC UNMANNED UNDERWATER CRAFT
6.1. Robot jellyfish USA and Germany

7. DRIVE TRAINS, COMPONENTS AND INFRASTRUCTURE
7.1. Drive trains
7.2. Traction batteries
7.2.1. The lure of lithium-ion
7.2.2. Cells - modules - battery packs
7.2.3. NiMH vs lithium
7.2.4. The ideal traction battery pack
7.2.5. Recent improvements
7.2.6. Traction batteries today
7.2.7. Trends in energy storage vs battery pack voltage
7.2.8. Move to high voltage
7.2.9. Many suppliers
7.2.10. Pouch problems?
7.2.11. The lure of lithium polymer versions of lithium-ion
7.2.12. Genuinely solid state traction batteries
7.2.13. New chemistries for lithium-ion batteries
7.2.14. Impediments
7.2.15. ABSL
7.2.16. SAFT
7.3. Range extenders
7.4. Fuel cells
7.5. Electric motors
7.5.1. New motors and outboards for boats
7.5.2. AC vs DC
7.6. Motor position
7.7. Charging infrastructure for marine EVs
7.7.1. General needs and solutions
7.8. Case study: Arctic under ice survey
7.9. MBARI research AUV deployment

APPENDIX 1: IDTECHEX PUBLICATIONS AND CONSULTANCY

Latest Report
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Strokes can be classified as either ischemic or hemorrhagic, where an ischemic stroke is characterized by failure in proper blood supply to a part of brain due to blockage (due to blood clots or arthrosclerosis) created in the blood vessel. These blood clots have the ability of travelling to brain either from heart (cardioemblic stroke) or from another artery (artery-to-artery embolization).Acute ischemic strokes can be caused by building up fatty materials along the walls of artery, breaking off atheroma from the artery wall and getting stuck in a smaller artery, blood clots which break loose from heart valves also known as embolus, inflammation or infection to an artery, drugs like cocaine and amphetamines which narrow the blood vessels and sudden drop in blood pressure. According to the WHO,each year 15 million people suffer from stroke worldwide. The global acute ischemic stroke treatment market can be segmented on the basis of drug treatmentsand surgical procedures.

Acute ischemic stroke (AIS) treatment marketis driven by aging population which has higher incidence of AIS.Other drivers of this market include recent launch of novel new generation drugs, growing research investments andincreasing prominence of telemedicine.A major growth avenue in this market opened with the launch of Desmoteplase, a novel next-generation thrombolytic, which has an extended therapeutic time window when compared with the current standard of care.

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This research report analyzes this market depending on its market segments, major geographies, and current market trends. Geographies analyzed under this research report include

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  •     Asia Pacific
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This report provides comprehensive analysis of

  •     Market growth drivers
  •     Factors limiting market growth
  •     Current market trends
  •     Market structure
  •     Market projections for upcoming years

This report is a complete study of current trends in the market, industry growth drivers, and restraints. It provides market projections for the coming years. It includes analysis of recent developments in technology, Porter’s five force model analysis and detailed profiles of top industry players. The report also includes a review of micro and macro factors essential for the existing market players and new entrants along with detailed value chain analysis.

To download a sample report: http://www.marketresearchreports.biz/sample/toc/186960.

Reasons for Buying this Report    

  •     This report provides pin-point analysis for changing competitive dynamics
  •     It provides a forward looking perspective on different factors driving or restraining market growth
  •     It provides a technological growth map over time to understand the industry growth rate
  •     It provides a seven-year forecast assessed on the basis of how the market is predicted to grow
  •     It helps in understanding the key product segments and their future
  •     It provides pin point analysis of changing competition dynamics and keeps you ahead of competitors
  •     It helps in making informed business decisions by having complete insights of market and by making in-depth analysis of market segments
  •     It provides distinctive graphics and exemplified SWOT analysis of major market segments

Clostridium Diagnostics Market - Global Industry Analysis, Size, Share, Growth, Trends and Forecast, 2013 – 2019: http://www.marketresearchreports.biz/analysis-details/clostridium-diagnostics-market-global-industry-analysis-size-share-growth-trends-and-forecast-2013-2019

Clostridium is a gram-positive bacteria which belongs to phylum Firmicutes, it’s an obligate anaerobe capable of producing endospores. Clostridium botulinium, Clostridium difficle, Clostridium perfringens, Clostridium tetani and Clostridium sordellii are the different species of clostridium responsible for diseases in humans. Clostridium tetani is the etiological agent of tetanus, Clostridium botulinum is the etiological agent of botulism, Clostridium perfringes is one of the etiological agents of gas gangrene, Clostridium sortellii is capable of causing pneumonia, endocarditis, arthritis, peritonitis, and myonecrosis and Clostridium difficle is etiological agent of diarrhea.

The global clostridium diagnostics market can be segmented as follows:

Diagnostic tests

  •     Counterimmunoelectrophoresis
  •     Fluorescent-Antibody Assays
  •     Poloymerase Chain Reactions

Emerging Diagnostic Technologies

  •     DNA Probes
  •     Monoclonal antibodies
  •     Immunoassays
  •     Differential Light Scattering
  •     Microcomputers and Automation
  •     Artificial Intelligence
  •     Liposomes
  •     Flow Cytometry
  •     Chromatography
  •     MRI
  •     Gel Microdroplets
  •     Others

Clostridium diagnostics market is driven by rising population, growing awareness about clostridium related disorders and technological developments in diagnostics equipment like artificial intelligence and automation.

Prevalence of clostridium and its different species was observed more in North America and Europe compared to Asia-Pacific and Rest of World. Thus, North America currently leads this market and is followed by Europe. Asia-Pacific is a growing market for clostridium diagnostics with rapid economic development, growth in awareness about critical diseases and their prevention and highly populated countries in the world such as China and India with mediocre or developing healthcare infrastructure. Brazil and Gulf countries are considered to drive the clostridium diagnostics market in Rest of World.

Some of the major companies contributing to the global clostridium diagnostics market include Abbott Laboratories, Beckman Coulter, Inc., Biochem Pharmaceutical Industries Ltd., Johnson & Johnson Services, Inc., Olympus Corporation, F. Hoffmann-La Roche Ltd, Siemens and others.

To download a sample report: http://www.marketresearchreports.biz/sample/toc/186958.

This research report analyzes this market depending on its market segments, major geographies, and current market trends. Geographies analyzed under this research report include

  •     North America
  •     Asia Pacific
  •     Europe
  •     Rest of the World

This report provides comprehensive analysis of

  •     Market growth drivers
  •     Factors limiting market growth
  •     Current market trends
  •     Market structure
  •     Market projections for upcoming years

This report is a complete study of current trends in the market, industry growth drivers, and restraints. It provides market projections for the coming years. It includes analysis of recent developments in technology, Porter’s five force model analysis and detailed profiles of top industry players. The report also includes a review of micro and macro factors essential for the existing market players and new entrants along with detailed value chain analysis.

Reasons for Buying this Report

  •     This report provides pin-point analysis for changing competitive dynamics
  •     It provides a forward looking perspective on different factors driving or restraining market growth
  •     It provides a technological growth map over time to understand the industry growth rate
  •     It provides a seven-year forecast assessed on the basis of how the market is predicted to grow
  •     It helps in understanding the key product segments and their future
  •     It provides pin point analysis of changing competition dynamics and keeps you ahead of competitors
  •     It helps in making informed business decisions by having complete insights of market and by making in-depth analysis of market segments
  •     It provides distinctive graphics and exemplified SWOT analysis of major market segments

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