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China's Merchant Marine
“China’s Merchant Marine” A paper for the China as “Maritime Power” Conference July 28-29, 2015 CNA Conference Facility Arlington, Virginia by Dennis J. Blasko1 Introductory Note: The Central Intelligence Agency’s World Factbook defines “merchant marine” as “all ships engaged in the carriage of goods; or all commercial vessels (as opposed to all nonmilitary ships), which excludes tugs, fishing vessels, offshore oil rigs, etc.”2 At the end of 2014, the world’s merchant ship fleet consisted of over 89,000 ships.3 According to the BBC: Under international law, every merchant ship must be registered with a country, known as its flag state. That country has jurisdiction over the vessel and is responsible for inspecting that it is safe to sail and to check on the crew’s working conditions. Open registries, sometimes referred to pejoratively as flags of convenience, have been contentious from the start.4 1 Dennis J. Blasko, Lieutenant Colonel, U.S. Army (Retired), a Senior Research Fellow with CNA’s China Studies division, is a former U.S. army attaché to Beijing and Hong Kong and author of The Chinese Army Today (Routledge, 2006).The author wishes to express his sincere thanks and appreciation to Rear Admiral Michael McDevitt, U.S. Navy (Ret), for his guidance and patience in the preparation and presentation of this paper. 2 Central Intelligence Agency, “Country Comparison: Merchant Marine,” The World Factbook, https://www.cia.gov/library/publications/the-world-factbook/fields/2108.html. According to the Factbook, “DWT or dead weight tonnage is the total weight of cargo, plus bunkers, stores, etc., that a ship can carry when immersed to the appropriate load line. -
In This Issue …
In This Issue … INLAND SEAS®VOLUME 72 WINTER 2016 NUMBER 4 MAUMEE VALLEY COMES HOME . 290 by Christopher H. Gillcrist KEEPING IT IN TRIM: BALLAST AND GREAT LAKES SHIPPING . 292 by Matthew Daley, Grand Valley State University Jeffrey L. Ram, Wayne State University RUNNING OUT OF STEAM, NOTES AND OBSERVATIONS FROM THE SS HERBERT C. JACKSON . 319 by Patrick D. Lapinski NATIONAL RECREATION AREAS AND THE CREATION OF PICTURED ROCKS NATIONAL LAKESHORE . 344 by Kathy S. Mason BOOKS . 354 GREAT LAKES NEWS . 356 by Greg Rudnick MUSEUM COLUMN . 374 by Carrie Sowden 289 KEEPING IT IN TRIM: BALLAST AND GREAT LAKES SHIPPING by Matthew Daley, Grand Valley State University Jeffrey L. Ram, Wayne State University n the morning of July 24, 1915, hundreds of employees of the West- Oern Electric Company and their families boarded the passenger steamship Eastland for a day trip to Michigan City, Indiana. Built in 1903, this twin screw, steel hulled steamship was considered a fast boat on her regular run. Yet throughout her service life, her design revealed a series of problems with stability. Additionally, changes such as more lifeboats in the aftermath of the Titanic disaster, repositioning of engines, and alterations to her upper cabins, made these built-in issues far worse. These failings would come to a disastrous head at the dock on the Chicago River. With over 2,500 passengers aboard, the ship heeled back and forth as the chief engineer struggled to control the ship’s stability and failed. At 7:30 a.m., the Eastland heeled to port, coming to rest on the river bottom, trapping pas- sengers inside the hull and throwing many more into the river. -
TOP Tankers Inc
TOP Tankers Inc. October 2005 NASDAQ: “TOPT” Page 1 Disclaimer Forward-Looking Statements This presentation contains forward-looking statements within the meaning of applicable federal securities laws. Such statements are based upon current expectations that involve risks and uncertainties. Any statements contained herein that are not statements of historical fact may be deemed to be forward-looking statements. For example, words such as “may,” “will,” “should,” “estimates,” “predicts,” “potential,” “continue,” “strategy,” “believes,” “anticipates,” “plans,” “expects,” “intends” and similar expressions are intended to identify forward-looking statements. Actual results and the timing of certain events may differ significantly from the results discussed or implied in the forward-looking statements. Among the factors that might cause or contribute to such a discrepancy include, but are not limited to, the risk factors described in the Company’s Registration Statement filed with the Securities and Exchange Commission, particularly those describing variations on charter rates and their effect on the Company’s revenues, net income and profitability as well as the value of the Company’s fleet. Page 2 Evangelos J. Pistiolis, Chief Executive Officer Page 3 Founder & Continued Equity Sponsorship Dynamic Founder & Continued Equity Sponsorship Entered shipping business in 1992, tankers in 1999 July 2004, $135.1m IPO acquired 2 DH Suezmax and 8 DH Handymax tankers November 2004, $148.1m follow-on, acquired 5 DH Suezmax tankers 2005, Organic Growth: -
Glossary of Nautical Terms: English – Japanese
Glossary of Nautical Terms: English – Japanese 2 Approved and Released by: Dal Bailey, DIR-IdC United States Coast Guard Auxiliary Interpreter Corps http://icdept.cgaux.org/ 6/29/2012 3 Index Glossary of Nautical Terms: English ‐ Japanese A…………………………………………………………………………………………………………………………………...…..pages 4 ‐ 6 B……………………………………………………………………………………………………………………………….……. pages 7 ‐ 18 C………………………………………………………………………………………………………………………….………...pages 19 ‐ 26 D……………………………………………………………………………………………..……………………………………..pages 27 ‐ 32 E……………………………………………………………………………………………….……………………….…………. pages 33 ‐ 35 F……………………………………………………………………………………………………….…………….………..……pages 36 ‐ 41 G……………………………………………………………………………………………….………………………...…………pages 42 ‐ 43 H……………………………………………………………………………………………………………….….………………..pages 49 ‐ 48 I…………………………………………………………………………………………..……………………….……….……... pages 49 ‐ 50 J…………………………….……..…………………………………………………………………………………………….………... page 51 K…………………………………………………………………………………………………….….…………..………………………page 52 L…………………………………………………………………………………………………..………………………….……..pages 53 ‐ 58 M…………………………………………………………………………………………….……………………………....….. pages 59 ‐ 62 N……………….........................................................................…………………………………..…….. pages 63 ‐ 64 O……………………………………..........................................................................…………….…….. pages 65 ‐ 67 P……………………….............................................................................................................. pages 68 ‐ 74 Q………………………………………………………………………………………………………..…………………….……...…… page 75 R………………………………………………………………………………………………..…………………….………….. -
ANNUAL REPORT 2016 Corporate Profile
ANNUAL REPORT 2016 Corporate Profile Diana Shipping Inc. (NYSE: DSX) is a global provider of shipping transportation services. We specialize in the ownership of dry bulk vessels. As of April 28, 2017 our fleet consists of 48 dry bulk vessels (4 Newcastlemax, 14 Capesize, 3 Post-Panamax, 4 Kamsarmax and 23 Panamax). The Company also expects to take delivery of one Post-Panamax dry bulk vessel by the middle of May 2017, one Post-Panamax dry bulk vessel by the middle of June 2017 as well as one Kamsarmax dry bulk vessel by the middle of June 2017. As of the same date, the combined carrying capacity of our fleet, excluding the three vessels not yet delivered, is approximately 5.7 million dwt with a weighted average age of 7.91 years. Our fleet is managed by our wholly-owned subsidiary Diana Shipping Services S.A. and our established 50/50 joint venture with Wilhelmsen Ship Management named Diana Wilhelmsen Management Limited in Cyprus. Diana Shipping Inc. also owns approximately 25.7% of the issued and outstanding shares of Diana Containerships Inc. (NASDAQ: DCIX), a global provider of shipping transportation services through its ownership of containerships, that currently owns and operates twelve container vessels (6 Post-Panamax and 6 Panamax). Among the distinguishing strengths that we believe provide us with a competitive advantage in the dry bulk shipping industry are the following: > We own a modern, high quality fleet of dry bulk carriers. > Our fleet includes groups of sister ships, providing operational and scheduling flexibility, as well as cost efficiencies. -
Dictionary.Pdf
THE SEAFARER’S WORD A Maritime Dictionary A B C D E F G H I J K L M N O P Q R S T U V W X Y Z Ranger Hope © 2007- All rights reserved A ● ▬ A: Code flag; Diver below, keep well clear at slow speed. Aa.: Always afloat. Aaaa.: Always accessible - always afloat. A flag + three Code flags; Azimuth or bearing. numerals: Aback: When a wind hits the front of the sails forcing the vessel astern. Abaft: Toward the stern. Abaft of the beam: Bearings over the beam to the stern, the ships after sections. Abandon: To jettison cargo. Abandon ship: To forsake a vessel in favour of the life rafts, life boats. Abate: Diminish, stop. Able bodied seaman: Certificated and experienced seaman, called an AB. Abeam: On the side of the vessel, amidships or at right angles. Aboard: Within or on the vessel. About, go: To manoeuvre to the opposite sailing tack. Above board: Genuine. Able bodied seaman: Advanced deckhand ranked above ordinary seaman. Abreast: Alongside. Side by side Abrid: A plate reinforcing the top of a drilled hole that accepts a pintle. Abrolhos: A violent wind blowing off the South East Brazilian coast between May and August. A.B.S.: American Bureau of Shipping classification society. Able bodied seaman Absorption: The dissipation of energy in the medium through which the energy passes, which is one cause of radio wave attenuation. Abt.: About Abyss: A deep chasm. Abyssal, abysmal: The greatest depth of the ocean Abyssal gap: A narrow break in a sea floor rise or between two abyssal plains. -
Scorpio Tankers Inc. Company Presentation June 2018
Scorpio Tankers Inc. Company Presentation June 2018 1 1 Company Overview Key Facts Fleet Profile Scorpio Tankers Inc. is the world’s largest and Owned TC/BB Chartered-In youngest product tanker company 60 • Pure product tanker play offering all asset classes • 109 owned ECO product tankers on the 50 water with an average age of 2.8 years 8 • 17 time/bareboat charters-in vessels 40 • NYSE-compliant governance and transparency, 2 listed under the ticker “STNG” • Headquartered in Monaco, incorporated in the 30 Marshall Islands and is not subject to US income tax 45 20 38 • Vessels employed in well-established Scorpio 7 pools with a track record of outperforming the market 10 14 • Merged with Navig8 Product Tankers, acquiring 27 12 ECO-spec product tankers 0 Handymax MR LR1 LR2 2 2 Company Profile Shareholders # Holder Ownership 1 Dimensional Fund Advisors 6.6% 2 Wellington Management Company 5.9% 3 Scorpio Services Holding Limited 4.5% 4 Magallanes Value Investor 4.1% 5 Bestinver Gestión 4.0% 6 BlackRock Fund Advisors 3.3% 7 Fidelity Management & Research Company 3.0% 8 Hosking Partners 3.0% 9 BNY Mellon Asset Management 3.0% 10 Monarch Alternative Capital 2.8% Market Cap ($m) Liquidity Per Day ($m pd) $1,500 $12 $10 $1,000 $8 $6 $500 $4 $2 $0 $0 Euronav Frontline Scorpio DHT Gener8 NAT Ardmore Scorpio Frontline Euronav NAT DHT Gener8 Ardmore Tankers Tankers Source: Fearnleys June 8th, 2018 3 3 Product Tankers in the Oil Supply Chain • Crude Tankers provide the marine transportation of the crude oil to the refineries. -
Glossary of Nautical Terms & References
Canadian Coast Guard Auxiliary Search & Rescue Crew Manual GLOSSARY OF NAUTICAL TERMS & REFERENCES Glossary of Nautical Terms 245 Bearing – The direction in which an object lies A with respect to the reference direction. Bearing, Collision – A set of bearings taken on a Abaft – In a direction towards the stern. converging vessel in order to determine if a danger of collision exists. Abeam – On the beam; a direction at right angles to the keel. Bearing, Compass – A bearing relative to the Ship’s Compass North. Aboard – In or on board the vessel. Bearing, Magnetic – A bearing relative to the Afloat – A vessel totally supported by water and Magnetic North. off the bottom. Bearing, Relative – A bearing relative to the ship’s Aft – At or towards the stern. heading or bow of the vessel. Ahead – In the direction of the vessel’s head or Bearing, Ring – A ring fitted over a compass and bow. equipped with sighting lines for observing Aid to Navigation – A device or object, external to compass bearings. the vessel, located to assist in safe navigation. It Bearing, True – A bearing relative to True North. may be natural, a man-made structure or object. Beating – The procedure of sailing or running to Air Accident – A SAR Incident where the original windward with alternate tacks across the wind. vehicle of transportation of the persons involved was an airborne vehicle, regardless of Belay – To make fast a rope on a cleat by taking where the vehicle came to rest. turns. Amidships – In the middle of the ship, whether Bifurcation Buoy – A buoy that marks where a longitudinally or laterally. -
AFRAMAX Tanker Design
The Society of Naval Architects and Marine Engineers (SNAME) Greek Section – Technical Meeting 15. March 2012, Athens HOLISTIC SHIP DESIGN OPTIMISATION: Theory and Applications by Apostolos Papanikolaou National Technical University of Athens - NTUA Ship Design Laboratory – SDL http://www.naval.ntua.gr/sdl A. Papanikolaou HOLISTIC SHIP DESIGN OPTIMISATION 1 List of contents 1. Introduction to Holistic Ship Design Optimisation • Important Design Optimization Notions • Holistic Optimisation Methodology 2. Optimization of RoPax ships – Case study • Projects ROROPROB (2000-2003) and EPAN-MET4 (2004-2007) 3. Optimisation of High-Speed vessels • Project FLOWMART (2000-2003) 4. Holistic Optimisation of Tanker Ships – Projects SAFEDOR and BEST (2005-2011) • Multi-objective Optimization of Tanker Ships • Case study-reference ship • Alternative configurations • Discussion of results 5. Conclusions- The Way Ahead A. Papanikolaou HOLISTIC SHIP DESIGN OPTIMISATION 2 Important Design Optimization Notions (1) • Holism (from Greek όλος, meaning entire, total)-holistic The properties of a system cannot be determined or explained by looking at its component parts alone; instead of, the system as a whole determines decisively how the part components behave or perform. “The whole is more than the sum of the parts” (Aristotle Metaphysics) • Reductionism-reduction: is sometimes interpreted as the opposite of holism. “A complex system can be approached by reduction to its fundamental parts” • Holism and reductionism need, for proper account of complex systems, to be regarded as complementary approaches to system analysis. • Systemic and analytical approaches are also complementary and strongly related to holism and reductionism • Risk (financial): “A quantifiable likelihood of loss or of less-than-expected returns” • Risk (general): “A quantifiable likelihood of loss of an acceptable state or of a worse-than-expected state condition” • Safety: may be defined as “An acceptable state of risk” A. -
Panama Canal Expansion Impacts on Fleet Patterns and Challenges in Terminal Design Presented by Michael Horton, C
Panama Canal Expansion Impacts on Fleet Patterns and Challenges in Terminal Design Presented by Michael Horton, C. Eng, P.E. Agenda • Panama Canal Expansion, the Coming Fleet – Fleet Vessel size – Container Vessel Size • Design Criteria , Present & Future – Terminal Requirements for the Future – Options for Berth Construction • Challenges, Moving Forward – Time – Money • Conclusions The New Generation Source: ACP Ready or Not? In 1995 the Regina Maersk was big at 6,500 TEU – 5,800 trucks – 25 barges – 550 cargo planes Regina Maersk (1995) Now We Have the Emma Maersk at 11,000 or 13,000TEUs Emma Maersk (2006) But Still Not The Biggest Vessel On The Water Typical Maritime Transport Costs Source: Delft University, “Containerization International Charter Market Report”, Drewry Container Market Review 2006-2007. Container Ship Dimensions by Capacity (averages) Capacity Draft LOA Beam (TEUs) (m) (m) (m) 2,000-2,999 11.6 239 31.5 3,000-3,999 12.1 259 32.4 4,000-4,999 13.0 284 33.2 5,000-5,999 13.7 281 39.0 6,000-6,999 13.9 302 40.6 7,000-7,999 14.6 343 42.6 8,000-8,999 14.3 329 42.8 9,000-9,999 14.7 344 44.0 >10,000 15.5 398 56.4 Immediate Demand (ECSA carrier) • (2010) - 6,300 TEUS: – Length: 300 Meters – Beam: 40 Meters – Draft: 14.5 Meters – DWT: 76,000 • (2014) - 8,800 TEUS: – Length: 338 Meters – Beam: 46 Meters – Draft: 15.5 Meters – DWT: 116,000 Vessel Size: Conclusion • Panama Canal sets the new top end? • Vessel size will be a factor of route, market potential and facilities availability • With or without the Canal expansion, terminal -
Ztráta Soběstačnosti ČR V Oblasti Černého Uhlí: Ohrožení Energetické Bezpečnosti? Bc. Ivo Vojáček
MASARYKOVA UNIVERZITA FAKULTA SOCIÁLNÍCH STUDIÍ Katedra mezinárodních vztahů a evropských studií Obor Mezinárodní vztahy a energetická bezpečnost Ztráta soběstačnosti ČR v oblasti černého uhlí: ohrožení energetické bezpečnosti? Diplomová práce Bc. Ivo Vojáček Vedoucí práce: PhDr. Tomáš Vlček, Ph.D. UČO: 363783 Obor: MVEB Imatrikulační ročník: 2014 Petrovice u Karviné 2016 Prohlášení o autorství práce Čestně prohlašuji, že jsem diplomovou práci na téma Ztráta soběstačnosti ČR v oblasti černého uhlí: ohrožení energetické bezpečnosti? vypracoval samostatně a výhradně s využitím zdrojů uvedených v seznamu použité literatury. V Petrovicích u Karviné, dne 22. 5. 2016 ……………………. Bc. Ivo Vojáček 2 Poděkování Na tomto místě bych rád poděkoval svému vedoucímu PhDr. Tomáši Vlčkovi, Ph.D. za ochotu, se kterou mi po celou dobu příprav práce poskytoval cenné rady a konstruktivní kritiku. Dále chci poděkovat své rodině za podporu, a zejména svým rodičům za nadlidskou trpělivost, jež se mnou měli po celou dobu studia. V neposlední řadě patří můj dík i všem mým přátelům, kteří mé studium obohatili o řadu nezapomenutelných zážitků, škoda jen, že si jich nepamatuju víc. 3 Láska zahřeje, ale uhlí je uhlí. (Autor neznámý) 4 Obsah 1 Úvod .................................................................................................................................... 7 2 Vědecká východiska práce ................................................................................................ 10 2.2 Metodologie .............................................................................................................. -
13.012 Hydrodynamics for Ocean Engineers Reading #3
13.012 Hydrodynamics for Ocean Engineers Reading #3 13.012 Hydrodynamics for Ocean Engineers Prof. A.H. Techet Fall 2004 Archimedes’s Principle and Static Stability “Any object, wholly or partly immersed in a fluid, is buoyed up by a force equal to the weight of the fluid displaced by the object.” “The apparent loss in weight of a body immersed in a fluid is equal to the weight of the displaced fluid.” I. Archimedes’s Principle: The force on a body due to pressure alone (in the absence of viscous forces) K F = ∫∫ p nˆ ds (3.1) S where pressure is a function of depth below the free surface: p(z) = −ρgz . (3.2) K F = ∫∫ p nˆ ds = − ρg ∫∫ z nˆ ds (3.3) S S By Calculus the surface integral can be converted into a volume integral (Gauss’s Theorem/Divergence Theorem): K K ∫∫G ⋅ nˆ ds = ∫∫∫∇ ⋅G dV (3.4) SV Thus equation becomes: K FpndsgzndsgdVgVk==−=∫∫ˆˆρρρ ∫∫ ∫∫∫ =ˆ (3.5) SSV version 3.0 updated 9/8/2004 -1- ©2003, 2004 aht 13.012 Hydrodynamics for Ocean Engineers Reading #3 We can see now that the buoyancy force acts to counterbalance the displaced volume of fluid. For a half submerged body the area of the water plane must be accounted for in the integration. II. Moment on a body (Ideal Fluid) The moment on a submerged body follows directly from structural mechanics or dynamics methodologies. K K M = p(x × nˆ) ds ≡ (M ,M ,M ) = (M ,M ,M ) (3.6) ∫∫ 1 2 3 x y z S Figure 1: x, y, z coordinate reference frame.