ONR High Speed Craft Development IHS / SNAME Joint Dinner Meeting 2 Dec 2004 Scott Littlefield ONR 33X (703) 588-2358

Slides:



Advertisements
Similar presentations
Jimmy E. Fowler Coastal and Hydraulics Laboratory
Advertisements

HIGH SPEED LIGHTERAGE ASSULT CONNECTOR JOINT SEABASED THEATRE ACCESS WORKSHOP FEBRUARY Dan McCluskey NAVFACHQ.
Overview of High-Performance Vehicles
T-Craft—What, Why & How? Dr. Alfred Skolnick and Mr. Robert A. Wilson
An Overview of DoD Military Energy NeedsAn Overview of DoD Military Energy Needs Sharon Beermann-Curtin ONR - Program Manager Power & Energy Technical.
9th EXPEDITIONARY WARFARE CONFERENCE
Hybrid Electric Vehicles Tri-Service Power Exposition July 16, 2003.
Office of Naval Research Sea-based Aviation: A National Naval Responsibility (NNR) Dr. Thomas J. Beutner, SES Director for Aerospace Sciences Research.
Water Transportation Systems
Heavy Lift and Long Duration Co-axial Unmanned Aerial Vehicles
Architecture Team Industry Day Briefing 17 January, 2002.
Univerity of Genova Department of Naval Architecture and Marine Technologies Department of Naval Architecture and Marine Technologies University of Genova,
USV Capability UUXO Partnership Workshop Michael Fetsch 10 October 2008.
Lockheed Martin Aeronautics Company PROPRIETARY STATEMENT GOES HERE Chart Number C-130J Program Overview Arlen Rens Lead Production Test Pilot Bratislava.
1 Logistics Analysis of the Littoral Combat Ship Logistics Analysis of the Littoral Combat Ship David Rudko and David Schrady Naval Postgraduate School.
Harbor Wing Technologies BMW/Oracle Winged Tri-maran Wins Americas Cup HWT engineers played design role Harbor Wing Technologies designs and develops computer.
NAVAL ANTI-SUBMARINE COMBATANT CRAFT (NASCC)
Modular Crane Control System (MCCS)
- 1 Littoral Combat Ship LCS Ft Worth leaving for first Sea Trial September 28, 2011.
Performance Prediction and Design Optimization
2015 Small Business Outreach and Industry Day
Chapter I. Introduction. Naval Architecture: the science and engineering of designing ships and other kinds of waterborne crafts. Kinds of ships Sub systems.
Off-Grid Power Markets 26 May The off-grid market consists of some of the largest industrial enterprises on the planet, operating in remote.
Advanced Marine Vehicles Monohulls Hovercraft MultihullsHydrofoils Round Bilge Semi-Displacement Hull Hard Chine Planing Hull Deeply Submerged Hydrofoil.
INTERNATIONAL WORKSHOP ON MARINE POLLUTION CONTROL 8 th June 2006, Athens (GR) OIL SEA HARVESTER TST4-CT ww.osh-project.org THE OIL SEA HARVESTER.
Copyright Coast Guard Auxiliary Association, Inc.
Flywheel Energy Storage for Regional Rail Vehicles Matthew Read 1, Roderick A Smith 1, Keith Pullen 2 1 Future Railway Research Centre, Department of Mechanical.
Approved for Public Release, Distribution Unlimited Mr. Scott Littlefield, Program Manager DARPA Tactical Technology Office May, 2015 Briefing prepared.
Nick Blake Sales Engineering Commercial Vehicles The Future in Motion.
Slamming Impact Loads on Large High-Speed Naval Craft ASNE 2008
Page 1 May 2010 © Siemens AG 2010 Industry / Drive Technologies Innovative Hybrid Drive Systems for Commercial Vehicles Industry – Drive Technologies Innovative.
Analysis of the suction wing propeller as auxiliary wind propulsion for cargo ships Philippe PALLU DE LA BARRIÈRE Jérôme VÉDRENNE NATURAL PROPULSION SEMINAR.
The Green Ferry: Low Emissions, Low Wake & Operational Efficiency Matt Mullett Chief Executive Officer ALL AMERICAN MARINE.
MPF(F) R&D MPF(F) Cargo Operations R&D Joint Seabased Theatre Access Workshop February Duck, NC Authors: Martin Fink, Arthur Rausch,
For Watercraft that work like your Car, You need Intelligent propulsion. Jeff Jordan, President IntelliJet Marine, Inc. Supported by Art Anderson Associates.
Tactical Stealth Visby as a Case Study Naval Postgraduate School
NDIA – Expeditionary Warfare Conference
MOBILE OFFSHORE BASE (MOB)
USDOT, RITA RITA: Oversight of USDOT’s R&D programs  University Transportation Centers $100M  UTC Consortia $80M  UTC Multimodal R&D $40M  Intelligent.
Rotorcraft Vision 2025 April 14, 2000 George Price NASA Ames Research Center
Whitelaw & Pearson The Costs of Increasing a Basic Shrimp Vessel from 65 to 85 FEET A Case Study.
Aeronautics Technology Where NASA is going….. Aeronautics Technology Environmentally Friendly Aircraft Smog-free No impact on global climate Noise within.
1 USS CORONADO (LCS-4) CDR John Kochendorfer Commanding Officer Blue Crew.
UNCLASSIFIED 1950’s Military assistance from USN 1980’s Stand alone shipbuilding 2010’s Shipbuilding for export Introduction of Korea Navy Logistics &
Derecktor and DAMEN have entered a license agreement to build DAMEN designs in the US This license includes the FCS 2008.
9/9/2009 J. Dalum ©2009, DUECO, Inc. Partners In Plug-in Hybrid Medium & Heavy Duty Trucks AB 118 Investment Plan Electric Drive Workshop – September.
RO/RO RAMP TO PLATFORM INTERFACE JLOTS & LOGISTICS FROM THE SEA R&D SYMPOSIUM January 2002 Jason Chang NAVSEA Carderock (301)
Seabasing Roadmap † : A Littoral Warfare Systems Perspective Dr. David P. Skinner, LWS Product Area Director October 2004 † Seabasing Roadmap N703/N75.
UNCLASSIFIED 13 Jan January 2004 LtCol Larry Ryder, USMC MCCDC USMC High Speed Vessel Project Overview.
Defense Science Board Task Force on Sea Basing. Summary of Conclusions Sea basing - a critical future national competence for assuring access to areas.
Research Advances Towards Low Cost, High Efficiency PEM Electrolysis Dr. Katherine Ayers Presented by: Larry Moulthrop NHA 2010, Long Beach, CA.
Rapid Strategic Lift Ship (RSLS) FY 04 Feasibility Studies February 2005 SEABASE CONUS Steven Wynn NAVSEA 05D1
© Wärtsilä ASNE November 2004 Advanced Naval Propulsion Symposium By: Teus van Beek Hanno Schooman Dick Boardman Hybrid Propulsion System.
UNIT 2 MARINE VEHICLES Marine vehicles operate in or on water, for the purposes of transportation, recovery of natural resources, warfare, research or.
Introduction To Transportation Technology of Today Mr. Plansinis.
Water Transportation Technology Of Today Mr. Plansinis.
Optimum Pump Performance for Process Applications
Korea Navy Logistics & Future Tasks
Update on Contract Opportunities
Fluid Mechanics : Fundamentals and Applications
THE OIL SEA HARVESTER SYSTEM :
Unmanned Systems Aerospace Engineering
Moving toward Virtual Vehicle Development
Unmanned Systems Aerospace Engineering
Joint Protection of the Sea Base
ADAM4EVE workshop on Adaptive Ship Hull Forms
Joint ACCESS: Amphibious Combat Cargo Expeditionary Support Ship
ABB in Marine Industry A short introduction
Energy Huntsville Opportunity Report September 2016
TMR4225 Marine Operations, ROV systems:
Presentation transcript:

ONR High Speed Craft Development IHS / SNAME Joint Dinner Meeting 2 Dec 2004 Scott Littlefield ONR 33X (703)

“To plan, foster and encourage scientific research in recognition of its paramount importance as related to the maintenance of future naval power and the preservation of national security.” Public Law 588 (1946) Naval Research Mission Thomas Edison Vannevar Bush Harry Truman Josephus Daniels

Experimental Ship Programs

ONR Programs – Small Fast Ships and Craft Delivering a complete vessel (from large to small): – X-Craft (including HDV-100) – Hybrid Small Waterplane Area Craft / Lifting body technology (Sea Flyer) – High Speed Cargo Craft (Sea Coaster) – Small Watercraft Demonstrator – Unmanned Sea Surface Vessel High Speed Variant Low Speed Variant Delivering designs or component technology: – Composite High Speed Vessel – Composite Special Operations Craft – High Speed, Heavy Lift Shallow Draft Craft (aka V-ALT); may lead to a complete vessel demo. – Agile Port and High Speed Ship Technology – Project Endeavor Other Programs: Advanced Electrical Systems (including electric propulsion), Hydrodynamics, Advanced Structural Materials, Coatings, Environmental Quality...

How did we get here? Customer Pull: Recent Navy interest in small, fast ships Seabasing Concepts Customer Pull: Recent Navy interest in small, fast ships Seabasing Concepts Congressional Push: Additional funding for small, fast ships and related technology Congressional Push: Additional funding for small, fast ships and related technology

Navy vs. Commercial - What’s the same? What’s different? - High SpeedXXX Good SeakeepingXX High Payload FractionXX SurvivableXX~ Low SignatureXXNo Shallow Draft / BeachableXXNo R&D BudgetLargeSmall Technical Risk ToleranceMediumLow Navy Commercial

Navy Investment Leading to a Commercial Sale Lockheed Martin Awarded Contract Worth More Than $25 Million to Deliver Two Crew Boats to Mexico Vessels Will Be Used to Transport People and Cargo to Oil Rigs BALTIMORE, Oct. 18 / PRNewswire-FirstCall / -- Lockheed Martin (NYSE: LMT) was recently awarded a contract valued at more than $25 million to perform detailed design, construction, test and delivery of two Small Waterplane Area Twin Hull (SWATH) crew transport vessels that will provide service to Mexico's national oil company, PEMEX. The Lockheed Martin design is based on its SLICE(R) Small Waterplane Area hull form. The contract, awarded to Lockheed Martin by Hoteleria y Servicios Petroleros, S.A. de C.V. (HSP), calls for the delivery of two SWATH crew transport vessels that can safely and swiftly transport people and limited cargo from Ciudad del Carmen to the Campeche Basin Oil Field 90 miles offshore...LMT Lockheed Martin Awarded Contract Worth More Than $25 Million to Deliver Two Crew Boats to Mexico Vessels Will Be Used to Transport People and Cargo to Oil Rigs BALTIMORE, Oct. 18 / PRNewswire-FirstCall / -- Lockheed Martin (NYSE: LMT) was recently awarded a contract valued at more than $25 million to perform detailed design, construction, test and delivery of two Small Waterplane Area Twin Hull (SWATH) crew transport vessels that will provide service to Mexico's national oil company, PEMEX. The Lockheed Martin design is based on its SLICE(R) Small Waterplane Area hull form. The contract, awarded to Lockheed Martin by Hoteleria y Servicios Petroleros, S.A. de C.V. (HSP), calls for the delivery of two SWATH crew transport vessels that can safely and swiftly transport people and limited cargo from Ciudad del Carmen to the Campeche Basin Oil Field 90 miles offshore...LMT

NAVY 3,000 tons 50 kts ARMY 10,000 tons 70 kts High Speed Craft Technical Issues Overarching Need Maintain useful payload fraction and range while increasing speed Propulsion Metrics: Power Density Efficiency Technologies: Engine / Drive train Mechanical drive vs. electric drive Propulsor choice Hull Forms Metrics: Minimize drag (friction, form, and wave making) Technologies: Optimize hull form Control emersion (dynamic lift) Fluid drag reduction Hull Materials Metrics: Strength vs. weight Cost Corrosion resistance Maintainability Technologies: High strength steel Aluminum Composites Coatings Ride Control Metrics: Stable, smooth Controllable / adjustable Technologies: Environmental sensing Controllers and Algorithms Control surfaces and actuators

Displacement Monohulls Displacement Multihulls SWATH & Variants Planning Hulls SES Hovercraft Hydrofoils Lifting Body & Hybrids Speed Seakeeping Payload Range 25-40knots SOA Hull Form Versus Performance Features ~50 knots knots ~45 knots knots knots knots knots Good at Speed with Ride Control Excellent all Around High Accelerations Good with Ride control Moderate with Ride control Excellent at High Speed Good Low Moderate Low TBD Good High Trans-Ocean Excellent Trans-Ocean Short Range, Size dependent Short Range, Size dependent Short Range, Size dependent Short Range, Size dependent

10 Purpose - Support future concept development of Littoral Combat Ship by: Concept development for 50 kt craft. Evaluate one form of mission modularity. ABS rules development for High Speed Craft-Naval Craft. Science & Technology: Hydrodynamic experimentation (experimental data suite) – Measure fluid flow, motions, dynamic loads, stresses, and speed/power requirements. At sea experimentation with advanced mission systems. X-Craft Delivery Spring 2005 X-Craft DIMENSIONS Length (overall):262’/79.9m Length (at waterline):240’/73m Beam:72’/21.05m Draft (scantling):12’/3.6m Full Load Displacement:1150 T Light Ship Displacement:820 T PERFORMANCE Maximum Speed (Combat Load*):50+ kts Maximum Speed (S/S 4):40+ kts Maximum Speed (Diesels only):20+ kts Shaft Power (ISO):2x 33.6KHP Range:4000 NM

Launch/Recovery/RORO Ramp Mission Modules X-Y Crane Elevator X-Craft

Stern Ramp Waterjet Firescout Stern View

Purpose: Large scale technology demonstration for lifting body hull forms and advanced ride control systems. Possible roles in drag reduction research, high-speed training, and operational demonstrations. Sea Flyer

Purpose: Demonstration platform for evaluating the commercial and military potential for high speed lifting bodies combined with Deep-V hull forms Science & Technology: Test advanced ride control system at high-speed High speed propulsion system evaluation (surface drives and controllable pitch propeller on center line) Evaluate synergistic effects of “ Serter Deep-V ” monohull and “ Blended Wing Lifting Body ” Drag Reduction - fluid tested on lifting body Length: 100 Feet FLD: 98 LT Propulsion: 4 Propulsion Diesels Propulsors: 2 Surface Drives and 1 Controllable pitch propeller Speed: 50 knots in calm seas in full load condition 40 knots in Sea State 4 Seakeeping: Operational through S/S 4; survivable through S/S 5 Specifications: HDV- 100

Purpose: Explore hybrid lifting body and other ship hull form technologies in the smaller displacements needed for rapid response craft. Explore Hybrid propulsion. Science & Technology: Practical hybrid configurations in the 34 to 50 foot length regime Speeds from 35 to 60+ knots Variety of high-performance technologies to gain insight into the hydrodynamics of small high-performance craft. Combined diesel-electric/diesel-mechanical propulsion alternatives Alternate lift augmentation devices Improved surface drive propulsors Specifications for SDV 45 : Length:50 Feet Beam:14Feet Displacement:12 LT (full load) Draft 3.8Feet Propulsion:Diesel/Elect. 2X700 HP Propulsor:Surface Piercing Propellers (2) Speed:45 knots in calm full load Seakeeping:Superior motions from zero to full speed through SS 3 Small Rapid Response Watercraft Demonstrator (SWD)

CCD0TT Purpose: Characterize the hydrodynamic performance, structural loading, and other related features of various advanced monohulls, lifting body and monohull/lifting body hybrid hull forms Science & Technology: Plans: Advanced Lifting Body Research  Actual SEA FLYER loads from at-sea tests  Innovative propulsion concepts  Advanced ride control systems and force effectors  Hull design paradigms for hybrid forms  CFD predictions for realistic configurations  Computer simulation models and tools Structural analysis of lifting body, struts, attachments and impacts on parent hulls. Advanced hull and lifting body scientific studies. Innovative propulsion, drag reduction, and powering efficiency alternatives and technologies. Innovative ride control systems approaches, methodologies, and technologies. Modeling and analysis tools and methods. C pd Baseline Optimized Cavitation speed = 47.3kts

Purpose: Investigate and validate technology to support development of a high speed cargo craft Science & Technology: Speed/Power relationships Sea Keeping (motions & accelerations) Structural Response & Integrity Approach: Design 100 ft air cavity test vessel Test & Evaluate at sea Naval Relevance/Impact: Novel hull form High speed vessel Very shallow draft – potentially beachable Status: Construction Complete, undergoing trials. Sea Coaster High Speed Cargo Craft (HSCC)

Purpose: Demonstrate the capability of a new hull form technology to enable logistic support directly to shore Advanced hull form with unique contra-rotating propeller/water jet propulsion Adaptation of SEA SLICE hull form technology Variable geometry hull form: SWATH mode, landing craft mode, intermediate mode enabled by a movable payload deck Large-scale demonstrator craft Design Features for 1/2 Scale Demonstrator: V-ALT Advanced Littoral Transport Length:148 Feet Beam: 54 Feet Displacement:469 LT (full load) Payload: 60 LT Barge Draft: 3 Feet SWATH Draft: 11.5 Feet Speed: 20 Knots Propulsion:Diesel Direct Propulsors:Twin Contra-rotating propellers and twin water jets Seakeeping:Operable in SS 5 (SWATH mode) VariCraft Concept (V-ALT)

CCD0TT Agile Port and High Speed Ship Technologies Center for the Commercial Development of Transportation Technologies (CCDoTT) Agile Port and High Speed Ship Technologies Center for the Commercial Development of Transportation Technologies (CCDoTT) Purpose: Develop enabling technologies for maritime related Defense Transportation Systems while improving the productivity of defense related commercial shipping and inter-modal transfer/support systems High Speed Trimaran (HST) Science & Technology: Model test and evaluation of advanced axial flow water jets Automated design optimization of multi-hull vessels Large, high speed trimaran (HST) technology development Concept design development of Very Stable Mobile Ocean Platform Magnetic levitation freight transport system, port to inland port Operational Concept Document (OCD) and analysis for military deployment through Agile Port System with inland port.

Purpose: Understand and demonstrate purpose-built Unmanned Surface Vehicles, with a focus on HM&E technologies, Optimize speed, payload, range and seakeeping characteristics, Demonstrate an automated launch and retrieval system for USVs. Science & Technology: Determine performance envelope of purpose-built unmanned craft Approach: Evaluate trade-space for USVs Design, build and conduct at-sea testing of two purpose-built vehicles. Naval Relevance/Impact: MCM / ASW Anti-Terrorism/Force Protection Intelligence, Surveillance & Reconnaissance Status: Two prototypes under construction for testing in Unmanned Sea Surface Vessel [USSV]

Propulsion

USS Jupiter Early example of Electric Drive

Enable Transformational Weapons Systems – Electromagnetic Guns – Shipboard Laser Systems – Advanced Sensors Improve Survivability – Rapid and anticipatory Reconfiguration of Power and systems Reduce Signatures – Eliminates propulsion gear noise – Enables lower speed propellers – Enables silent watch capabilities Reduce Life Cycle Costs – Reduction in Number of Prime Movers – Significantly Greater Fuel Efficiency – Eliminate high maintenance hydraulic systems Why Is the Navy Going Electric?

Small Combatant Large Amphib Large Combatant Electric Warship Propulsion Ship Service Weapons & Sensors (portion of ship service) Today’s Combatants Future Combatant Power Attack Mission Multiple Lasers or EM Guns Area Protection Lasers TBMD Advanced Radar Ship Defense Directed Energy Weapons Expected Growth in Power Requirements

Ship Service Fuel Cell Programs 625kW Molten Carbonate Ship Service Power Fuel Cell System using Diesel Fuel 50% EFFICIENT 500kW Integrated Fuel Processor (IFP) compatible with PEM Fuel Cell, using Diesel Fuel 37% EFFICIENT 37 – 50% EFFICIENT QUIET OPERATION LOW ATMOSPHEREIC EMISSIONS

High Temperature Superconducting AC Synchronous Motor

Advanced Electric Ship Demonstrator (AESD) Rolls Royce - AWJ21 Craft Configuration Hydroacoustically Quiet Hull Form Advanced Motor Controller: Multi-Level Topology Reconfigurable Design Parameters LOA = 133’, LWL = 130’, BOA = 14.5’ Displacement = 107 LT Diesel / Electric 500HP per Shaft x2 16 knots Required for T&E Quiet Battery/Diesel Power System: Large Battery Energy Storage System Quiet Diesel Loiter/Charging System AWJ21 Waterjet

What’s Next?

Sea Basing! MPF(F) Advance Base High Speed Connector (HSC) Improved Shore (Pier, Causeway, etc.) LCAC Truck LCAC HSC (RO,RO) “It’s all about throughput”

Questions?