The case of Poseidon Med, LNG Bunkering Challenges at...
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Transcript of The case of Poseidon Med, LNG Bunkering Challenges at...
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The case of Poseidon Med, LNG Bunkering Challenges at Port
Panayiotis Mitrou
Technology & Innovation ManagerMarine & Offshore, Business Development
Gasnam Congress8th March 2017
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2
Med LNG Projects
3 projects 100 Partners125 million
Euro
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3
Med LNG Projects
Planning Analysis Implementation Study Detailed Pilot Studies Regulatory Gap Analysis Proposal
Detailed Safety Assessments Detailed Technical Studies Works Regulatory action follow up
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Poseidon Med II Overview
Objectives, partners etc3 EU Countries
Sustainable LNG
pricing patters
Executive Design
and Construction
17 Project
Activities
Complete Ports
and LNG
infrastructure
study
Regulatory
Framework
Adaptation
Complete
network of
ports
Sustainable
Financing
Schemes
10+ Vessels
Retrofits
7 diverse types of
studies on vessels
and bunkering
operations
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Activity 1 Project Management
Activity 2 Dissemination
Activity 3 Social & public consultation - awareness
Activity 4 Installation Financial assessment
Activity 5 Financial Instrument for Global Project Inv
Activity 6 Environmental, Safety, & Detailed Site Planning studies
Activity 7 Updating of the Ports Master Plans
Activity 8 Supporting (Baseline) Engineering Studies
Activity 9 Preliminary Eng. design additional harbour infrastr
Activity 10 Environmental and Safety Studies
Activity 11 Final Construction eng design additional port infrastr.
Activity 12 Tender Documents
Activity 13 Adaptation and implementation regulatory framework on LNG bunkering
Activity 14 Vessel Installations
Activity 15 Pilot Case: Executive Design and Construction of an Innovative LNG Vessel
Activity 16 Efficient Supply Chain (Logistics) Activities
Activity 17 Sustainable LNG pricing patterns
POSEIDON MED Activities: 17 in total
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6
POSEIDON MED Aspects
Regulatory Framework
Engineering Studies
Environmental Assessment
Statutory Permissions
Financial Assessment
Infrastructure
Vessels Consumers
Ports Layout Assessment
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Poseidon Med II Key Activities
LNG Small Scale Carrier
Basic Particulars:
L max = 120 m
B = 19.4 m
D= 10.9 m
T= 5.8 m
Cargo tank capacity :
6,000-6,500 m3
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Poseidon Med II Key Activities
Shipyard Preparedness
Diagnosis on the practical aspects of the shipyard fabrication, welding and NDE
operations
Assess the shipyards design and construction capability, quality and
management systems, and competence of production and inspection personnel
for successful delivery of a gas carrier.
During the process of the assessment, the shipbuilder will:
gain knowledge on those challenges for the design and construction of gas
carriers
identify which aspects shall be addressed during design and construction
identify shortages on manning, knowledge and skills
implement an action plan to close whatever shortages have been identified
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Poseidon Med II Key Activities
Regulatory Framework Follow up From theory to Legislative Action
Training, Human factors, developing the competencies library, assessing the roles on scene POAC
Bunkering and Procedures Manuals (for Ports): Look at bottom up (local, national) and top down (international approaches and studies) input from PosMed I and combine with E.I.A. studies to be submitted
Gas Market: Dynamics and Stakeholders that play a role revisions of certain laws and legislation to incorporate bunkering and the shipping aspect Big Gas Players to contribute
Synergies and lessons learnt engagement of Authorities at all levels contact/workshops/meetings/understanding
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Issues identified SIMOPS Exclusion Zones ,Risk acceptance Criteria , Methodology Quantity and Quality Shipowners contribution Training Ship & Shore, STS , Bunkering Installations Bunker barge conversion Technical feasibility IGC compliance with
Hellenic Authorities Gas Engines leasing , Re- engining packages Engines kits warranties, implications Key Technical issues
Tank Connection Space arrangements ( Categorisation of spaces) Vent location Bunkering rates and operations Tank arrangements in relation with IGF provisions Standardising connections and manifolds Shiptype influences decisions (double hull or high speed , small size)
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Completion of all HAZID workshop Completion of Exclusion Zone Assessment
for all ports Completion of all Navigational Simulation
workshops Shipyard Preparedness Assessment HAZID for vessel (Festos Palace) retrofit
designs Submission and under preliminary review
of new buildings designs for LNG barge and LNG Feeder vessels
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Work so far
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Port Layout Assessment
HAZIDs
Visits and two-day workshops
Scenario Interactions with vessels
Routes , discussions, master plans
Multi-criteria Site Evaluation
Infrastructure, Terminals ,
Synergies
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Port Studies Layout and Solutions
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Infrastructure and permitting case of Patras
Poseidon Med Evaluation & Study process
Confrontation of negative perceptions
- Effective addressing of concerns
from Member of Parliament
Public Consultation, robust
argumentation and presentation of
solutions
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Safety studies
Risk assessment
Navigational simulation
Exclusion zones
Vessel Track
Vessel: Amaltheia 7 (L)Harbour: WorldCreated: 30/11/2016 10:03
Wind: 35.00 kts 215 (Gusting)Current: 0.00 kts 0 Depth: Chart Datum
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Port Studies Risk Assessment
Site Survey
Feasible types of bunkering operations
Bunkering fuel capacity requirements
Impact of LNG bunker barge operations onto marine traffic operations
Address traffic control, quay operations, port support operations and emergency response.
ship-to-ship (STS) alongside at jetty and LNG truck-to-ship (TTS) operations.
Specific Recommendations and actions.
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16
Port Studies Navigational Simulation
Verify the safe passage of LNG barge and feeder vessels
Verify the safe manoeuvre of feeder vessel and barge for berthing alongside
Verify the number and size of tugs required
Identify appropriate abort/emergency procedures.
Vessel Track
Vessel: LNG Carrier 005 (L)Harbour: PatrasCreated: 29/11/2016 08:42
Wind: 18.00 kts 245 (Gusting)Current: 1.00 kts 45 Depth: Variable
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Bunkering Operations from A to Z solutions offered
ASSOCIATED STUDIES
Hazard Identification (HAZID) Study Bunkering Hazard Operability (HAZOP) Study Navigation Simulation Study Consequence Modelling (For Bunkering Safety Zone
Determination) Port LNG Bunkering Operating Procedures Development of a step-by-step methodology encompassing all
phases of bunkering operations to establish Financial Analysis and LNG Demand Forecasting
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Prescriptive Requirements of limited application
More robust techniques required One transparent and common solution
in terms of a :
Unified Risk Assessment Methodology
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Common Methodology in assessing risk differences in operations e.g. Cruiseships vs Tugs
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20
LNG Port Operations Safety of Infrastructure Basic idea of LNG bunkering ship
Small scale LNG carrier + Special equipment on board
Technical Issues Design issues
LNG storage Use of LNG on LNG bunkering ship Way to handle BOG from own LNG
tank and from LNG receiving ship Way to transfer LNG to LNG receiving
ship
LNG tank Propulsion system and LNG fuel supply
system LNG bunkering interface with LNG
receiving ships Special equipment on board
Requirement for LNG tanks:
Flexibility in partial cargo loading Easy boil-of gas management (To cope with unfixed bunkering
schedule) Low boil-off rate (To avoid loss of quality and amount of cargo) Low cost and low weight
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LNG Port Operations Safety of Infrastructure
Portfolio of Solutions Assessedfrom safety, technical and economic aspects
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Port Operations Safety of Infrastructure
Solutions :
Port Market Questionnaire - Ship Types
/ Service Routes
LNG Fuel Calculating Tool
Site Evaluation Study (HAZID) Best
Option
Storage /Offloading Evaluation - Best
Option
Finalise GA bunkering jetty facilities /
Specific Studies
Update Port Master Plan
Bunkering Operations HAZOP STS,
TTS
Challenges:
LNG Service Requirements
Port lay-out feasibility
LNG Supply/Storage Options
Type of Bunkering (STS, TTS,
PTS)
Ship operations / turnaround
time
Ensure Safety of Service
Ensure Port/Public Safety
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LNG Supply Infrastructure LNG Supply Scenarios to Port of
Vancouver LNG Bunkering Operations LNG Bunkering Assets LNG Bunkering System LNG Bunker Quantity Measurement Port Control Operations STS Bunkering Operations at Location
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Other Studies - Vancouver