SUSTAINABLE SHIPPING AND PORT TRENDS. Habil. Dr., Captain, Prof. Vytautas Paulauskas Klaipeda Shipping Research Centre

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1 SUSTAINABLE SHIPPING AND PORT TRENDS Habil. Dr., Captain, Prof. Vytautas Paulauskas Klaipeda Shipping Research Centre

2 SUSTAINABLE SHIPPING AND PORT DEVELOPMENT WHOT IT IS? The aim of this presentation to inform about trends and developments of existing and developing types of ship fuels and optimal ships that can help shifting towards a sustainable shipping as well as environmentally sustainable port development

3 SHIPS IN BALTIC SEA Number of the ships in Baltic Sea (every day) Ships, which has length up to 100 m about %, that means about

4 TYPES OF VESSELS IN THE BALTIC

5 SHIPPING DENSITY IN THE SOUTHERN BALTIC ON

6 DFDS SEAWAYS RO-RO AND RO-PAX SHIPPING LINES NETWORK IN BALTIC SEA

7 DFDS SEAWAYS RO-RO VESSEL VICTORIA SEAWAYS (Optimal Ro-PAX vessel)

8 POSTPANAMAX BULK SHIP FAR EASTERN MERCURY (Optimal ships)

9 POSTPANAMAX TYPE TANKER HANNE KNUTSEN (Optimal ships)

10 POSTPANAMAX PLUS TYPE CONTAINER VESSEL COSCO HELLAS (Optimal ships)

11 MEGA TYPE CONTAINER VESSEL EMMA MAERSK (Optimal ships)

12 OPTIMAL SHIPS SHOULD MAINTAIN THE FOLLOWING LIAISON Cargo or passenger flows; Optimal ships based on cargo or passenger flows; Cargo or passenger transport geography; Environmentally friendly technical and technological solutions for ship energy and port development possibilities.

13 POSSIBLE ALTERNATIVE ENERGY USE FOR PORTS AND SHIPS LNG Solar Wind Tidal effects (not for the Baltic). Concurrently, ships at ports could use more shore power supplied from land based grid.

14 OIL TERMINALS ON EAST COAST OF THE BALTIC SEA Fig Oil terminals on East Coast of the Baltic Sea.

15 PLANNING AND FUNCTIONING GAS TERMINALS IN EAST BALTIC SEA PORTS

16 LNG INFRASTRUCTURE FOR SHIP FUELLING IS BEING DEVELOPED (DNV)

17 METHANOL FUEL CELL LOADING TO MV UNDINE

18 SAIL SHIP DAR MLODZIEZY (POLAND) UNDER SAILS

19 CARGO VESSEL WITH SKY SAIL

20 CARGO SHIP ESIP 1 WITH WIND ROTORS SYSTEM

21 TECHNICAL METHODS AVAILABLE TO REDUCE EMISSIONS FROM SHIPS Seawater scrubbing, (reduces SOx and PM); - Fuel water emulsion (reduces NOx); - Humid air motor (reduces NOx); - Direct water injection (reduces NOx); - Exhaust gas recirculation (reduces NOx); - Selective catalytic reduction, SCR (reduces NOx); - NOx traps (reduces NOx); - Selective non-catalytic reduction (reduces NOx); - Low sulphur fuels; - Biodiesel; - Methods to reduce CO2: hull design and maintenance, propeller design; - Dual fuel engine (reduces NOx); - Gas turbines (alternative for diesel engine); - Fuel cells (alternative for diesel engine).

22 SHIPS QUANTUM 9000 CONCEPT, THE LNG FUEL TANKS ARE LOCATED UNDERNEATH

23 SEA WATER SCRUBBER

24 SELECTIVE CATALYTIC REDUCTION INSTALLATION

25 LNG HYBRID BARGE (lnghybrid.com)

26 PRE-CONDITIONS USE LNG FUEL New SOx regulations for the Baltic Sea Ships fuel prices Environmental impact by the traditional ships fuel Limit of the traditional oil

27 KLAIPEDA PORT

28 KLAIPEDA PORT NAVIGATION CONDITIONS

29 LNG TERMINAL LOCATION

30 PLANNING KLAIPEDA LNG TERMINAL

31 FSRU IN KLAIPEDA LNG TERMINAL

32 KLAIPEDA LNG TERMINAL AND RO-RO SERVICES

33 REGULAR FERRY ROUTES IN THE SOUTH BALTIC SEA AREA

34 COMBI VESSEL WITH LNG ENGINE (DNV) (Example) (DNV)

35 PLANNING LNG FUEL FOR THE RO-RO SHIPS QUANTITIES IN KLAIPEDA PORT 8 10 Ro-Ro ships constantly work on Ro- Ro lines link Klaipeda port with other ports Ro-Ro ship in average should use per day up to m³ LNG Planning LNG fuel per week for the Ro-Ro ships (weekly bunkering) m³ LNG

36 PLANNING LNG FUEL FOR THE RO-RO SHIPS QUANTITIES IN EAST BALTIC Number of the Ro-Ro vessels visit East Baltic ports about (from Kaliningrad up to Tallinn) (object to LNG fuel) Weekly request of the LNG fuel for the Ro-Ro vessels m³

37 LNG FUEL POTENTIAL USERS Ships (mainly Ro-Ro vessels on first stage) Cities small boiler stations Cities public transport

38 REQUEST FACILITIES LNG supply ships (delivery LNG from LNG terminals to LNG supply stations and directly to the ships) LNG supply stations (could be in many ports) Road transport units delivery LNG from LNG supply stations to users Inland waterways LNG supply barges

39 RO-RO SHIP BUNKERING BY LNG SUPPLY VESSEL (SWEDISH MARINE TECHNOLOGY FORUM)

40 LNG FUEL SUPPLY RO-RO SHIP BY ROAD TRANSPORT (DNV)

41 POSSIBLE LNG SUPPLY STATION LOCATION IN KLAIPEDA PORT

42 PLANNING LOCATION LNG SUPPLY STATION

43 PLANNING LOCATION LNG SUPPLY STATION AND TERRITORY

44 POSSIBLE SUPPLY STATION LOCATION (Quay wall 0 ) (Option 2)

45 POSSIBLE SUPPLY STATION LOCATION (Quay wall 0 ) (Option 2)

46 POSSIBLE SUPPLY STATION LOCATION (Quay wall 0 ) (Option 2)

47 LNG FUEL SUPPLY IN KLAIPEDA PORT MAIN CONDITIONS LNG fuel quantity on LNG supply vessel should be at least for the 2 Ro-Ro vessels LNG supply vessel must have possibility fulfill at least 2 times per week on LNG terminal LNG supply vessel could provide LNG supply operations near Ro-Ro quay walls or in port waters LNG supply vessel should be able supply LNG shore facilities

48 PORT LNG SUPPLY SHIPS MAIN PARAMETERS Length up to m Width up to m Draft up to 3,5 5,0 m Capacity (LNG) not less as m³ Speed up to 10 kn

49 LNG FUEL SUPPLY IN EAST BALTIC PORTS MAIN CONDITIONS LNG fuel quantity on LNG supply vessel should be at least for the 1 2 ports (at least for 3-6 Ro-Ro vessels in one port) LNG supply vessel must have possibility fulfill at least 1 time per week on LNG terminal LNG supply vessel could provide LNG supply operations near quay walls or in port waters LNG supply vessel should be able supply LNG shore facilities

50 DISTANCES BETWEEN KLAIPEDA AND OTHER PORTS Klaipeda Baltjsk 110 n.m. 8 h Klaipeda - Liepaja 55 n.m. 5 h Klaipeda Ventspils 120 n.m. 12 h Klaipeda Riga 236 n.m. 18 h Klaipeda Paldisky 285 n.m. 22 h Klaipeda Tallinn 320 n.m. 24 h

51 LNG SUPPLY VESSEL ROUND TRIP To Liepaja 1,5 days To Baltjsk - 1,8 days To Ventspils 2 days To Riga 2,5 days To Paldisky 2,8 days To Tallinn 3 days

52 LNG SUPPLY SHIPS FOR THE EAST BALTIC SEA MAIN PARAMETERS Length up to m Width up to m Draft up to 5,5 6,5 m Capacity (LNG) up to m³ Speed up to kn

53 POSSIBLE LNG SUPPLY SHIP, L = 97 m, B = 14,4 m, T = 5,3 m, DWT = 2800 m³

54 POSSIBLE LNG SUPPLY SHIP, L = 111 m, B = 15,5 m, T = 6,3 m, DWT = 4300 m³

55 POSSIBLE LNG SUPPLY SHIP, L = 120 m, B = 18,6 m, T = 6,8 m, DWT = 7550 m³

56 CONCLUSIONS The Baltic Sea region develops very rapidly and features as very important for all Europe and in particular for the states and regions located around the Baltic. Sustainable Maritime transport on the Baltic have obvious advantages in comparison with other transport systems Administrative requirements for the clean shipping and port should closely integrate with Countries and regions development programs due to extensive resources the concept demands

57 CONCLUSIONS Ro-Ro vessels are main LNG fuel object in Baltic ports (on first stage) For the LNG supply in port should be facilities for the LNG operations In general should be in port small ( m³) supply vessel At least 1 LNG supply vessel ( m³) should be in East Baltic (in case port LNG supply vessels will be able in main Ro-Ro ports)

58 THANK YOU FOR YOUR ATTENTION QUESTIONS?