University of Catania April NORTH SOUTH CONFERENCE PORTS INFRASTRUCTURE AND OPTIMISATION. Franco Castagnetti

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Trans-Rail Integrated Goods European-Express Routes Demonstrators University of Catania April 26-27 NORTH SOUTH CONFERENCE PORTS INFRASTRUCTURE AND OPTIMISATION

17 TIGER DEMO PARTNERS 2

WHY TIGER? Total TEU Average TEU 2008 1.674.227 8.372 2005 1.308.581 6.543 2000 986.608 4.933 1995 733.155 3.666 1990 600.958 3.005 NO CHANGES IN OVERLAND INFRASTRUCTURES 3 SOURCE: Port of Hamburg

4

THE TIGER DEMONSTRATORS THE MEGA-HUB "SPIDER" THE iport "WEB" THE GFC "LOOP" 5

GENOA PORT MODAL SPLIT: CO-MODALITY IS PARAMOUNT TEUx1000 2010 2015 2020 Road 1.200 (80%) 1.300 (65%) 1.700 (51%) + 40% Rail 300 (20%) 700 (35%) 1.600 (49%) + 430% Million TE 4.0 3.5 3.0 Visualisation of the Landside Modal Split According to most Likely Scenario in Mil. TEU Barge Road Rail Port Throughput (Scenario) 2.5 2.0 1.5 1.0 0.5 0.0 2010 0.32 0.39 0.45 0.51 0.58 0.69 0.82 6 2011 2012 2013 2014 2015 2016 2017 0.98 2018 1.17 2019 1.60 1.38 2020

HAMBURG PORT MODAL SPLIT : CO-MODALITY IS PARAMOUNT TEUx1,000 2010 2015 2020 Barge 100 (2%) 300 (4%) 700 (7%) Road 3,000 (60%) 3,900 (56%) 4,800 (47%) Rail 1,900 (38%) 2,800 (40%) 4,600 (46%) +600% + 60% +142% 7 7

BREMERHAVEN PORT MODAL SPLIT : CO-MODALITY IS PARAMOUNT TEUx1000 2010 2015 2020 Barge 60 (3%) 80 (4%) 100 (3%) Road 900 (51%) 1.000 (48%) 1.200 (43%) Rail 800 (46%) 1.000 (48%) 1.500 (54%) + 60% + 30% + 90% 8

TIGER PORTS TO HINTERLAND DESTINATIONS 2010-2015-2020 in MM TEUs 9

COMPETITIVE REACH BEFORE & AFTER TIGER

THE COLLABORATIVE APPROACH BETWEEN THE KEY ACTORS OF THE MARITIME TRANSPORT CHAIN OBJECTIVES LEADING TO: BETTER UTILIZATION OF EXISTING RESOURCES INCREASED THROUGHPUT CAPACITY TRANSPORT INDUSTRIALIZATION & OPTIMISATION REDUCED COSTS BETTER SERVICES INNOVATIVE LOGISTICS SOLUTIONS & BEST PRACTICES SHARING OF BENEFITS BETWEEN THE ACTORS 11

Port Terminal Container GFC- A Full Intermodal Chain Integration Operative System Wireless RFID Vehicular Handheld Tracking & Tracing Train Systems GPS Customs eseals Italian Customs Agency RFID Seals Genoa Port Authority eport System Wireless RFID Vehicular Handheld Operative System ERP Repairs, Additional Services, Logistics Dry Port 12

GFC - Main Challenges and Objectives Geographical situation of Genoa Port with lacking of storage space having the Apennines Mountains behind the coastline Reduce excess use of Road Modality congesting the city Decongest the Port of Genoa increasing traffic liquidity by utilizing existing rail and inland dry port infrastructures; increase port productivity and throughput for avoiding Port congestion originating extra costs and higher environmental impacts. Deliver a high quality door to door service at competitive cost Reduce container transit time via Genoa port up to 70%-80% and dwell costs connected thereto Reduce costs improving transit time to destination. Improve Port of Genoa productivity and throughput 13

GFC - Implementation Cooperative approach between 3 different terminals in the port of Genoa: Voltri, Messina & TSG Introduction of new operational concept involving processes + technologies + rules RTE habilitation as Genoa Port Italian Customs Authority Deployment of ICT Technologies in the whole logistic chain: T&T, Integrated CTS management systems allowing shorter transit time and operational improvement New Business Model for shuttle train loading and dispatching E-customs, E-seals, E-freight Electronic traffic control entry and CTS Park at RTE 14

GFC - Main Results Sea Port dwell time & transit time reduction 30% Improvements in Operational Costs & Service Quality Improvement in geographical accessibility and competitiveness Extended quay concept Improvement in transport volumes and reduction of operational costs on the segment Voltri Terminal Europa (VTE) - Rivalta Terminal Europa (RTE) Increased traffic fluidity on the Genoa Quay Increased Port accessibility via RTE both for national and International destinations. 15

I-PORT: Innovative Port- and Hinterland-Operations Concept iport develops, implement and demonstrate innovative hinterland transport concepts for competitiveness, infrastructure capacity and environmental reasons. Close to the ports concept (Nienburg rail hub operation) Two approaches have been applied: Close to the market concept (dry port components in Munich-Riem) Rail operation without Nienburg hub Rail operation with Nienburg hub BHV HH WHV BHV HH Seaport terminals Seaport shunting yards Train bundling platform Hinterland terminals Regular services/destinations Optional services/destinations 16

I-PORT: Main Challenges and Objectives Increase seaports efficiency Relieve seaport infrastructure by speeding up the processes within the port Secure rail competitiveness and capabilities in seaports and hinterland distribution Improve rail network productivity Improve the rail usage of slot capacities by optimizing train utilization connecting the sea ports with hinterland terminals Bundle existing non direct train transport volumes not sufficient for direct / block trains serving seaport and inland terminals Increase the productivity all along the transport chain by improving operational processes coordination & control at interfaces Concentrate ancillary operations at terminals such as repairs, maintenance, workshops smoothing trains operations. 17

close-to-the-port concept I-PORT - Implementation Close to the Port concept realized at Nienburg & Bremen Rail Hub Centralized maintenance and repair concept Terminal dedicated trains: No shunting in the sea port Optimization through an innovative bundling concept IT-Tool to support wagon dispatching and slot management close-to-the-market concept Layout requirements for maritime oriented inland terminals High frequent shuttle trains from/to the German Sea ports (Munich) Hub & shuttle concept (Poznan) Process optimisation along the hinterland chain Finalisation of customs processes in the hinterland Train monitoring with customer interface 18

I-PORT - Main Results close-to-the-port concept Reduction of dwell time in Hamburg seaport area by 92 %: Decongestion Higher punctuality in the seaport terminals: from 30-40% up to 90% Overall: Improved competitiveness of intermodal transport already in the first test operation phase close-to-the-market concept Advanced punctuality 85-90% ; Optimized utilization of train capacity Increased utilization of existing rail infrastructure: Same level of transport capacity with 15-20% less trains (constantly max. train capacity) Constantly max. train capacity. Reduced transit time Hamburg Poznan: 18 hrs. => 12 hrs Reduced transit time for secondary destination Via Munich Riem 19

NETWORK 2015+ : Rail-Hub concept

NETWORK 2015+ : Main Challenges and Objectives Apply new production concepts for efficiency increase and intermodal transport potential via Mega Hubs Expand existing continental intermodal services by integrating additional smaller terminals into the Kombiverkehr production network. Combine European overland with maritime traffic for economy of scale generation Capture new intermodal transport markets besides the existing ones for direct- and shuttle-trains. Generate additional impacts in efficiency and sustainability by linking the dry port with the rail hub concept. Improve the trains capacity management at terminal interchanges 21

INTERMODAL NETWORK 2015+ : Implementation Develop a "second-level-production" into the intermodal transport chain at München-Riem rail hub. Implement a work production process concept allowing the rail-railcargo handling of the trains in München-Riem. Develop and implement the management concept of trains timetabling production processes for the inbound and outbound traffic Integrate the München-Riem rail hub into the seaport/inland transport network for giving daily services to secondary terminals. 22

INTERMODAL NETWORK 2015+ Results Double-sided (electrified) frictionless rail access High performance gantry cranes IT-system for terminal operation (including rail-rail) IT-system for train capacity management (guarantee of hub connections) Real-time train monitoring with ETA-information Capacity management implementation on all trains Momentum trains entrance and exit 23

INTERMODAL NETWORK 2015+ Momentum Entrance Direct Exit 33 Destinations Served 24

THANK YOU FOR YOUR ATTENTION www.newopera.org www.tigerdemo-project.eu franco.castagnetti@newopera.org 25