Recommending a Strategy

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Transcript Recommending a Strategy

KM3NeT kick-off meeting
WP5 organization/work program
Antonio Capone (INFN, Roma, Italy)
Erlangen - April 11th 2006
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April 11th, 2006
WP5 participants
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Goals and Objectives: milestones
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Goals and Objectives: deliverables
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April 11th, 2006
WP5 parallel session, agenda
- 30’
- Antonio Capone - Introduction
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Presentation of participating Institutes, plans and proposal
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IN2P3
Saclay
HCMR
CNR
IFREMER
INFN
INGV
TECNOMARE
by
Vasilis Lykousis
Gian Pietro Gasparini
Gilbert Damy
Marco Anghinolfi
Giuditta Marinaro
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- 15’
- 15’
- 15’
- 15’
- 15’
Monty Priede
Leonidas K. Resvanis
Stratos Anassontzis
- 15’
- 15’
- 15’
Coffee Break
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UNIABDN
NESTOR/NOA
U- Athens
Open discussion
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WP5 objectives
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Deep Sea environmental properties
Deep Sea Infrastructures for detector assembly,
deployment, recovery, …
Methods/ equipments for Power Transmission
and distribution to the Deep-Sea apparatus
On-shore infrastructure for power transmission
to the the Deep Sea apparatus
On-shore infrastructures for data transmission to
the external network
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Deep Sea sites properties
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Asses data concerning ANTARES, NEMO and NESTOR
sites on:
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light transmission (absorption and diffusion coefficients in deep sea
water)
biological properties, bioluminescence, optical noise, biofouling
deep sea currents, temperature and salinity profiles
chemical and radioactivity characterization
acoustic noise
sea bottom surveys, collection and analysis of sea-bottom samples
geo-hazards (using SN1 ?, new equipments )
vertical sediment flux
Analyze them in a common framework
Stimulate/perform needed measurements for a complete
sites characterization
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Deep Sea sites properties: participants:
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IN2P3
Saclay
HCMR
CNR
IFREMER
INFN
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INGV
TECNOMARE
UNIABDN
NESTOR/NOA
U- Athens
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Deep Sea sites properties studies
IN2P3, Saclay, HCMR, CNR,
INFN, INGV, TECNOMARE,
UNIABDN, NESTOR/NOA, U.
Athens
HCMR
CNR
IFREMER
Assessment of water, geological, oceanographic properties of candidate
sites. Refined characterisation of the site geology properties which may
have impact on the structures of the neutrino telescope. Long-term time
evolution of optical, oceanographic and environmental parameters of
seawater (for instance, currents, temperature, salinity, light transmission,
optical noise, acoustic noise, chemistry, radioactivity) in the detector region
and at seafloor.
Survey of water properties and detailed sea bottom topography
Oceanographic characterisation of deep-sea locations, evaluation of biofouling and corrosion effects at telescope structure
Oceanographic characterisation: biofouling
INFN
Coordination of work package
INGV
Geo-environmental characterisation of the sites through long-term time
series monitoring
TECNOMARE
UNIABDN
Engineering work for the characterisation of sites, adaptation of an
innovative nuclear spectrometer
Water column profiling of temporal and spatial variation in abundance of
luminescent organisms at sites, studies on mobile deep-sea animals living in
proposed observatory areas
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IFREMER,
IN2P3, INFN
Deep Sea Infrastructures
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Design deployment procedures of detector parts
Study technologies needed (available or not) for deep-sea
operation with the aim of optimizing them in order to
reduce operations costs and time
Design infrastructures for:
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detector modules deployment,
detector modules (junction boxes, instrumented parts)
handling
connection/disconnection, and eventually maintenance, of
deep sea structure
visual inspection of deep sea floor and of detector parts.
Design/optimize stationary docking stations for an Hybrid
System made by AUV and ROV
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Design of deployment procedures for detector parts
IFREMER, IN2P3
INFN
Studies of deployment and recovery procedures,
Design of components, costs evaluation.
Coordination of work package, design procedure and
tooling for detector unit deployment and recovery.
Identification and design of deep-sea infrastructures required for
connections, maintenance and recovery of detector parts
IN2P3
Investigation on deep-sea infrastructures for detector
deployment, maintenance, and recovery.
INFN
Coordination of work package, design of specifications
for deep-sea infrastructures for detector deployment,
maintenance, and recovery
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Saclay, INFN,
U-Athens
Power Transmission system
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assess power consumption for each component and for the full
detector
study the power distribution system from the on-shore laboratory
to the single detector element:
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DC/AC energy transport ?? mixed DC-AC system ??
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define, for each AC/DC power transmission condition, the
characteristics required for the EOC and for the Connectors and/or
Penetrators and of the associated electronics;
study the environmental impact of each power transmission solution.
AC-DC conversion technologies
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define deep-Sea cables specifications
define deep-Sea connectors specifications
define characteristics of the real-time control system required from
each AC/DC power transmission solution
technological limits to the total power transmission
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Definition of cables and connections
INFN, U. Athens
Investigation of connectors and cables
Definition of the electrical power distribution
Saclay
Design deep-sea power network
INFN
Coordination of work package, design specifications
for deep-sea power network
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INFN,
NESTOR/NOA
On-shore Infrastructures
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define a conceptual design of the shore station
define the on-shore power distribution system
define the characteristics of the data
transmission network needed to distribute data
from the on-shore station to the external
research laboratories:
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which technologies needed for data sharing ??
high speed computing for huge data volumes:
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GRID ??
New technologies ??
….
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Definition of the shore station required characteristics
INFN, NESTOR/NOA
Definition of the shore station required characteristics
Connection of the future detector and infrastructures to the European
data network
INFN
Connection of the future detector and infrastructures
to the European data network
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Time schedule
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Budget: human resources, funds
Total W P5
Total - Resources by year (budget s in unit s of 1000 €)
W P5- Budget by partner and
cat egory (in unit s of 1000 €)
FT EMs t ot
FT EMs req
Personnel
T ravel
Equipment
Consumables
Subcont ract ing
Ot her
SUM
633
187
1066,4
139,6
88,8
453,2
0,0
501,0
2249,0
FT EMs
FT EMs req
Personnel
T ravel
Equipment
Consumables
Subcont ract ing
Ot her
SUM
Antonio Capone - KM3NeT kick-off meeting
ye ar1
212
60
350,0
46,8
78,8
182,0
0,0
183,4
841,0
ye ar2
217
66
376,0
50,2
5,0
166,5
0,0
200,5
798,2
17
ye ar3
204
61
340,4
42,6
5,0
104,7
0,0
117,1
609,8
Total
633
187
1066,4
139,6
88,8
453,2
0,0
501,0
2249,0
April 11th, 2006
WP5 Kick-off meeting outcome
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Start close organization between collaborating Institutes
Set-up coordination
Confirm agreement on proposed program of work and on
objectives
Define a “short term” (3 months) agenda:
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existing deep-sea data assessment, definition of common
analysis method, identification of needed measurements
definition of “long-term” measurements for final
characterization
…
The work on other tasks need some imput from WP2,
WP3, WP4, WP7, the activity will start in few months.
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WP5 Organization
WP5 Coordinator: Antonio Capone,
[email protected] , +39-06-49914415
WP5 Steering Committee
No. Partn er i n stitu te
WP5 Ste eri n g C om mitte e
Jean-FrancoisRolin, Jean.Francois.Rolin@ifrem er.fr ,
+33-298-224108
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IFREMER
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IN2P 3
To be com m unicated
3
Saclay
To be com m unicated
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HCMR
Vasilis Lykousis, [email protected] r.gr, +30-22910-76462
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NESTOR/NOA
Leonidas Resvanis,Leonidas.Resvanis
@cern.ch, NOA: +30210-3490108, NESTOR: +30-27230-23302
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U-Athens
Efstratios Anassontzis,[email protected], +30-210-7276948
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CNR
Gian Pietro Gasparini,[email protected] ar.cnr.it,
+39-0187-978309
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INFN
Giorgio Riccobene,[email protected], +39-095-54232304
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INGV
Giuditta Marinaro,m [email protected] +39-06-51860603
10 T ecnomare
Francesco Gasparoni, francesco.gasparoni
@tecnom are.it,
+39-041-796701
11 UNIABDN
Monty Priede, [email protected], +44-1224-274408
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Risks connected to WP5 ?
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Site characteristics study activity (spoiled by the site selection duty)
can be successful for all quantities that have been already
extensively measured and that do not need a long term, multi-year
and multi-seasonal measurements
Detector deployment/handling tools design are “design dependent”
but should not create problems
Deep Sea Infrastructure design, as well as power distribution,
cables and connectors selection, will be based on commercial
technology or, at most, on developments that do not need an “out of
the market” technological effort
What we promised as deliverables in ANNEX1 can
be reached
Present technologies are already sufficient for our
needs but expensive, our work will be mainly
devoted to simplify all deep-sea operation, to
maximize the operative time, to reduce the
operation costs
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Docking system for AUV-ROV
A 3500m depth ROV design and
construction is already funded (project
PEGASO funded with 5.6 Meuro by the
“Regione Siciliana”) and under
realization by INFN and INGV (P.I.).
get it on loan for
shallow water test
get the AUV on loan,
modify the connection
,…
ROV
How many docking stations ?
Where to place them ?
Which kind of connectors ?
Which are AUV/ROV critical parts ?
How to improve their reliability ?
How to control them ?
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AUV
Docking Station.
Prototype to be built for shallow water test
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April 11th, 2006