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Marine structures (source)
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1
journal article
A combined numerical and semi-analytical collision damage assessment procedure
Ehlers, Sören
;
Tabri, Kristjan
Marine structures
2012
/
p. 101-119 : ill
https://doi.org/10.1016/j.marstruc.2012.05.005
journal article
2
journal article EST
/
journal article ENG
Comparing rock shape models in grounding damage modelling
Sormunen, Otto-Ville Edvard
;
Kõrgesaar, Mihkel
;
Tabri, Kristjan
;
Heinvee, Martin
;
Urbel, Annika
;
Kujala, Pentti
Marine structures
2016
/
p. 205-223 : ill
https://doi.org/10.1016/j.marstruc.2016.07.004
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journal article EST
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journal article ENG
3
journal article EST
/
journal article ENG
Finite element based meta-modeling of ship-ice interaction at shoulder and midship areas for ship performance simulation
Li, Fang
;
Kõrgesaar, Mihkel
;
Kujala, Pentti
;
Goerlandt, Floris
Marine structures
2020
/
art. 102736
https://doi.org/10.1016/j.marstruc.2020.102736
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journal article EST
/
journal article ENG
4
journal article EST
/
journal article ENG
MARSTRUCT benchmark study on nonlinear FE simulation of an experiment of an indenter impact with a ship side-shell structure
Ringsberg, Jonas W.
;
Amdahl, Jörgen
;
Chen, Bai Qiao
;
Cho, Sang-Rai
;
Kõrgesaar, Mihkel
;
Tabri, Kristjan
Marine structures
2018
/
p. 142-157
https://doi.org/10.1016/j.marstruc.2018.01.010
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journal article EST
/
journal article ENG
5
journal article EST
/
journal article ENG
A simplified method to predict grounding damage of double bottom tankers
Heinvee, Martin
;
Tabri, Kristjan
Marine structures
2015
/
p. 22-43 : ill
https://doi.org/10.1016/j.marstruc.2015.04.002
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journal article EST
/
journal article ENG
6
journal article EST
/
journal article ENG
The effect of low stress triaxialities and deformation paths on ductile fracture simulations of large shell structures
Kõrgesaar, Mihkel
Marine structures
2019
/
p. 45-64 : ill
https://doi.org/10.1016/j.marstruc.2018.08.004
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journal article EST
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journal article ENG
7
journal article EST
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journal article ENG
The influence of fluid structure interaction modelling on the dynamic response of ships subject to collision and grounding
Kim, Sang Jin
;
Kõrgesaar, Mihkel
;
Ahmadi, Nima
;
Taimuri, Ghalib
;
Kujala, Pentti
;
Hirdaris, Spyros
Marine structures
2021
/
art. 102875, 17 p. : ill
https://doi.org/10.1016/j.marstruc.2020.102875
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journal article EST
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journal article ENG
8
journal article EST
/
journal article ENG
The ISSC 2022 committee III.1-Ultimate strength benchmark study on the ultimate limit state analysis of a stiffened plate structure subjected to uniaxial compressive loads
Ringsberg, Jonas W.
;
Darie, Ionel
;
Nahshon, Ken
;
Shilling, Gillian
;
Tabri, Kristjan
Marine structures
2021
/
art. 103026, 25 p. : ill
https://doi.org/10.1016/j.marstruc.2021.103026
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journal article ENG
9
journal article EST
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journal article ENG
Ultimate strength assessment of stiffened panel under uni-axial compression with non-linear equivalent single layer approach
Putranto, Teguh
;
Kõrgesaar, Mihkel
;
Jelovica, Jasmin
;
Tabri, Kristjan
;
Naar, Hendrik
Marine structures
2021
/
art. 103004, 17 p. : ill
https://doi.org/10.1016/j.marstruc.2021.103004
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Related publications
1
Equivalent single layer approach for ultimate strength assessment of ship structures = Ekvivalentne koorikelement laeva konstruktsioonide piirtugevuse hindamiseks
Number of records 9, displaying
1 - 9
keyword
103
1.
environmental impact of marine structures
2.
alternative marine fuels
3.
ammonia as marine fuel
4.
Copernicus Marine Environment Monitoring Service
5.
Copernicus Marine Service (CMEMS)
6.
international marine tourism
7.
marine and glacial events
8.
marine bacteria
9.
marine beds
10.
marine carbon dioxide system
11.
marine coastal hazards
12.
marine ecosystem services
13.
marine engineering
14.
marine environment
15.
marine geoid
16.
marine gravimetry
17.
marine hazards
18.
marine heat wave
19.
marine heatwaves (MHWs)
20.
Marine Isotope Stage 8
21.
marine litter cleanup
22.
marine litter transport
23.
marine management
24.
marine microbial communities
25.
marine microplastic monitoring
26.
marine monitoring
27.
marine oil spill response
28.
marine pollution
29.
marine protected areas
30.
Marine renewable energy
31.
Marine resources
32.
marine robotics
33.
marine sediment
34.
marine sediments
35.
marine sponge
36.
marine strategy framework directive
37.
Marine Strategy Framework Directive (MSFD)
38.
marine systems
39.
marine transgressions
40.
marine waste to food
41.
marine water quality
42.
marine vehicles
43.
Marine/aquatic invertebrates
44.
shallowmarine carbonates
45.
shallow-marine carbonates
46.
amyloid structures
47.
atomic structures
48.
Baltic onshore and offshore structures
49.
bipolar transistor structures
50.
cable structures
51.
cellular structures
52.
coastal structures
53.
composite structures
54.
concrete structures
55.
conjoined structures
56.
data structures
57.
decision structures
58.
disordered and β-structures
59.
drying of structures
60.
Elongated submesoscale structures - stripes
61.
endolymphatic structures
62.
existing structures
63.
fibre concrete structures
64.
fire resistance of timber structures
65.
floating structures
66.
helical structures
67.
hierarchical structures
68.
highly insulated structures
69.
historic structures
70.
hydraulic structures
71.
IIR tapped lattice and DF-II filter structures
72.
Lagrangian Coherent Structures
73.
Lattice Structures
74.
layered structures
75.
mathematical structures in functional programming
76.
mesoporous structures
77.
nuclear structures
78.
Oichnusembedment structures
79.
organisational structures
80.
oriented structures
81.
p-i-n structures
82.
porous lattice structures
83.
protein structures
84.
quantum structures
85.
random structures
86.
road structures
87.
root structures
88.
sandwich structures
89.
soft-sediment deformation structures
90.
solitonic structures
91.
steel structures
92.
structures
93.
structures and materials
94.
Structures below ground
95.
submesoscale structures
96.
sub-mesoscale structures
97.
supramolecular structures
98.
thin-walled structures
99.
Timber composite structures
100.
timber structures
101.
tree-like data structures
102.
tubular structures
103.
X-ray structures
subject term
2
1.
Copernicus Marine Environment Monitoring Service (CMEMS)
2.
Department of Marine Systems of Tallinn University of Technology (TalTech)
TalTech department
1
1.
Department of Marine Systems
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