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Paper Citation Record · LEDGER

A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect

As of 8 August 2026, this Paper Citation Record lists 42 of 42 outbound references and 0 inbound Pith citation observations for arXiv:2602.01142.

A citation records a reference. It does not transfer a finding from one paper to another.

pith.paper-citation-record.v1
2602.01142 v2

Coverage vector

measured 42 of 42 reference resolution

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Source: paper_references, paper_reference_links, observed 2026-08-03T05:52:24.358642Z

measured 42 of 42 standing notices

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Source: scholarly_work_events, retraction_status_cache, observed 2026-08-08T06:32:00.761636+00:00

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Reference resolution

42 of 42 outbound references displayed

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Outbound references

Observation ccab4650-5cfd-4fe6-972d-67f02e35ff9b · outbound

This paper cites an unresolved cited work.

A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Unresolved cited work

Reference 1

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Observation 192ed131-72bc-4cfe-90be-f3f7dadf215c · outbound

This paper cites Weissenberg, A continuum theory of rheological phenomena, Nature 159 (4035) (1947) 310–311.

A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Weissenberg, A continuum theory of rheological phenomena, Nature 159 (4035) (1947) 310–311

Reference 2

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Observation d65bb27a-6571-4073-8de7-40b4c97b7442 · outbound

This paper cites Weissenberg, Rheological phenomena in terms of the tensor theory, in: Proceedings of the International Congress on Rheology, V ol.

A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Weissenberg, Rheological phenomena in terms of the tensor theory, in: Proceedings of the International Congress on Rheology, V ol

Reference 3

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Observation e468e9a5-b5fe-425e-a6c9-60f3a395ee4a · outbound

This paper cites Wapperom, M.

A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Wapperom, M

Reference 4

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Observation d94b87c9-005e-410a-b5ff-1ec65676f333 · outbound

This paper cites Grmela, H.

A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Grmela, H

Reference 5

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Observation c7478b56-2257-4af2-8f67-9fd12105c33d · outbound

This paper cites an unresolved cited work.

A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Unresolved cited work

Reference 6

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Observation b8231202-daaa-46a9-9251-0b3d8cdf0567 · outbound

This paper cites an unresolved cited work.

A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Unresolved cited work

Reference 7

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Observation 897e9ec4-1956-4508-b3d3-44e15cb188d4 · outbound

This paper cites Málek, K.

A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Málek, K

Reference 8

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Observation b3584225-dd90-4ee3-b48e-1effd49166b3 · outbound

This paper cites Dostálík, V.

A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Dostálík, V

Reference 9

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Observation f3c6458a-fd65-4e7c-9e84-ffcd5d91f001 · outbound

This paper cites Málek, K.

A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Málek, K

Reference 10

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Observation cd84d32e-60eb-4c73-a283-d44b35e20a84 · outbound

This paper cites Dostalík, V.

A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Dostalík, V

Reference 11

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Observation b15f202b-1d07-4841-9f28-b8a37cd41a3d · outbound

This paper cites Masmoudi, Global existence of weak solutions to macroscopic models of polymeric flows, J.

A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Masmoudi, Global existence of weak solutions to macroscopic models of polymeric flows, J

Reference 12

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Observation 92b32609-53cf-4d74-bd1b-2d099b53a992 · outbound

This paper cites Bulí ˇcek, T.

A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Bulí ˇcek, T

Reference 13

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Observation ec02e3cb-155d-4c18-9369-0ed571a99d23 · outbound

This paper cites Bulí ˇcek, T.

A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Bulí ˇcek, T

Reference 14

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Observation eaab04d0-bfa7-48f0-bcdf-f1a7cc68383c · outbound

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A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Unresolved cited work

Reference 15

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Observation fe1963c4-489b-4a34-b99c-a143fadfe9f7 · outbound

This paper cites Debbaut, B.

A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Debbaut, B

Reference 16

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Observation 12855dc3-f49e-4f08-889b-5569014fa63c · outbound

This paper cites Figueiredo, C.

A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Figueiredo, C

Reference 17

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Observation 92915206-aeac-4072-a3e5-2544eb5f6a9c · outbound

This paper cites Luo, Numerical simulation of Weissenberg phenomena—the rod-climbing of viscoelastic fluids, Com- puter Methods in Applied Mechanics and Engineering 180 (3) (1999) 393–412.

A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Luo, Numerical simulation of Weissenberg phenomena—the rod-climbing of viscoelastic fluids, Com- puter Methods in Applied Mechanics and Engineering 180 (3) (1999) 393–412

Reference 18

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Observation 2867607e-62ab-466c-a99c-8099acb1543d · outbound

This paper cites Ruangkriengsin, R.

A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Ruangkriengsin, R

Reference 19

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Observation 27aed9af-344b-47b6-b1ef-ab6748dafe01 · outbound

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A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Unresolved cited work

Reference 20

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Observation 7d8a21fe-4d5f-4d68-a4b1-04878480d1f4 · outbound

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A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Unresolved cited work

Reference 21

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Observation f70638b9-d1e2-41ef-8d50-651d60d1a654 · outbound

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A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Unresolved cited work

Reference 22

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Observation b4babf0d-77a7-41db-a85d-8c6f6de5d3b9 · outbound

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A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Unresolved cited work

Reference 23

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Observation 5c3070b4-fcf4-468e-9e6f-1d8fc8d8a345 · outbound

This paper cites Málek, V.

A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Málek, V

Reference 24

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Observation 7f369fc5-d89f-4358-a09d-806b48324e5a · outbound

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A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Unresolved cited work

Reference 25

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Observation a49b11fe-bbc4-47b4-9e49-6ed0d5730a74 · outbound

This paper cites Donea, S.

A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Donea, S

Reference 26

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A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Unresolved cited work

Reference 27

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Observation d643d615-be0b-4337-b5ea-30bac713c6ea · outbound

This paper cites Turek, J.

A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Turek, J

Reference 28

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Observation db012cf5-0c40-4cf5-8eb3-9651d693979d · outbound

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A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Unresolved cited work

Reference 29

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Observation b2bfa3ac-39af-463a-b34a-599a56209ad2 · outbound

This paper cites Richter, Fluid-structure interactions: models, analysis and finite elements, Springer, 2017.

A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Richter, Fluid-structure interactions: models, analysis and finite elements, Springer, 2017

Reference 30

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Observation 854c027a-ca40-4be5-a614-d44eacf0581f · outbound

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A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Unresolved cited work

Reference 31

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Observation ea953fcd-8b97-45ee-b9f4-5a3e4594dec8 · outbound

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A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Unresolved cited work

Reference 32

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Observation 54d31a35-108d-46b7-ba4d-17ddd70fb355 · outbound

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A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Unresolved cited work

Reference 33

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Observation b4015d35-5da1-4d38-b456-2d116728192e · outbound

This paper cites Ainsworth, C.

A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Ainsworth, C

Reference 34

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Observation ab7b4c99-9449-45d6-a749-1fd715392473 · outbound

This paper cites Betteridge, P.

A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Betteridge, P

Reference 35

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Observation 3e051185-39a2-429c-a90b-6efe1f613222 · outbound

This paper cites Glowinski, Finite element methods for incompressible viscous flow, in: Numerical Methods for Fluids (Part 3), V ol.

A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Glowinski, Finite element methods for incompressible viscous flow, in: Numerical Methods for Fluids (Part 3), V ol

Reference 36

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Observation 57b5d3b8-cde1-4baa-b7cd-7bd6fccec1f3 · outbound

This paper cites Garcia-Villalba, T.

A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Garcia-Villalba, T

Reference 37

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Observation 822ffb21-9c00-4667-8532-af8cec5826be · outbound

This paper cites Cach, A thermodynamically consistent Johnson–Segalman–Giesekus model: numerical simulation of the rod climbing effect: Research code, code accompanying this manuscript (2026).

A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Cach, A thermodynamically consistent Johnson–Segalman–Giesekus model: numerical simulation of the rod climbing effect: Research code, code accompanying this manuscript (2026)

Reference 38

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Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-08-03T05:52:24.021106Z digest=sha256:2c7d4fbc50e15028e7dc845531f2b78c8f91b22a1e4767987cef57ac0955c3cb

Observation d1ab7fbf-24b7-4c93-b6f0-7eeedf45d271 · outbound

This paper cites Taylor, P.

A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Taylor, P

Reference 39

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Observation 044eb6bb-8ae9-4834-9225-1bf4d51c6218 · outbound

This paper cites Rohatgi, Webplotdigitizer (2011).

A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Rohatgi, Webplotdigitizer (2011)

Reference 40

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source=pdf_text observed=2026-08-03T05:52:24.169722Z digest=sha256:b1f26d7b5ffd9d330aba6ba2e692828aaf91bcfec2eb37d44c97e57858709c0f

Observation 71efa334-5c1a-4063-8499-1908a128e9e6 · outbound

This paper cites On bifurcations and traction forces on an obstacle in incompressible flow.

A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect On bifurcations and traction forces on an obstacle in incompressible flow

Reference 41

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source=pdf_text observed=2026-08-03T05:52:24.259863Z digest=sha256:777aa0a895b97d135bbd580ac76694b53b725e2513db5d2f0af41edf45c654ac

Observation 608f730c-c79d-435f-8201-24c6dfdadb7e · outbound

This paper cites Hinch, O.

A thermodynamically consistent Johnson-Segalman-Giesekus model: numerical simulation of the rod climbing effect Hinch, O

Reference 42

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source=pdf_text observed=2026-08-03T05:52:24.358642Z digest=sha256:35db57ee5a83150fefe9c1e65c533fa7278d1ef8f5c93830fefd6744392ee047

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