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Paper Citation Record · LEDGER

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations

As of 14 August 2026, this Paper Citation Record lists 44 of 44 outbound references and 0 inbound Pith citation observations for arXiv:2507.09356.

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pith.paper-citation-record.v1
2507.09356 v1

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measured 44 of 44 reference resolution

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Pith citing papers itemized under the disclosed page cap.

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Outbound references

Observation f54f5f0d-bd25-4c39-bc5c-7ba91b77ea94 · outbound

This paper cites Rough surfaces with enhanced heat transfer for electronics cool- ing by direct metal laser sintering.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations Rough surfaces with enhanced heat transfer for electronics cool- ing by direct metal laser sintering

Reference 1

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Observation d1ae787d-e7a1-4324-8a82-4b54b444e980 · outbound

This paper cites Mahajan, Chia-pin Chiu, and G.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations Mahajan, Chia-pin Chiu, and G

Reference 2

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Observation 4348aea1-46b2-41d7-a79f-a15391e810e1 · outbound

This paper cites High Performance Loop Heat Pipe With Flat Evaporator for Energy-Saving Cool- ing Systems of Supercomputers.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations High Performance Loop Heat Pipe With Flat Evaporator for Energy-Saving Cool- ing Systems of Supercomputers

Reference 3

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Observation 2d44ea08-f466-4512-9cfd-27dea7402f95 · outbound

This paper cites Recent Studies in Turbine Blade Cooling.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations Recent Studies in Turbine Blade Cooling

Reference 4

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Observation d4e52f72-a2ea-4af6-bcc4-47280cf33632 · outbound

This paper cites Silk, Eric L.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations Silk, Eric L

Reference 5

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Observation 6dd03bf8-86e7-48b1-b544-b2ca952ba644 · outbound

This paper cites A comprehensive review of advances in physics-informed neural networks and their applications in complex fluid dynamics.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations A comprehensive review of advances in physics-informed neural networks and their applications in complex fluid dynamics

Reference 6

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Observation 88c5bb8e-8069-4d00-9c6d-51cb0a5368da · outbound

This paper cites Sengupta, B.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations Sengupta, B

Reference 7

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This paper cites General principles of controlled water cooling for metallurgical on-line hot rolling processes: forced flow and sprayed surfaces with film boiling regime and rewetting phenomena.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations General principles of controlled water cooling for metallurgical on-line hot rolling processes: forced flow and sprayed surfaces with film boiling regime and rewetting phenomena

Reference 8

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Observation 01e30097-eec4-4a85-91b4-2b435b900915 · outbound

This paper cites Mazzaferro, Filippo Montevecchi, and Gianni Campatelli.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations Mazzaferro, Filippo Montevecchi, and Gianni Campatelli

Reference 9

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Observation 71d80f15-6bed-4324-8222-29dd8b506366 · outbound

This paper cites Adaptive Control of Data Center Cooling using Deep Reinforcement Learning.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations Adaptive Control of Data Center Cooling using Deep Reinforcement Learning

Reference 10

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Observation 46d8e8c1-d664-4da1-9151-0b5fad2b5b6e · outbound

This paper cites Zuckerman and N.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations Zuckerman and N

Reference 11

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This paper cites URL https://linkinghub.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations URL https://linkinghub

Reference 12

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Observation 14710e22-32f0-4556-80d5-e568383d505b · outbound

This paper cites Infrared ther- mography for convective heat transfer measurements.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations Infrared ther- mography for convective heat transfer measurements

Reference 13

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Observation d78d1cf8-c0b4-491c-a8ca-b80464e6b2a3 · outbound

This paper cites Bountin, Boris V.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations Bountin, Boris V

Reference 14

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Observation 1319dd19-60e8-473e-8fd5-5510bed8ade2 · outbound

This paper cites An in-depth analysis of conjugate heat transfer process of impingement jet.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations An in-depth analysis of conjugate heat transfer process of impingement jet

Reference 15

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Observation 8ba7d86a-a16f-40ef-a4d5-6fb87f83935c · outbound

This paper cites Numerical study of transient con- jugate heat transfer of a turbulent impinging jet.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations Numerical study of transient con- jugate heat transfer of a turbulent impinging jet

Reference 16

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Observation ca97efdd-1883-4810-8e50-1ecde9679554 · outbound

This paper cites Necati ¨Ozi¸ sik and Helcio R.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations Necati ¨Ozi¸ sik and Helcio R

Reference 17

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Observation 6617a2df-501c-47c7-aaed-3d36907dff01 · outbound

This paper cites Inverse analysis for transient thermal load identification and application to aerodynamic heating on atmospheric reentry capsule.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations Inverse analysis for transient thermal load identification and application to aerodynamic heating on atmospheric reentry capsule

Reference 18

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This paper cites Mold transient heat transfer behavior based on measurement and inverse analysis of slab continuous casting.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations Mold transient heat transfer behavior based on measurement and inverse analysis of slab continuous casting

Reference 20

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Observation 2bdb0a7b-790c-40da-b258-f4c2d6b85019 · outbound

This paper cites Luchesi and Reginaldo T.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations Luchesi and Reginaldo T

Reference 21

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Observation 693155f3-1a0d-4e1c-b246-fe50e32e68e7 · outbound

This paper cites Viloche Baz´ an, and Leonardo S.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations Viloche Baz´ an, and Leonardo S

Reference 22

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Observation 3ae288df-8403-4a42-bd92-660369754cca · outbound

This paper cites 3D- transient identification of surface heat sources through infrared ther- mography measurements on the rear face.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations 3D- transient identification of surface heat sources through infrared ther- mography measurements on the rear face

Reference 23

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Observation f48dcf97-c6b3-40ae-ba74-a86fc3270113 · outbound

This paper cites Inverse solutions to a vertical plate cooling in air – a comparative study.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations Inverse solutions to a vertical plate cooling in air – a comparative study

Reference 24

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This paper cites Han, H.B.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations Han, H.B

Reference 25

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This paper cites Evans, Hywel Thomas, and Perumal Nithiarasu.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations Evans, Hywel Thomas, and Perumal Nithiarasu

Reference 26

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Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations Unresolved cited work

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This paper cites Lagaris, A.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations Lagaris, A

Reference 28

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This paper cites Woodbury, and Gyula Gr´ of.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations Woodbury, and Gyula Gr´ of

Reference 29

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This paper cites Scientific Machine Learning Through Physics–Informed Neural Networks: Where we are and What’s Next.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations Scientific Machine Learning Through Physics–Informed Neural Networks: Where we are and What’s Next

Reference 30

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This paper cites Raissi, P.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations Raissi, P

Reference 31

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This paper cites Witschey, John A.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations Witschey, John A

Reference 32

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This paper cites A physics- informed deep learning method for solving direct and inverse heat con- duction problems of materials.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations A physics- informed deep learning method for solving direct and inverse heat con- duction problems of materials

Reference 33

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Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations Unresolved cited work

Reference 34

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This paper cites Deep- XDE: A Deep Learning Library for Solving Differential Equations.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations Deep- XDE: A Deep Learning Library for Solving Differential Equations

Reference 35

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Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations TensorFlow: a system for Large-Scale ma- chine learning

Reference 36

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Observation 374704df-1fd2-4503-beec-edee3f5c66e8 · outbound

This paper cites Practical bayesian optimization of machine learning algorithms.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations Practical bayesian optimization of machine learning algorithms

Reference 37

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This paper cites Experimental and numeri- cal study on the transient heat-transfer characteristics of circular air- jet impingement on a flat plate.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations Experimental and numeri- cal study on the transient heat-transfer characteristics of circular air- jet impingement on a flat plate

Reference 38

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This paper cites Fern´ andez-Mart ´ ınez, J.L.G.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations Fern´ andez-Mart ´ ınez, J.L.G

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This paper cites Engl, Martin Hanke, and Andreas Neubauer.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations Engl, Martin Hanke, and Andreas Neubauer

Reference 40

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This paper cites Optuna: A next-generation hyperparameter opti- mization framework.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations Optuna: A next-generation hyperparameter opti- mization framework

Reference 43

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Observation f3e8dfa6-cd94-4e72-9cb2-09ada0eb3675 · outbound

This paper cites doi: 10.1016/j.cma.2019.112623.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations doi: 10.1016/j.cma.2019.112623

Reference 2020

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Observation 6fc3e2ac-46c9-4086-9319-2fa8acb8e152 · outbound

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Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations Unresolved cited work

Reference 2021

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This paper cites doi: 10.1007/s10915-022-01939-z.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations doi: 10.1007/s10915-022-01939-z

Reference 2022

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This paper cites URL https://epubs.siam.org/doi/ 10.1137/19M1274067.

Physics-Informed Neural Networks for Estimating Convective Heat Transfer in Jet Impingement Cooling: A Comparison with Conjugate Heat Transfer Simulations URL https://epubs.siam.org/doi/ 10.1137/19M1274067

Reference 7200

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