Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-08-11T00:45:09.122092Z
Paper Citation Record · LEDGER
As of 12 August 2026, this Paper Citation Record lists 93 of 93 outbound references and 0 inbound Pith citation observations for arXiv:2412.19387.
A citation records a reference. It does not transfer a finding from one paper to another.
Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-08-11T00:45:09.122092Z
One-hop event checks from named stored sources.
Source: scholarly_work_events, retraction_status_cache, observed 2026-08-12T06:34:41.77262+00:00
Pith citing papers itemized under the disclosed page cap.
Source: paper_references, paper_reference_links
A source-named dated measurement, never combined with another source.
Source: cited_works
93 of 93 outbound references displayed
External citation measurements
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Observation 13840087-acb3-4c8a-987f-6aa1326344e3 · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Food preservation techniques and nanotechnology for increased shelf life of fruits, vegetables, beverages and spices: a review,
Reference 1
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Observation c73dfd7c-4699-4aff-ad87-fcc08ee8ee13 · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Novel synergistic freezing methods and technologies for enhanced food product quality: A critical review,
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Observation 2a794a0a-b734-4dfe-9308-20af884514f0 · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Conjugate turbulent natural heat convection and solid food freezing modelling: Effects of position and number of pieces of salmon on the cooling rate,
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Observation 228c1d7e-251d-489e-97cc-02e3afe5e600 · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Effect of freezing rate on the quality of frozen strawberries (fragaria x ananassa),
Reference 4
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Observation 8d43f389-d055-40df-acd5-94a6367d3747 · outbound
A fast food-freezing temperature estimation framework using optimally located sensors The physics of freezing and melting in the presence of flows,
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Observation 78492558-2cba-4a4c-8c11-3e604bc5788b · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Recent advances in multiscale CFD modelling of cooling processes and systems for the agrifood industry,
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Observation 4488303d-5ecf-4dc7-9385-0038b26c7991 · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Application of computational fluid dynamics simulations in food industry,
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Observation c41a34ca-1a48-4dac-9ff4-1b7ea4b8939f · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Improvement and Development of Physical Field Drying Technology: Principles, Models, Optimizations and Hybrids,
Reference 8
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Observation e005ba06-7c6a-48bc-91f7-ac4d40708169 · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Predicting local surface heat transfer coefficients by different turbulentk- ϵ models to simulate heat and moisture transfer during air-blast chilling,
Reference 9
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Observation ab588be6-9efd-43da-9f9b-2cef6d11158c · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Advantages in predicting conjugate freezing of meat in a domestic freezer by CFD with turbulence κ-ϵ 3D model and a local exergy destruction analysis,
Reference 10
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Observation 662a6b3c-6ec6-4ee1-a2bb-b009e6d9ee79 · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Unresolved cited work
Reference 11
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Observation 95f49e1f-3703-48d9-b734-9c0132ba9408 · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Validated numerical model of heat transfer in the forced air freezing of bulk packed whole chickens,
Reference 12
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Observation 3e256da1-42e5-445c-8a75-09ccb94b2a9a · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Experimentally validated cfd-tool for a freezing simulation in a small-scale freeze-dryer,
Reference 13
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Observation 8b958555-de14-43e6-b784-b24c0633cbfd · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Effect of fan speed, sample orien- tation, and tray structure on heat transfer and food freezing time in batch air blast freezer,
Reference 14
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Observation 47d6f983-fbeb-494c-8ef0-4b2b099ebdfc · outbound
A fast food-freezing temperature estimation framework using optimally located sensors One-dimensional finite- difference modeling on temperature history and freezing time of individual food,
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Observation 795d540d-433c-45a3-82fb-8619ea44d026 · outbound
A fast food-freezing temperature estimation framework using optimally located sensors FDM for the freezing process of a slab using integral average properties,
Reference 17
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Observation cd4ce9b6-9c85-4922-ba96-0fdcb41837bc · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Simulation of Transport Phenomena for Microwave Freeze-Drying of Potato Slices Using Finite Element Analysis,
Reference 18
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Observation 37c195ef-36dd-408f-b560-274fca9acb5b · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Computational heat transfer analysis of liquid food in a heat exchanger with vary- ing stirrer settings in a nonclassical continuum framework,
Reference 19
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Observation 3528d416-a785-4d65-86af-5d6722f77c91 · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Thermal Analysis of Conjugate Con- vective Flow in a Vented Chamber Featuring Different Heat-Generating Solid Objects,
Reference 20
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Observation 7cca4128-278b-4726-82d0-2cef56ba83e6 · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Predicting heat conduction during solidification of a food inside a freezer due to natural convection,
Reference 21
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Observation 4cebf83a-2eab-4c93-8c19-3b2e3ae18fe4 · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Experimental and numerical characterization of food dehydration during freezing,
Reference 22
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Observation 66ef0c00-cbf8-4ef1-9e88-ed606d4427ec · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Freezing of foods: Mathematical and experimental aspects,
Reference 23
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Observation 27b04e19-49ff-44b5-b4d2-5af6511200fc · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Concept of Com- putational Fluid Dynamics design and analysis tool for food industry: A bibliometric,
Reference 24
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Observation 81e9bb2e-5140-4fa7-9c1d-4e2a7cf79436 · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Exploring mathematical modeling and cfd in con- vective drying of fruits and vegetables: A review,
Reference 25
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Observation bed3945f-ae44-405b-989f-f6d2ab5ca19a · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Inverse problems in food engineering: A review,
Reference 26
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Observation 1afbb483-180f-4f34-af7d-f6df40d93ba1 · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Moisture diffusivity coefficient estimation in solid food by inversion of a numerical model,
Reference 27
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Observation 29da77c6-e8d6-43a9-a842-a9e11fc8ab2e · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Estimation of the energy requirement of bread during baking by inverse heat transfer method,
Reference 28
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Observation 2b1318c3-7699-46ac-9a31-ecf9b223b689 · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Inverse method for the simultaneous estimation of the thermophysical properties of foods at freezing temperatures,
Reference 29
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Observation ddd3a7fe-7c88-491e-8547-faeac523ae24 · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Inverse estimation of thermal parameters and friction co- efficient during warm flat rolling process,
Reference 30
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Observation dc3611cb-8ad9-4f8a-8b88-2a17e71466fc · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Inverse estimation of the transient-state stress distribution in the power boiler pressure components,
Reference 31
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Observation aeac4240-2ea3-495e-9d94-63177a0559c7 · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Coupled data assimilation and parameter estimation in coupled ocean- atmosphere models: A review,
Reference 32
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Observation 5f88205e-8fe3-4749-a413-4dbbc86c8d7f · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Reduced basis homogenization of thermal and elastic properties for periodic composite materials,
Reference 33
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Observation 4fc415c5-087f-40ba-9574-1a144f58571f · outbound
A fast food-freezing temperature estimation framework using optimally located sensors A survey on deep learning tools dealing with data scarcity: definitions, challenges, solutions, tips, and applications,
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Observation 56ef31e6-39fa-4a2f-932e-c5f2919c0dca · outbound
A fast food-freezing temperature estimation framework using optimally located sensors A real-time variational data assimilation method with data-driven model enrichment for time-dependent problems,
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Observation f1263afe-3f58-4c38-a892-414d239f302a · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Respecting causality for training physics-informed neural networks,
Reference 36
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Observation fdc2673a-6880-499e-b139-1625a5655486 · outbound
A fast food-freezing temperature estimation framework using optimally located sensors From PINNs to PIKANs: recent advances in physics-informed machine learning,
Reference 37
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Observation 503fa5b0-dfe0-4e77-a9c5-7174b2a0d975 · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Data-driven modeling of an oscillating surge wave energy converter using dynamic mode decomposition,
Reference 38
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Observation 0969443e-a72e-4dc8-b167-95f1165061db · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Physics-informed neural networks for parameter estimation in blood flow models,
Reference 39
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Observation 174eda27-312f-43ab-a38a-fefc9a151389 · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Maximumly weighted iteration for solving inverse problems in dynamics,
Reference 40
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A fast food-freezing temperature estimation framework using optimally located sensors Accurate state of temperature esti- mation for lithium-ion batteries based on square root cubature Kalman filter,
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Observation 3267c000-5df2-4473-a4cb-15e832bebc22 · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Time periodic natural convection heat transfer in a nano-encapsulated phase-change suspension,
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Observation a1c9f487-2c54-4f94-8e49-c7b489bea16b · outbound
A fast food-freezing temperature estimation framework using optimally located sensors A reduced basis method for parametrized variational inequalities applied to contact mechanics,
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Observation d29c98ed-e34e-421b-86f4-45b0637a104d · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Approximation of large-scale dynamical systems: An overview
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Observation bdb4ac44-40ab-4362-84c3-78c5dba8e493 · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Randomized compression of rank-structured matrices accelerated with graph coloring,
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Observation 9b80b3fa-a490-4209-a493-e2cb8610d3da · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Friedrichs’ systems discretized with the dgm: domain de- composable model order reduction and graph neural networks approximating vanishing viscosity solutions,
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Observation 070aea09-c6f4-4f39-bb0d-f0c0053c291b · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Higher order dynamic mode decomposition to model reacting flows,
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Observation 37e98223-9602-4b10-a613-aaabbe61cbd1 · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Reduced-order modelling based on non-linear modes,
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Observation d13e1663-d88d-45b1-8d15-6a76f2387a71 · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Frangos, Y
Reference 49
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Observation 89188472-c795-442b-b2c9-63be736ebeae · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Benner, M
Reference 50
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Observation 50a24de0-0e3f-407f-af55-d6b7f6585e87 · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Adaptive pbdw approach to state estimation: Noisy observations; user-defined update spaces,
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Observation 9c780c3f-46a4-4ff6-9da3-8b0869ad2d3c · outbound
A fast food-freezing temperature estimation framework using optimally located sensors A parameterized-background data-weak approach to variational data assimilation: formulation, analysis, and application to acoustics,
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Observation 4bb972a3-f6d5-4f1c-9c93-28da8542d72d · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Optimal reduced model algorithms for data-based state estimation,
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Observation d270a40b-a1b3-425f-a7fd-b203a7a7ea73 · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Fast reconstruction of 3D blood flows from Doppler ultrasound images and reduced models,
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Observation b72f6306-5665-407c-a7cb-7fddb972d95e · outbound
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Observation 010af364-44ed-47a5-8ca1-ca891127a811 · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Displacement and pressure reconstruction from magnetic resonance elastography images: Application to an In Silico brain model,
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Observation bcd5190b-e4e8-451b-a67e-f5b891886208 · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Bias and multiscale correction methods for variational state estimation,
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Observation 657ec005-1a12-436e-b9eb-723efbe95e5c · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Greedy selection of optimal location of sensors for uncertainty reduction in seismic moment tensor inversion,
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Observation 13743930-f1a2-4475-a1d2-b03c8f93d678 · outbound
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Observation 48ca9635-e6b6-4ee7-87ce-4ea6b92dac04 · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Greedy algorithms for optimal measurements selection in state estimation using reduced models,
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Observation c3faced7-c654-4979-956f-b8fedc66d533 · outbound
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Observation 6530df22-858d-4e65-a2ad-89c353d2179e · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Sparse wasserstein barycenters and application to reduced order modeling,
Reference 64
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Observation b6b1f9bc-5457-4050-aae0-230fe7240d11 · outbound
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Observation ffc789e0-f10b-49f0-8d69-a91a1e55b8bb · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Control of ice crystal nucleation and growth during the food freezing process,
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Observation 131ec1df-709e-4f33-af2d-fc44df3698e2 · outbound
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Observation 9cc6c486-2932-4b89-b024-81478d866e4d · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Effects of relative humidity on dry-aged beef quality,
Reference 68
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Observation 14933114-8bff-4cdf-9aff-278ae20f94c0 · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Ten years of industrial experience with the sst turbulence model,
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Observation 756b714a-5a40-4f15-9933-139ccab314a1 · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Numerical model for heat and fluid flow in food freezing,
Reference 70
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Observation 7ac07fe2-0ed3-4b9b-8277-7fd5051869d7 · outbound
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Reference 71
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Observation e0a14635-abf9-4d1c-b193-aacc6587ae7a · outbound
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Observation c9983d87-8944-4051-bacc-2891026d7064 · outbound
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Reference 73
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Observation 3a53829d-105b-4874-a5b6-007e1976b4dd · outbound
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Reference 74
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Observation 0f7a328e-4cfe-4663-aaa2-b966297a10f0 · outbound
A fast food-freezing temperature estimation framework using optimally located sensors Theoretical modelling and experimental investigation of a thermal energy storage refrigerator,
Reference 75
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Reference 92
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Reference 94
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