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Modelling Material Injection Into Porous Structures With the Theory of Porous Media Under Non-isothermal Conditions

Modelling Material Injection Into Porous Structures With the Theory of Porous Media Under Non-isothermal Conditions

来源:Arxiv_logoArxiv
英文摘要

In this work, the Theory of Porous Media (TPM) is employed to model percutaneous vertebroplasty, a medical procedure in which acrylic cement is injected into cancellous vertebral bone. Previously, isothermal macroscale models have been derived to describe this material injection and the mechanical interactions which arise. However, the temperature of the injected cement is typically below the human body temperature, necessitating the extension of these models to the non-isothermal case. Following the modelling principles of the TPM and considering local thermal non-equilibrium conditions, our model introduces three energy balances as well as additional constitutive relations. If restricted to local thermal equilibrium conditions, our model equations are in agreement with other examples of TPM-based models. We observe that our model elicits physically reasonable behaviour in numerical simulations which employ parameter values and initial and boundary conditions relevant for our application. Noting that we neglect capillary effects, we claim our model to be thermodynamically consistent despite the employment of simplifying assumptions during its derivation, such as the Coleman and Noll procedure.

Jan-S?ren L. V?lter、Zubin Trivedi、Tim Ricken、Oliver R?hrle

University of StuttgartUniversity of StuttgartUniversity of StuttgartUniversity of Stuttgart

基础医学

Jan-S?ren L. V?lter,Zubin Trivedi,Tim Ricken,Oliver R?hrle.Modelling Material Injection Into Porous Structures With the Theory of Porous Media Under Non-isothermal Conditions[EB/OL].(2025-03-21)[2025-08-02].https://arxiv.org/abs/2503.16968.点此复制

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