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Overview of the CVR, illustrating its capabilities in high-fidelity, multi-scale, and multi-physics simulations for nuclear reactors (A) CVR: a schematic of the general-purpose numerical reactor software platform. (B) High-fidelity, multi-scale simulation of material irradiation damage: a microscopic-mesoscopic-macroscopic tightly coupled model. Snapshots from <t>a</t> <t>trillion-particle</t> molecular dynamics simulation reveal the microstructural evolution in a 6-element alloy. (C) Neutronics-thermal-hydraulics-structural mechanics multi-physics coupling: accurate prediction of the dynamic displacement of full-core fuel rods; streamline velocity distribution in a 7-pin assembly; high-fidelity geometric modeling of various core shapes (e.g., quadrilateral, hexagonal, and spherical); and 3D full-core neutron fission rate distribution in a sodium-cooled fast reactor (from neutron transport simulation).
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Overview of the CVR, illustrating its capabilities in high-fidelity, multi-scale, and multi-physics simulations for nuclear reactors (A) CVR: a schematic of the general-purpose numerical reactor software platform. (B) High-fidelity, multi-scale simulation of material irradiation damage: a microscopic-mesoscopic-macroscopic tightly coupled model. Snapshots from <t>a</t> <t>trillion-particle</t> molecular dynamics simulation reveal the microstructural evolution in a 6-element alloy. (C) Neutronics-thermal-hydraulics-structural mechanics multi-physics coupling: accurate prediction of the dynamic displacement of full-core fuel rods; streamline velocity distribution in a 7-pin assembly; high-fidelity geometric modeling of various core shapes (e.g., quadrilateral, hexagonal, and spherical); and 3D full-core neutron fission rate distribution in a sodium-cooled fast reactor (from neutron transport simulation).
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Overview of the CVR, illustrating its capabilities in high-fidelity, multi-scale, and multi-physics simulations for nuclear reactors (A) CVR: a schematic of the general-purpose numerical reactor software platform. (B) High-fidelity, multi-scale simulation of material irradiation damage: a microscopic-mesoscopic-macroscopic tightly coupled model. Snapshots from a trillion-particle molecular dynamics simulation reveal the microstructural evolution in a 6-element alloy. (C) Neutronics-thermal-hydraulics-structural mechanics multi-physics coupling: accurate prediction of the dynamic displacement of full-core fuel rods; streamline velocity distribution in a 7-pin assembly; high-fidelity geometric modeling of various core shapes (e.g., quadrilateral, hexagonal, and spherical); and 3D full-core neutron fission rate distribution in a sodium-cooled fast reactor (from neutron transport simulation).

Journal: The Innovation

Article Title: The numerical reactor system for China’s new-generation exascale supercomputer

doi: 10.1016/j.xinn.2026.101268

Figure Lengend Snippet: Overview of the CVR, illustrating its capabilities in high-fidelity, multi-scale, and multi-physics simulations for nuclear reactors (A) CVR: a schematic of the general-purpose numerical reactor software platform. (B) High-fidelity, multi-scale simulation of material irradiation damage: a microscopic-mesoscopic-macroscopic tightly coupled model. Snapshots from a trillion-particle molecular dynamics simulation reveal the microstructural evolution in a 6-element alloy. (C) Neutronics-thermal-hydraulics-structural mechanics multi-physics coupling: accurate prediction of the dynamic displacement of full-core fuel rods; streamline velocity distribution in a 7-pin assembly; high-fidelity geometric modeling of various core shapes (e.g., quadrilateral, hexagonal, and spherical); and 3D full-core neutron fission rate distribution in a sodium-cooled fast reactor (from neutron transport simulation).

Article Snippet: Overview of the CVR, illustrating its capabilities in high-fidelity, multi-scale, and multi-physics simulations for nuclear reactors (A) CVR: a schematic of the general-purpose numerical reactor software platform. (B) High-fidelity, multi-scale simulation of material irradiation damage: a microscopic-mesoscopic-macroscopic tightly coupled model. Snapshots from a trillion-particle molecular dynamics simulation reveal the microstructural evolution in a 6-element alloy. (C) Neutronics-thermal-hydraulics-structural mechanics multi-physics coupling: accurate prediction of the dynamic displacement of full-core fuel rods; streamline velocity distribution in a 7-pin assembly; high-fidelity geometric modeling of various core shapes (e.g., quadrilateral, hexagonal, and spherical); and 3D full-core neutron fission rate distribution in a sodium-cooled fast reactor (from neutron transport simulation).

Techniques: Software, Irradiation