新着論文
2026年4月28日
「星形グレイン形状の固体燃料ロケットモーターの壁面後退の影響に関する数値解析」に関する論文がScience and Technology of Energetic Materialsに掲載されました.
本研究グループが開発している直交格子積み上げ法(BCM)を用いて,五芒星のグレイン形状をもつ固体燃料ロケットモーター(CASTOR Iモデル)を対象に,推進剤を模擬した壁面の後退による内部流れ場への影響について調べた研究成果がScience and Technology of Energetic Materialsに掲載されました.
詳細については,下記の学術論文をご覧ください.
論文タイトル:Non-reactive flow simulation of wall regression effects in a star-grain solid rocket motor
掲載論文:Science and Technology of Energetic Materials
DOI: https://doi.org/10.34571/stem.87.1_19
Abstract:
Abstract
To clarify the effects of wall regression on the internal flow characteristics of solid rocket motors (SRMs) with complex grain geometries, three-dimensional numerical simulations were performed using the building cube method (BCM) and an Immersed Boundary Method (IBM) to clarify the effects of wall regression on the internal flow characteristics of SRMs. Four grain configurations, including three star-shaped grains representing different stages of combustion and one cylindrical reference model, were analyzed to examine the influence of changes in chamber geometry on flow acceleration and vortex formation. The simulations showed that the star-shaped grains, particularly in the early combustion stages, induced stronger flow acceleration toward the nozzle owing to the narrow chamber and pronounced surface protrusions. The transition region between the grain and nozzle formed cavity-like structures that triggered local flow separation and vortex generation. The Q-criterion visualizations and vorticity magnitude analyses revealed that these vortices were most intense in the early stages and gradually weakened as the chamber geometry became more uniform with continued combustion. The results demonstrate that the time-varying grain geometry significantly affects the internal flow field and vortex behavior within the SRMs. The insights from this study will contribute to the development of optimized grain designs for improved thrust performance and combustion stability.