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Tensor Arithmetic, Geometric and Mathematic Principles of Fluid Mechanics in Implementation of Direct Computational Experiments

机译:流体力学的张量算术,几何和数学原理实施直接计算实验

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The architecture of a digital computing system determines the technical foundation of a unified mathematical language for exact arithmetic-logical description of phenomena and laws of continuum mechanics for applications in fluid mechanics and theoretical physics. The deep parallelization of the computing processes results in functional programming at a new technological level, providing traceability of the computing processes with automatic application of multiscale hybrid circuits and adaptive mathematical models for the true reproduction of the fundamental laws of physics and continuum mechanics.
机译:数字计算系统的架构确定了统一数学语言的技术基础,了解流体力学和理论物理中的应用程序的完全算术逻辑描述和连续式机械的规律。计算过程的深度并行化导致新技术水平的功能规划,提供计算过程的可追溯性,具有多尺度混合电路和自适应数学模型的自动应用物理学和连续力学的基本规律。

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