Flow Simulator是一款集成的流动、传热和燃烧设计软件,可实现混合保真度模拟,以优化机器和系统设计。

该流体系统设计工具在单个平台内提供跨学科建模和优化能力,用于3D设计环境中的流体动力学/热/燃烧的机器设计。该工具允许用户导入实际硬件并利用3D CAD点云自动创建覆盖在机器硬件上的计算模型。预配置元件/组件的扩展库可用于建模/模拟各种物理现象,包括可压缩/不可压缩流体流、浮力驱动流、旋转腔系统流、传导/对流/辐射传热、燃烧平衡化学和物种传输。八种分析模式的组合(稳态、准稳态和流体动力学、热力和燃烧的瞬态分析)可用于预测循环/任务模拟期间的系统/子系统运行条件(飞行任务、功率上升、停机等)。控制系统组件(比例-积分-微分(PID)控制器、前馈和任务)可以与计算模型系统/子系统集成,以优化循环/任务分析期间的模拟机器操作。

Flow Simulator is an integrated flow, heat transfer, and combustion design software that enables mixed fidelity simulations to optimize machine and systems design.

This fluid system design tool provides interdisciplinary modeling and optimization capabilities within a single platform for machine design with respect to fluid dynamics/thermal/combustion within a 3D design environment. This tool allows users to import actual hardware and utilization of 3D CAD point-cloud to automatically create the computational model overlaid on the machine hardware. An extended library of preconfigured elements/components is available to model/simulate a wide-range of physical phenomena including compressible/incompressible fluid flow, buoyancy-driven flow, rotating cavity system flow, conduction/convection/radiation heat transfer, combustion equilibrium-chemistry & species transport. Eight combinations of analysis modes (steady state, quasi steady state, and transient analysis for fluid dynamics, thermal, and combustions) are available to predict system/subsystem run conditions during a cycle/mission simulation (flight mission, power ramp up, shut down…etc). Control system components (proportional integral derivative (PID) controllers, feedforward, and mission) can be integrated with computational model system/subsystem to optimize the simulated-machine operation during cycle/mission analysis.

Key Features & Benefits
Fast and accurate mixed-fidelity (1D, 2D, and 3D) flow simulations that handle complex geometry and long transient missions. A flexible common platform that allows different groups to perform modeling with respect to their verticals and thus be combined to create system models.

Modern graphic user interface with the ability to overlay/integrate the 3D digital CAD with the analytical models. The GUI is geared for design where the Pre/Solver/and Post are all embedded in a single interface. The fully integrated optimization module provides the capability to quickly explore the entire design space within 3D modeling environment; system models can be parametrized based on flow configuration, shape, dimension, and thermal characteristics to achieve an optimal cost-benefit design.

Extended library of preconfigured elements/components leveraging a large set of publicly-available experimental data for pressure drop and heat transfer characteristics. This fully extensible platform provides customers the capability to integrate their own IP and element formulations seamlessly utilizing Python scripting.

Industry Applications
Flow Simulator can be used in many industries including aerospace, power generation, oil & gas power conversion, transportation, additive manufacturing, automotive, and others. Flow Simulator’s capabilities cover a wide range of application within these industries including turbomachinery rotating cavity systems, secondary flow & engine sealing, combustor cooling, fuel/lube systems, and power plant piping networks. The software can also be used for renewable wind turbines and electrical generator cooling and thermal management. For additive manufacturing, it allows for heat exchanger design and optimization.

下载地址

热力学建模仿真 Altair Flow Simulator 2023.0 x64
https://www.123pan.com/s/PjcA-vtORA.html
https://pan.baidu.com/s/1k_z-TtHbVdl9hj0wp2UJ9g?pwd=183q