首页> 外文会议>International Conference on Intelligent Systems, Modelling and Simulation >Quasi Steady State, Quasi Numerical Modeling of Saturated Steam-Water Spaces Using Normalized Steam and Water Properties for Efficient Computing
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Quasi Steady State, Quasi Numerical Modeling of Saturated Steam-Water Spaces Using Normalized Steam and Water Properties for Efficient Computing

机译:使用归一化的蒸汽和水属性进行有效计算的准稳态,饱和蒸汽-水空间的拟数值模型

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Simulators are extensively used as a tool for industrial training, design and development. The overall improvement in computational speed of simulator is very important and can be improved by redesigning the mathematical simulation models or by using faster computational platforms. Modern day simulators are using cloud computing platforms and other high performance computing systems. The complex algorithms employed in simulation of steam-water spaces and steam tables resulted in longer computational time. The use of cloud computing for simulation makes essential the optimization of cost of computing and cost of transmission. This paper proposes modification of simulation algorithms, for steam water space system to improve the speed of computation and suit the new computing environments. This makes the simulator faster and cost effective. Experiments using virtual machines show that the proposed quasi-numerical, quasi-steady state is around eight times faster than the conventional steam-table iteration based model.
机译:模拟器被广泛用作工业培训,设计和开发的工具。模拟器计算速度的整体提高非常重要,可以通过重新设计数学模拟模型或使用更快的计算平台来提高。现代模拟器正在使用云计算平台和其他高性能计算系统。蒸汽水空间和蒸汽表模拟中使用的复杂算法导致更长的计算时间。将云计算用于仿真使得优化计算成本和传输成本至关重要。本文针对蒸汽水空间系统提出了仿真算法的改进方案,以提高计算速度,适应新的计算环境。这使模拟器更快且更具成本效益。使用虚拟机进行的实验表明,所提出的准数字准稳态比传统的基于蒸汽表迭代的模型快大约八倍。

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