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基于拉格朗日粒子数学模型和光滑粒子流体动力学算法的数值传热模拟系统。

Numerical heat transfer simulation system based on Lagrangian particle mathematical model and SSPH algorithm.

作者信息

Fang Dan, Xiong Conghui, Yu Wei

机构信息

School of Public Administration, Chongqing Vocational College of Public Transportation, Chongqing, China.

出版信息

PLoS One. 2024 Dec 31;19(12):e0313250. doi: 10.1371/journal.pone.0313250. eCollection 2024.

Abstract

With the continuous promotion and development of national industrialization, the performance control of precision casting and mechanical structures has become increasingly important. The traditional craftsmanship in the foundry industry relies on experience and trial-and-error method, resulting in high cost and long trial production cycles. A numerical heat transfer simulation system is proposed based on the Lagrangian particle mathematical model and optimized numerical heat transfer simulation algorithm. The simulation results showed that the simulation accuracy of the system was as high as 99.1%. The simulation time was stable at 434 ms, with CPU usage and memory usage controlled at 23% and 18%, respectively, surpassing the comparison system. The calculated results do not show any non-physical oscillations, ensuring the authenticity and reliability of simulation results. The results indicate that the numerical heat transfer simulation system provides an efficient, accurate, and low resource consuming simulation tool for the foundry industry, which promotes the rapid development of the manufacturing industry.

摘要

随着国家工业化的不断推进和发展,精密铸造及机械结构的性能控制变得越来越重要。铸造行业的传统工艺依靠经验和反复试验的方法,导致成本高昂且试生产周期长。基于拉格朗日粒子数学模型和优化的数值传热模拟算法,提出了一种数值传热模拟系统。模拟结果表明,该系统的模拟精度高达99.1%。模拟时间稳定在434毫秒,CPU使用率和内存使用率分别控制在23%和18%,超过了对比系统。计算结果未显示任何非物理振荡,确保了模拟结果的真实性和可靠性。结果表明,数值传热模拟系统为铸造行业提供了一种高效、准确且低资源消耗的模拟工具,推动了制造业的快速发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a71/11687755/28c9a7a83a09/pone.0313250.g001.jpg

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