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An optimized time-adaptive aerothermal coupling calculation method for aerothermal analysis of disc cavity system
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作者 Shuai BI Junkui MAO +1 位作者 Lei WANG Feng HAN 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2024年第9期164-177,共14页
In order to further achieve the balance between the calculation accuracy and efficiency of the transient analysis of the aero-engine disc cavity system,an Optimized Time-adaptive Aerother-mal Coupling calculation(OTAC... In order to further achieve the balance between the calculation accuracy and efficiency of the transient analysis of the aero-engine disc cavity system,an Optimized Time-adaptive Aerother-mal Coupling calculation(OTAC)method has been proposed.It combines one-dimensional tran-sient calculation of air system,Conventional Sequence Staggered(CSS)method,Time-adaptive Aerothermal Coupling calculation(TAC)method and differential evolution optimization algorithm to obtain an efficient and high-precision aerothermal coupling calculation method of air system.Considering both the heat conduction in the solid domain and the flow in the fluid domain as unsteady states in the OTAC,the interaction of fluid-solid information within a single coupling time step size was implemented based on the CSS method.Furthermore,the coupling time step size was automatically adjusted with the number of iterations by using the Proportional-Integral-Deri vative(PID)controller.Results show that when compared with the traditional loosely coupling method with a fixed time step size,the computational accuracy and efficiency of the OTAC method are improved by 8.9%and 30%,respectively.Compared with the tight coupling calculation,the OTAC method can achieve a speedup of 1 to 2 orders of magnitude,while the calculation error is maintained within 6.1%. 展开更多
关键词 Air system 1d-3d coupling Conjugate heat transfer Transient calculation Adaptive time step size
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Multi-scale simulation model of air system based on cross-dimensional data transmission method 被引量:3
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作者 Lei WANG Junkui MAO +2 位作者 Song WEI Longfei WANG Jin PAN 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2023年第5期157-174,共18页
The Secondary Air System(SAS)plays an important role in the safe operation and performance of aeroengines.The traditional 1D-3D coupling method loses information when used for secondary air systems,which affects the c... The Secondary Air System(SAS)plays an important role in the safe operation and performance of aeroengines.The traditional 1D-3D coupling method loses information when used for secondary air systems,which affects the calculation accuracy.In this paper,a Cross-dimensional Data Transmission method(CDT)from 3D to 1D is proposed by introducing flow field uniformity into the data transmission.First,a uniformity index was established to quantify the flow field parameter distribution characteristics,and a uniformity index prediction model based on the locally weighted regression method(Lowess)was established to quickly obtain the flow field information.Then,an information selection criterion in 3D to 1D data transmission was established based on the Spearman rank correlation coefficient between the uniformity index and the accuracy of coupling calculation,and the calculation method was automatically determined according to the established criterion.Finally,a modified function was obtained by fitting the ratio of the 3D mass-average parameters to the analytical solution,which are then used to modify the selected parameters at the 1D-3D interface.Taking a typical disk cavity air system as an example,the results show that the calculation accuracy of the CDT method is greatly improved by a relative 53.88%compared with the traditional 1D-3D coupling method.Furthermore,the CDT method achieves a speedup of 2 to 3 orders of magnitude compared to the 3D calculation. 展开更多
关键词 Air system data transmission disk cavity Multi-scale simulation 1d-3d coupling
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氨基酸0D-3D信息得分矢量用于人免疫缺陷病毒蛋白酶裂解位点预测及特异性分析
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作者 康丽芳 梁桂兆 +2 位作者 舒茂 杨善彬 李志良 《中国科学(B辑)》 CSCD 北大核心 2008年第7期607-612,共6页
收集天然氨基酸的1369种0D-3D结构信息参数,经主成分分析得一组新氨基酸描述子—氨基酸0D-3D信息得分矢量,将其用于人免疫缺陷病毒蛋白酶(HIVPR)裂解位点预测,以线性判别分析与支持向量机建模预测HIVPR裂解位点.线性判别分析与支持向量... 收集天然氨基酸的1369种0D-3D结构信息参数,经主成分分析得一组新氨基酸描述子—氨基酸0D-3D信息得分矢量,将其用于人免疫缺陷病毒蛋白酶(HIVPR)裂解位点预测,以线性判别分析与支持向量机建模预测HIVPR裂解位点.线性判别分析与支持向量机模型对646个训练集样本的自检验识别、留一法交互验证及对100个测试集样本外部验证的马休斯相关系数分别为0.879和0.911,0.849和0.901,0.822和0.846.经受试者操作特征曲线分析表明,支持向量机对HIVPR裂解位点的预测结果优于线性判别分析.研究显示,氨基酸0D-3D信息得分矢量可进一步用于HIVPR裂解位点预测. 展开更多
关键词 氨基酸0d-3d信息得分矢量 人免疫缺陷病毒蛋白酶(HIV PR) 线性判别分析(LdA) 支持向量机(SVM)
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基于元件代理模型的复杂管网系统水动力学性能预测方法研究
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作者 李希 杨海超 +5 位作者 张红娜 李小斌 李凤臣 白玮 闫征 宋建军 《节能技术》 2025年第6期506-511,共6页
在大型建筑与工业设施中,三维CFD虽能精确模拟管网流动与传热,但其计算成本高、响应慢,难以适用于多工况迭代与系统级优化。本文提出一种基于元件代理模型的复杂管网水动力学性能快速预测方法。该方法将风机、阀门、弯头等抽象为可插拔... 在大型建筑与工业设施中,三维CFD虽能精确模拟管网流动与传热,但其计算成本高、响应慢,难以适用于多工况迭代与系统级优化。本文提出一种基于元件代理模型的复杂管网水动力学性能快速预测方法。该方法将风机、阀门、弯头等抽象为可插拔多端口元件,并嵌入一维网络进行联立求解;在元件层面,利用高保真CFD构建POD降阶模型,实现精度传递与计算复杂度显著降低。以试验台为例,代理模型在节点压力与支路流量预测上与商业软件及实验结果高度一致,误差较小、效率显著提升。研究表明,该方法在保证精度的同时具备模块化与可扩展性,为复杂管网的快速设计与优化提供了有效技术路径。 展开更多
关键词 代理模型 POd降阶模型 0d-3d耦合 复杂管网
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