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2篇 您的检索式:作者名="J.P.Gunn"
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1Chromodynamic Lattice Boltzmann Method for the Simulation of Drops,Erythrocytes,and other Vesicles显示文摘Recently,we have validated a three-dimensional,single framework multicomponent lattice Boltzmann method,modified to generate vesicles(rather than drops)[“Three-dimensional single framework multicomponent lattice Boltzmann equation method for vesicle hydrodynamics,”Phys.Fluids 33,077110(2021)].This approach implements an immersed boundary force distribution,characterised by bending rigidity,surface tension,preferred curvature and conserved membrane area,in which work we successfully validated isolated vesicle flows against other methodologies and experiment.Like most immersed boundary algorithms,our method relies on numerical computation of high-order spatial derivatives and an intricate body force density.The next step is to verify that it has sufficient numerical stability to address the anticipated application of high volume fraction flows of highly deformable objects in intimate interaction.It is this in silico verification-of both the class of fluid object attainable and the stability of the later in strong,straining and shearing flows which is at issue,here.We extend our method to simulate multiple variously deflated vesicles and multiple liquid droplets still within a single framework,from which our fluid objects emerge as particular parameterisations.We present data from simulations containing up to four vesicles(five immiscible fluid species),which threshold verifies that simulations containing unlimited fluid objects are possible[“Modeling the flow of dense suspensions of deformable particles in three dimensions,”Phys.Rev.E 75,066707(2007)].These data also assure the ability of our immersed boundary forcing to preserve the character and integrity of fluid objects in interactions characterised by large local velocity gradients(intimate squeezing,shearing and elongational straining).Throughout,we take interfacial or membrane area,A,as a proxy for stability and physical veracity.J.Spendlove X.Xu T.Schenkel J.P.Gunn I.Halliday 2023Communications in Computational Physics2023,33,1:0
2在ToreSupra各态历经偏滤器实验中通过朗缪尔探针信号反馈改善密度控制显示文摘在ToreSupra各态历经偏滤器放电中通过朗缪尔探针信号反馈实现了实时控制氘或氦气体注入。反馈方案基于可靠的实验观察结果,即密度极限与边缘温度Tc-10eV一致。使用了三种控制算法:(1)如果边缘温度太低,则通过实时衰减系统增益和安全中止气体注入来正比反馈中心线平均密度;(2)通过脱离程度(DOD)控制的安全中止来正比反馈中心平均密度;(3)用DOD安全中止来正比反馈边缘温度。DOD是针对氘放电定义的,而不针对氦放电,因为氦放电不脱离。所有这三种反馈模式允许接近密度极限运行而且已成功地用于等离子体电流0.4MAJ.P.Gunn 海韵 2001国外核聚变2001,,2:0
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