基于旋动流的透析器端盖的设计及实验验证OA
Design and experimental verification of dialyzer end cap based on helical flow
针对透析器内部凝血影响血液透析安全性与效率的关键问题,本研究设计了一种集成于透析器动脉端的旋动流导叶.首先,基于计算流体力学(CFD)方法,以纤维束端面血液流量变异系数(CV)和壁面剪切应力(WSS)作为预测凝血风险的关键血流动力学指标,对旋动流导叶进行流体力学仿真;其次,通过多目标优化设计,确定旋动流导叶的最优构型,进行3D 打印加工;最后,采用体外牛血循环实验,以跨膜压(TMP)上升速率作为表征整体凝血进程的宏观指标,测试实验组与对照组的抗凝性能.仿真结果表明,优化后的旋动流导叶能在纤维束区域诱导旋动流,优化模型的CV较无导叶模型降低了59.00%,同时纤维束端面的低WSS 区域占比减小了69.24%,表明消除了端盖内低速滞流区,并降低了凝血起始风险.体外抗凝实验也表明,实验组 TMP 上升速率较对照组减缓9.37%,证明其凝血问题得到改善.旋动流导叶结构可通过改善透析器的血流均匀性与 WSS,延缓透析器内的凝血进程.本研究可为开发高性能、低抗凝剂依赖的血液透析器提供新思路与理论依据.
To address the critical issue of internal coagulation within the dialyzer that affects the safety and efficiency of hemodialysis,we designed a helical flow guide vane integrated into the arterial end of the dialyzer.Firstly,based on the computational fluid dynamics(CFD)method,the coefficient of variation(CV)of blood flow at the end face of the fiber bundle and the wall shear stress(WSS)were used as the key hemodynamic indicators for predicting the risk of coagulation to conduct fluid dynamics simulation on the helical flow guide vanes.Sec-ondly,the optimal configuration of the helical flow guide vanes was determined through multi-objective optimization design,and 3D printing processing was carried out.Finally,in vitro bovine blood circulation experiment was conducted.The rate of increase in transmembrane pres-sure(TMP)was used as a macroscopic indicator to characterize the overall coagulation process.The anticoagulation performance of the exper-imental group and the control group was tested.The simulation results showed that the optimized helical flow guide vanes could induce helical flow in the fiber bundle area.The CV of the optimized model was reduced by 59.00%,and the proportion of the low WSS area at the end face of the fiber bundle was reduced by 69.24%,indicating the elimination of the low-speed stagnation zone in the end cap and the reduction of the initial risk of coagulation.In vitro anticoagulation experiments also indicated that the rate of TMP increase in the experimental group was 9.37%,slower than that in the control group,proving that the coagulation problem was improved.The structure of the helical flow guide vanes can delay the coagulation process within the dialyzer by improving the uniformity of blood flow and WSS of the dialyzer.The research can pro-vide new ideas and theoretical basis for the development of high-performance hemodialyzers with low anticoagulant dependence.
滕伟杭;李清念;查磊;包文亮;熊艳;付平
四川大学 机械工程学院,成都 610065四川大学 机械工程学院,成都 610065四川大学 机械工程学院,成都 610065江苏关怀医疗科技有限公司,苏州 215000四川大学 机械工程学院,成都 610065四川大学华西医院 肾脏内科,成都 610041
医药卫生
血液透析透析器端盖凝血旋动流血流动力学
HemodialysisDialyzer end capCoagulationHelical flowHemodynamics
《生物医学工程研究》 2026 (2)
139-147,9
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