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首页> 外文期刊>Perfusion >Effect of inflow cannula side-hole number on drainage flow characteristics: flow dynamic analysis using numerical simulation
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Effect of inflow cannula side-hole number on drainage flow characteristics: flow dynamic analysis using numerical simulation

机译:流入套管侧孔数对排水流动特性的影响:使用数值模拟的流动动力学分析

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摘要

Background: Venous drainage in cardiopulmonary bypass is a very important factor for safe cardiac surgery. However, the ideal shape of venous drainage cannula has not been determined. In the present study, we evaluated the effect of side-hole number under fixed total area and venous drainage flow to elucidate the effect of increasing the side-hole numbers. Method: Computed simulation of venous drainage was performed. Cannulas were divided into six models: an end-hole model (EH) and models containing four (4SH), six (6SH), eight (8SH), 10 (10SH) or 12 side-holes (12SH). Total orifice area of the side-holes was fixed to 120 mm(2) on each side-hole cannula. The end-hole orifice area was 36.3 mm(2). The total area of the side-holes was kept constant when the number of side-holes was increased. Result: The mean venous drainage flow rate of the EH, 4SH, 6SH, 8SH, 10SH and 12SH was 2.57, 2.52, 2.51, 2.50, 2.49, 2.41 L/min, respectively. The mean flow rate decreased in accordance with the increased number of side-holes. Conclusion: We speculate that flow separation at the most proximal site of the side-hole induces stagnation of flow and induces energy loss. This flow separation may hamper the main stream from the end-hole inlet, which is most effective with low shear stress. The EH cannula was associated with the best flow rate and flow profile. However, by increasing side-hole numbers, flow separation occurs on each side-hole, resulting in more energy loss than the EH cannula and flow rate reduction.
机译:背景:心肺旁路中的静脉排水是安全心脏手术的一个非常重要的因素。然而,静脉排水套管的理想形状尚未确定。在本研究中,我们评估了固定总面积和静脉排水流下侧孔数的影响,以阐明增加侧孔数的效果。方法:进行计算的静脉排水模拟。将插管分为六种型号:终端孔模型(EH)和含有四(4SH),六个(6SH),8(8SH),10(10SH)或12个侧孔(12SH)的模型。侧孔的总孔面积固定在每个侧孔套管上的120mm(2)。端孔孔面积为36.3mm(2)。当侧孔的数量增加时,侧孔的总面积保持恒定。结果:EH,4SH,6SH,8SH,10SH和12SH的平均静脉排水率分别为2.57,2.52,2.51,2.5.50,2.49,2.41L / min。根据增加的侧孔数量的平均流速降低。结论:我们推测侧孔最近端部位的流动分离诱导流动的停滞,诱导能量损失。该流动分离可能妨碍来自端孔入口的主流,这对于低剪切应力最有效。 EH套管与最佳流速和流动轮廓有关。然而,通过增加侧孔数,在每个侧孔上发生流动分离,从而产生比EH套管更高的能量损失和减少流量。

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  • 来源
    《Perfusion》 |2018年第8期|共7页
  • 作者单位

    Hirosaki Univ Grad Sch Med Dept Thorac &

    Cardiovasc Surg 5 Zaifu Cho Hirosaki Aomori 0368562;

    Hirosaki Univ Fac Sci &

    Technol Dept Intelligent Machines &

    Syst Engn Hirosaki Aomori Japan;

    Hirosaki Univ Fac Sci &

    Technol Dept Intelligent Machines &

    Syst Engn Hirosaki Aomori Japan;

    Hirosaki Univ Fac Sci &

    Technol Dept Intelligent Machines &

    Syst Engn Hirosaki Aomori Japan;

    Aoyama Gakuin Univ Coll Sci &

    Engn Dept Mech Engn Sagamihara Kanagawa Japan;

    Hirosaki Univ Grad Sch Med Dept Thorac &

    Cardiovasc Surg 5 Zaifu Cho Hirosaki Aomori 0368562;

    Hirosaki Univ Grad Sch Med Dept Thorac &

    Cardiovasc Surg 5 Zaifu Cho Hirosaki Aomori 0368562;

    Hirosaki Univ Grad Sch Med Dept Thorac &

    Cardiovasc Surg 5 Zaifu Cho Hirosaki Aomori 0368562;

    Hirosaki Univ Grad Sch Med Dept Thorac &

    Cardiovasc Surg 5 Zaifu Cho Hirosaki Aomori 0368562;

    Hirosaki Univ Grad Sch Med Dept Thorac &

    Cardiovasc Surg 5 Zaifu Cho Hirosaki Aomori 0368562;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 治疗学;
  • 关键词

    venous cannula; computational fluid dynamics; side-holes; numerical simulation; drainage flow characteristics;

    机译:静脉套管;计算流体动力学;侧孔;数值模拟;排水流特性;

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