首页> 外文期刊>Biology Open >Mytilus galloprovincialis?as a smart micro-pump
【24h】

Mytilus galloprovincialis?as a smart micro-pump

机译:没食子没食子吗?作为智能微型泵

获取原文
       

摘要

Hydrodynamic performance of the marine mussel,?Mytilus galloprovincialis, is studied with time-resolved particle image velocimetry. We evaluated inhalant flow, exhalant jet flow, suction performance and flow control capabilities of the mussels quantitatively. Inhalant flow structures of mussels are measured at the coronal plane for the first time in literature. Nutrient fluid is convected into the mussel by three-dimensional sink flow. Inhalant velocity reaches its highest magnitude inside the mussel mantle while it is accelerating outward from the mussels. We calculated pressure gradient at the coronal plane. As inhalant flow approaches the mussel shell tip, suction force generated by the inhalant flow increases and becomes significant at the shell tip. Likewise, exhalant jet flow regimes were studied for 17 mussels. Mussels can control their exhalant jet flow structure from a single potential core region to double potential core region or vice versa. Peak exhalant jet velocity generated by the mussels changes between 2.77?cm?s?1?and 11.1?cm?s?1?as a function of mussel cavity volume. Measurements of hydrodynamic dissipation at the sagittal plane revealed no interaction between the inhalant and exhalant jet flow, indicating energy-efficient synchronized pumping mechanism. This efficient pumping mechanism is associated with the flow-turning angle between inhalant and exhalant jet flows, ~90° (s.d. 12°).
机译:用时间分辨粒子图像测速仪研究了贻贝(Mytilus galloprovincialis)海洋贻贝的流体力学性能。我们定量评估了贻贝的吸入流量,呼出气流,吸气性能和流量控制能力。贻贝的吸入气流结构是在文献中首次在冠状面测量的。营养液通过三维水槽流动对流到贻贝中。当贻贝从贻贝向外加速时,其吸入速度达到其最高值。我们计算了冠状面的压力梯度。随着吸入流接近贻贝壳尖端,由吸入流产生的吸引力增大,并且在壳尖端处变得显着。同样,研究了17种贻贝的呼气喷射流态。贻贝可以控制其呼气喷射流的结构,从单个潜在核心区域到双重潜在核心区域,反之亦然。贻贝产生的峰值呼气喷射速度随贻贝腔容积的变化在2.77?cm?s?1?和11.1?cm?s?1?之间变化。在矢状面的水动力耗散测量结果表明,吸入和排出的射流之间没有相互作用,这表明采用了节能的同步泵送机构。这种有效的泵送机制与吸入和排出的射流之间的转向角相关,约为90°(标准偏差12°)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号