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PERISTALTIC ROLLER PUMP: PARAMETRIC OPTIMIZATION FOR HEMOLYSIS CONTROL

机译:蠕动辊泵:溶血控制的参数优化

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This work aims to analyze the various types of peristaltic pumps by studying, in particular, the use of the peristaltic roller pump to highlight its critical issues and propose new effective and innovative solutions. One possible application of this device is in hemodialysis, which is a physical therapy substitution of kidney function that allows, in almost all cases, recovery and maintenance of the main biological functions while remaining the uremic condition. As for the extracorporeal one, the equipment used to purify the blood from toxic substances that are no longer normally eliminated by kidney filtration is divided mainly into two types: rotary peristaltic pump and a linear peristaltic pump. Having to work with a very particular fluid such as blood and in direct contact with the patient, they need to be extremely accurate and must ensure a constant and continuous functioning. The rotary peristaltic pump is the most widely used for hemodialysis and having been extensively studied in literature it has since found extensive solutions in the application field. As is well known, peristaltic pump refers to a device that exploits the principle of peristalsis to function, i.e. the transit of a bottleneck on a tube, in this case, the catheter, to push the fluid contained outwards. In particular, a roundabout peristaltic pump consists of a rotating structure consisting of two or more rollers that in turn revolve around their axis. With their displacement, the rollers clog adjacent catheter sections at a time so that after the first roller has passed the tube returns to its initial size creating the vacuum and then sucking the fluid. In this way, the liquid is pushed from the tube towards the patient. The motion of all these components is powered by an electric motor connected directly to the main rotating structure. The pumping of fluids through hoses using the propagation of a peristaltic wave has been the subject of design and scientific studies for more than 4 decades. This is easily justifiable since the phenomenon of peristalsis is known to be an important responsible mechanism of fluid transport in many biological organs. The goal is (starting on studies on the blood, a variable density fluid) to analyze in detail the peristaltic roller pump and propose its parametric optimization, aimed at determining the critical speed, beyond which the machine damages any kind of fluid that needs special treatment (blood, food, special gel, medical ointments and so on).
机译:这项工作旨在通过研究蠕动辊泵来突出其关键问题并提出新的有效和创新解决方案来分析各种类型的蠕动泵。该装置的一种可能应用是在血液透析中,这是一种肾功能的物理治疗替代,其允许在几乎所有情况下恢复和维持主要生物功能,同时留下尿素条件。对于体外的体外,用于从肾脏过滤中不再被肾脏过滤中不再被除去的有毒物质的血液的设备主要分为两种类型:旋转蠕动泵和线性蠕动泵。必须使用非常特殊的液体,例如血液和与患者直接接触,它们需要极其准确,并且必须确保恒定和连续的功能。旋转蠕动泵是血液透析最广泛的应用,并且在文献中广泛研究,它已经发现了应用领域的广泛解决方案。众所周知,蠕动泵是指利用蠕动原理的装置,即管的瓶颈的过境,在这种情况下,导管,推动含有向外的流体。特别地,环形交叉路口蠕动泵包括由两个或更多个辊组成的旋转结构,其又绕其轴线旋转。通过它们的位移,滚轮一次遮住导管部分,使得在第一辊通过管后返回其初始尺寸,从而产生真空然后吸入流体。以这种方式,液体从管向患者推动。所有这些部件的运动由直接连接到主旋转结构的电动机供电。使用蠕动波的繁殖,通过软管泵送流体已经是设计和科学研究的主题,超过4年。由于已知蠕动现象是许多生物器官中的流体运输的重要负责机制,因此这很容易合理。目标是(开始研究血液,可变密度流体)以详细分析蠕动辊泵,并提出其参数优化,旨在确定临界速度,机器损坏需要特殊处理的任何类型的液体(血液,食品,特殊凝胶,医疗药膏等)。

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