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DESIGN AND DEVELOPMENT OF A NEW VALVE GEOMETRY FOR SPACER DEVICES

机译:垫片装置新阀门几何设计的设计与开发

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Nebulizers such as, Dry Powder Inhalers (DPI's) and pressurized Metered-Dose Inhalers (pMDI's), are all equally used in the treatment of asthma. For children, where the asthma incidence is high and where a good coordination between the device actuation and the respiration is needed to use the pMDI, a solution was found with the introduction of an add-on spacer to thepMDI. Because spacers attached to the pMDI are the cheapest and most efficient way to treat asthma in children, it is of the greatest relevance to improve its efficiency. This project, which concerns the study of the spacer geometry, is focused in the study, design and development of new valve geometries to enable a better delivery of the drug to the patient. This study was carried out using the Fluent? software, from ANSYS. Once the input parameters and models were defined in order to get a realistic computational model, the geometry was optimized. This optimal solution was tested, compared and analyzed against Volumatic? valve, the spacer most widely used in the world. All the models, as well as the results obtained will be analyzed and discussed throughout the paper. It was concluded that some simple modifications, introduced on the shape of the cross-section of the valve geometry, yields radical changes in the air flow behavior. Optimizing the airflow by changing the geometry, reducing the vortex areas, will lower the waste of drug in the spacer, increasing the amount of delivery to the lung.
机译:雾化器如干粉吸入器(DPI)和加压计量吸入器(PMDI),都同样用于治疗哮喘。对于儿童,哮喘发射高并且需要使用PMDI的器件致动和呼吸之间的良好配位,发现通过引入PMDI的附加间隔物的溶液。由于附着在PMDI上的垫片是在儿童中治疗哮喘的最便宜和最有效的方式,因此可以最重要的是提高其效率。该项目涉及垫片几何研究的研究,专注于新阀几何的研究,设计和开发,以使药物更好地向患者提供药物。这项研究是使用流利的?软件,来自ANSYS。一旦定义了输入参数和模型以获得逼真的计算模型,就会优化几何体。测试,比较和分析该最佳解决方案,并针对体积分析阀门,世界上最广泛应用的垫片。所有型号以及在本文中将分析和讨论所获得的结果。结论是,在阀门几何形状的横截面的形状上引入了一些简单的修改,产生了气流行为的根本变化。通过改变几何形状来优化气流,减少涡旋区域,将降低垫片中的药物浪费,从而增加给肺的递送量。

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