Pengaruh Dimensi水库水流速率Pompa输注胰岛素

Rahmad Kuncoro Adi, Krisdiyanto Krisdiyanto
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摘要

胰岛素泵是一种用于控制糖尿病患者血糖水平的半自动医疗设备。该设备的工作原理是将胰岛素从储存的胰岛素进入患者体内。胰岛素储存是注射到病人体内的胰岛素储存地。胰岛素输液管的主要成分包括泵、电机、水库、管和微处理器。该设备根据预先设定的flow速率注入胰岛素。储存胰岛素的维度影响设备的流速速率。为了使设备发出的流速速率准确,必须考虑水库的尺寸。基于计算机动力动力的软件可以对储存胰岛素的流体速度进行模拟。输入的速度可以用来计算流体的流速。这项研究的结果表明,储存胰岛素直径的变化将影响流速。一种注射胰岛素的药物是一种半自动的药物设备,用于控制糖尿病患者的血液葡萄糖水平。这个装置是通过从胰岛素储备中注射到病人体内的胰岛素继续发挥作用的。胰岛素储存是一种容器,胰岛素在注射到病人的身体之前就会储存。主要的胰岛素吸入泵,马达,水库,浴缸和微处理器。注射胰岛素的装置以调节流速的方式注射。水箱的尺寸需要被认为是这样的:胰岛素的流速速率是准确的。储存胰岛素中流体速度的模拟正在使用计算机软件加以考虑。inside fluid velocity过去常常拖动fluid flow rates。这种研究的结果是,在胰岛素储备的直径变化的模拟将影响flow速率。在胰岛素内泵计划中存在的外溢率导致了外溢率的外溢率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pengaruh Dimensi Reservoir terhadap Flow Rate Pompa Infus Insulin
Pompa infus insulin adalah peralatan medis semi otomatis yang digunakan untuk mengontrol tingkat gula darah penderita diabetes. Cara kerja perangkat tersebut yaitu dengan cara memasukkan insulin dari reservoir insulin kedalam tubuh pasien secara kontinu. Reservoir insulin adalah tempat penyimpanan insulin sebelum dimasukkan ke dalam tubuh pasien. Komponen utama pompa infus insulin terdiri dari pompa, motor, reservoir, tube, dan microprocessor . Perangkat tersebut memasukkan insulin sesuai dengan flow rate yang telah diatur. Dimensi dari reservoir insulin mempengaruhi flow rate perangkat tersebut. Dimensi reservoir perlu dipertimbangkan agar flow rate yang keluar dari perangkat tersebut akurat. Simulasi pemberian kecepatan fluida pada reservoir insulin dapat dilakukan dengan perangkat lunak berbasis computational fluid dynamics. Kecepatan yang dimasukkan dapat dipakai untuk menghitung flow rate fluida. Hasil penelitian ini menunjukkan bahwa simulasi perubahan diameter reservoir insulin akan mempengaruhi flow rate . An insulin infusion pump is a semi-automatic medical device used to control blood glucose level of diabetic patient. The device works by infusing insulin from the insulin reservoir into the patient's body continuously. Insulin reservoir is a container where insulin is stored before being injected into the patient's body. The main components of insulin infusion pumps consist of a pump, a motor, a reservoir, tubes and a microprocessor. The device injects the insulin according to a regulated flow rate. The dimensions of the reservoir need to be considered so that the flow rate of the insulin is delivered accurately. The simulation of fluid velocity in the insulin reservoir was carried out using a computational fluid dynamics software. The entered fluid velocity were used to calculate fluid flow rates. The results of this study indicate that the simulation of changes in the diameter of the insulin reservoir will affect the flow rate. The smaller reservoir dimension make the flow rate that comes out of the nozzle approaches the flow rate that has been set in the insulin infusion pump program.
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