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Numerical Simulation of the Heat Transfer in the Cryoprobe of an Innovative Apparatus for Cryosurgery

机译:冷冻机创新仪器冷冻探针中传热的数值模拟

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摘要

Cryosurgery is a rapidly developing discipline, alternative to conventional surgical techniques, used to destroy cancer cells by the action of low temperatures. Currently, the refrigeration is obtained via the adiabatic expansion of gases in probes used for surgeries, with the need of inherently dangerous pressurized vessels. The proposed innovative prototypal apparatus aims to reach the cryosurgical temperatures exploiting a closed-loop refrigeration system, avoiding the hazardous presence of pressurized vessels in the operating room. This study preliminarily examines the technical feasibility of the cryoablation with this machine focusing the attention on the cryoprobe design. Cryoprobe geometry and materials are assessed and the related heat transfer taking place during the cryoablation process is simulated with the aid of the computational fluid dynamics software ANSYS (R) FLUENT. Parametric analyses are carried out varying the length of the collecting tubes and the inlet velocity of the cold carrier fluid in the cryoprobe. The values obtained for physical quantities such as the temperature reached in the treated tissue, the width of the obtained cold front, and the maximum pressure required for the cold carrier fluid are calculated and discussed in order to prove the effectiveness of the experimental apparatus and develop the machine further.
机译:冷冻疗法是一种迅速发展的学科,替代传统的手术技术,用于通过低温的作用破坏癌细胞。目前,通过用于手术的探针中的气体的绝热膨胀,需要具有固有的危险的加压血管来获得制冷。所提出的创新原型设备旨在达到利用闭环制冷系统的冷冻电流温度,避免了手术室中加压血管的危险情况。本研究初步检查了与该机器的冷冻功能的技术可行性,将注意力集中在冷冻探针设计上。评估冷冻探针几何形状和材料,并且借助于计算流体动力学软件ANSYS(R)流畅,模拟冷冻过程中发生的相关传热。参数分析改变收集管的长度和冷冻探针中的冷载体流体的入口速度。用于物理量获得的值,例如在处理的组织中达到的温度,所获得的冷前沿的宽度以及冷载体流体所需的最大压力,并讨论以证明实验装置和发展的有效性这台机器进一步。

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