首页> 外文会议>ASME/JSME thermal engineering joint conference;AJTEC2011 >THREE-DIMENSIONAL NUMERICAL STUDY ON FREEZING PHASE CHANGE HEAT TRANSFER IN BIOLOGICAL TISSUE EMBEDDED WITH TWO CRYOPROBES
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THREE-DIMENSIONAL NUMERICAL STUDY ON FREEZING PHASE CHANGE HEAT TRANSFER IN BIOLOGICAL TISSUE EMBEDDED WITH TWO CRYOPROBES

机译:两种探针包裹的生物组织中冻结相变传热的三维数值研究

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A mathematical model for phase change heat transfer in cryosurgery was established. In this model, a fractal tree-like branched network was used to describe the complicated geometrical frame of blood vessel. The temperature distribution and ice crystal growth process in biological tissue including normal tissue and tumor embedded with two cryoprobes were numerically simulated. The effects of cooling rate, initial temperature and distance of two cryoprobes on freezing process of tissue were also studied. The results show that the ice crystal grows more rapidly in the initial freezing stage and then slows down in the following process, and the pre-cooling of cryoprobes has no obvious effect on freezing rate of tissue. It also can be seen that the distance of 10 mm between two cryoprobes is the most appropriate choice for operation effect in the range of operating conditions presented in this study.
机译:建立了冷冻手术中相变传热的数学模型。在此模型中,使用分形树状分支网络来描述复杂的血管几何框架。数值模拟了生物组织(包括正常组织和包埋有两个冷冻针的肿瘤)中的温度分布和冰晶生长过程。还研究了冷却速度,初始温度和两个冷冻棒的距离对组织冷冻过程的影响。结果表明,冰晶在初始冷冻阶段生长较快,随后在随后的过程中减慢,而冷冻棒的预冷对组织的冷冻速度没有明显影响。还可以看出,在本研究提出的操作条件范围内,两个冷冻探针之间的10 mm距离对于操作效果是最合适的选择。

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