首页> 外文期刊>Journal of Heat Transfer >Experimental and Numerical Study of One, Two, and Three Embedded Needle Cryoprobes Simultaneously Operated by High Pressure Argon Gas
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Experimental and Numerical Study of One, Two, and Three Embedded Needle Cryoprobes Simultaneously Operated by High Pressure Argon Gas

机译:高压氩气同时操作的一,二,三埋入式针灸超低温冷媒的实验和数值研究

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One, two, and three needle cryoprobes, 1.47 mm outside diameter, simultaneously and uniformly operated by high pressure argon gas, were tested in a gel simulating the thermal properties of biological tissues. The probes were inserted into the same depth in the gel through two parallel templates with holes drilled on a 5 × 5 mm~2 mesh. The temperature of the active segment of the probe was monitored by a single soldered thermocouple (TC). Temperatures in the gel were monitored by K-type TC strings in the radial, and in the downward and upward axial directions. The phase-change problem in the gel was solved by ANSYS7.0, based on the enthalpy method. Calculated and measured results compared reasonably well with the most deviations observed in the upward axial direction. Results of this study may be summarized as follows: (a) Due to the cylindrical structure of the probe, the advancement of the frozen fronts was more pronounced in the upward axial and the radial directions than in the downward direction, (b) The farthest placement of the two probes (10 mm) yielded the largest volumes enclosed by the isothermal contours, (c) In the tightest two placement configurations of the three probes, the -40℃ fronts of all frozen lumps have joined together even after 1 min of operation, while in the less tight configurations, joining occurred later, (d) In multiprobe applications and for a given duration of application, there exists a certain placement configuration that will produce the maximal volume of any temperature-specific frozen lump. The computational tool presented in this study could assist the surgeon in the preplanning of cryosurgical procedures and thus reduce uncertainties and enhance its success rate.
机译:在凝胶中测试了外径为1.47 mm的一针,两针和三针冷冻探针,同时通过高压氩气对其进行了均匀操作,以模拟生物组织的热特性。通过两个平行的模板将探针插入到凝胶中相同深度的位置,模板在5×5 mm〜2的网格上钻孔。探针的活动段的温度通过单个焊接热电偶(TC)进行监控。凝胶中的温度通过径向,上下轴向的K型TC线监测。基于焓法,ANSYS7.0解决了凝胶中的相变问题。计算结果和测量结果与轴向向上的最大偏差进行了合理的比较。这项研究的结果可以归纳如下:(a)由于探头为圆柱形结构,因此冻结的锋面在轴向和径向上的前进比在向下方向上更为明显,(b)最远两个探头的放置(10毫米)产生了等温线所包围的最大体积,(c)在三个探头的最紧密的两个放置配置中,即使经过1分钟的冷冻,所有冷冻团块的-40℃前沿也连接在一起。 (d)在多探头应用中并且在给定的应用持续时间内,存在一定的放置配置,该配置将产生任何特定于温度的冷冻块的最大体积。这项研究中提出的计算工具可以帮助外科医生进行冷冻手术程序的预先计​​划,从而减少不确定性并提高其成功率。

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