Sansinen M, Santos M V, Zaritzky N, Baez R, Chirife J
Facultad de Ciencias Agrarias, Pontificia Universidad Católica Argentina, Cap. Gral. Ramón Freire 183, (1426) Buenos Aires, Argentina.
Cryo Letters. 2010 Mar-Apr;31(2):120-9.
Heat transfer plays a key role in cryopreservation of liquid semen in plastic straws. The effect of several parameters on the cooling rate of a liquid-filled polypropylene straw when plunged into liquid nitrogen was investigated using a theoretical model. The geometry of the straw containing the liquid was assimilated as two concentric finite cylinders of different materials: the fluid and the straw; the unsteady-state heat conduction equation for concentric cylinders was numerically solved. Parameters studied include external (convection) heat transfer coefficient (h), the thermal properties of straw manufacturing material and wall thickness. It was concluded that the single most important parameter affecting the cooling rate of a liquid column contained in a straw is the external heat transfer coefficient in LN2. Consequently, in order to attain maximum cooling rates, conditions have to be designed to obtain the highest possible heat transfer coefficient when the plastic straw is plunged in liquid nitrogen.
热传递在塑料细管中液态精液的冷冻保存过程中起着关键作用。利用理论模型研究了几个参数对充满液体的聚丙烯细管浸入液氮时冷却速率的影响。装有液体的细管的几何形状被简化为两个由不同材料制成的同心有限圆柱体:流体和细管;对同心圆柱体的非稳态热传导方程进行了数值求解。研究的参数包括外部(对流)传热系数(h)、细管制造材料的热性能和壁厚。得出的结论是,影响细管中液柱冷却速率的最重要参数是液氮中的外部传热系数。因此,为了获得最大冷却速率,必须设计条件,以便在塑料细管浸入液氮时获得尽可能高的传热系数。