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Comparison of heat transfer in liquid and slush nitrogen by numerical simulation of cooling rates for French straws used for sperm cryopreservation

机译:精液冷冻用法国秸秆冷却速率的数值模拟比较液态氮和氮态氮的传热

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摘要

Abstract: Slush nitrogen (SN2) is a mixture of solid nitrogen and liquid nitrogen coexisting under an average temperature of -207ºC. In order to investigate whether plunging a French plastic straw (commonly used for spermatozoa cryopreservation) in SN2 may substantially increase cooling rates with respect to liquid nitrogen (LN2), a numerical simulation of the heat conduction equation with convective boundary condition was used to predict the cooling rates. Calculations performed using heat transfer coefficients in the range of film boiling confirmed the main benefit of plunging a straw in slush over LN2 does not arise from their temperature difference (-207ºC vs. -196ºC) but from an increase in the external heat transfer coefficient. Numerical simulations using high heat transfer (h) coefficients (assumed to prevail in SN2) suggested that plunging in SN2 would increase cooling rates of French straw. This increase of cooling rates was attributed to a less or null film boiling responsible for the low heat transfer coefficients in liquid nitrogen when the straw is placed in the solidliquid mixture or slush. In addition, it was demonstrated that predicted cooling rates of French straws in SN2 tends to level-off for high h values, suggesting heat transfer is dictated by the heat conduction within the liquid filled plastic straw
机译:摘要:稀氮(SN2)是在-207ºC的平均温度下共存的固氮和液氮的混合物。为了研究在SN2中插入法国塑料吸管(通常用于精子冷冻保存)是否可以大幅提高相对于液氮(LN2)的冷却速率,使用具有对流边界条件的热传导方程的数值模拟来预测冷却速度。使用在薄膜沸腾范围内的传热系数进行的计算证实,将秸秆浸入LN2的搪泥中的主要好处不是由于它们的温度差(-207ºC对-196ºC),而是由于外部传热系数的增加。使用高传热(h)系数的数值模拟(假设在SN2中盛行)表明SN2的下降会提高法国秸秆的冷却速度。冷却速率的增加归因于当将秸秆置于固液混合物或雪泥中时,较少或无效的膜沸腾导致液氮中的低传热系数。此外,已经证明,SN2中法国秸秆的预计冷却速率在高h值下趋于平稳,这表明传热是由液体填充的塑料秸秆内的热传导决定的。

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