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Onsager heat of transport for water vapour at the surface of water and ice:thermal accommodation coefficients for water vapour on a stainless-steel surface

机译:水和冰表面上水蒸气的Onsager传递热:不锈钢表面上水蒸气的热容纳系数

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The Onsager heat of transport Q* has been measured for water vapour at the surface of water,supercooled water,and ice,over the temperature range -8 to+10 deg C.For liquid water,Q* is constant at -24.7+-3.6 kJ mol~(-1) (two standard deviations) over the pressure range 4-9.5 Torr.Provided the ice is suitably aged,the |Q*| values are very similar for water and ice,a result which is consistent with the presence of a liquid-like layer at the surface of ice.The values are slightly larger for ice,in proportion to the ratio of the heat of sublimation of ice to the heat of vaporization of the liquid.Departures from linearity of plots of P against AT are attributed to temperature jumps at the surface of the dry upper plate.Hence jump coefficients and thermal accommodation coefficients have been derived as a function of temperature for collisions of water molecules with type-304 stainless steel.
机译:测量了在-8至+10摄氏度温度范围内的水,过冷水和冰表面的水蒸气的Onsager传递热Q *。对于液态水,Q *恒定为-24.7 +-在4-9.5 Torr的压力范围内为3.6 kJ mol〜(-1)(两个标准偏差)。如果冰已适当陈化,| Q * |对于水和冰,该值非常相似,这与在冰表面上存在液体状层相一致。对于冰,该值稍大,与冰的升华热与冰的热之比成比例。相对于AT的P曲线的线性偏离是由于干燥的上板表面的温度跃迁而引起的,因此推导了跃迁系数和热适应系数与水碰撞时温度的函数分子采用304型不锈钢。

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