将恒温箱致冷到目标温度的方法及相关设施

文档序号:1173995 发布日期:2020-09-18 浏览:13次 >En<

阅读说明:本技术 将恒温箱致冷到目标温度的方法及相关设施 (Method for cooling an oven to a target temperature and related installation ) 是由 阿莱克斯·普维尔 劳特·里格 大卫·迪奥多 德里斯·斯提图 娜塔莉·玛泽 于 2018-09-07 设计创作,主要内容包括:本发明涉及使隔热箱(C)达到目标温度Tc的致冷方法:根据本方法,将蒸发器(E)置入所述隔热箱(C)内;使所述蒸发器(E)与至少一个热反应器Ri流体连通;同时,移除所述反应器Ri内产生的全部或部分热量;其特征在于:提供n个其他热化学反应器,n大于1;I)确定由所述热化学反应器Ri以及与其实现流体连通的所述蒸发器(E)所形成的组件内的压力Pevi和/或与所述蒸发器(E)实现流体连通的热化学反应器Ri的温度;II)当连接到所述蒸发器(E)的所述反应器Ri的温度和所述压力Pevi下所述热化学反应器Ri内所含反应混合物的平衡温度TeSi之间的温度差DTRi等于给定的第一差△T1时,和/或当所述蒸发器(E)和所述隔热箱(C)内部的温度差DTev等于给定的第二差△T2时,隔离所述蒸发器(E)和所述反应器Ri,并使所述蒸发器(E)与从尚未连接到所述蒸发器(E)的、且其压力小于Pevi的、和/或其温度低于给定值的所述n个其他热化学反应器中选择的至少一个热化学反应器Ri+1实现流体连通,并移除连接到所述蒸发器的所述一个或多个反应器Ri+1内所产生的全部或部分热量;III)参照与所述蒸发器(E)实现流体连通的所述热化学反应器Ri+1,重复步骤I)和II),直至所述隔热箱(C)内温度Tc和所述目标温度Tc之间的差等于第三差△T3。(The invention relates to a refrigeration method for bringing a heat-insulating box (C) to a target temperature Tc, comprising: according to the method, an evaporator (E) is placed in the thermally insulated box (C); -bringing the evaporator (E) in fluid communication with at least one thermal reactor Ri; simultaneously, removing all or part of the heat generated within the reactor Ri; the method is characterized in that: providing n further thermochemical reactors, n being greater than 1; I) determining a pressure Pevi within an assembly formed by the thermochemical reactor Ri and the evaporator (E) in fluid communication therewith and/or a temperature of the thermochemical reactor Ri in fluid communication with the evaporator (E); II) when the temperature difference DTRi between the temperature of the reactor Ri connected to the evaporator (E) and the equilibrium temperature TeSi of the reaction mixture contained in the thermochemical reactor Ri at the pressure Pevi is equal to a given first difference DeltaT 1, and/or isolating the evaporator (E) from the reactor Ri when the temperature difference DTev inside the evaporator (E) and the insulated box (C) is equal to a given second difference DeltaT 2, and bringing said evaporator (E) into fluid communication with at least one thermochemical reactor Ri &#43;1 chosen from said n other thermochemical reactors not yet connected to said evaporator (E) and having a pressure lower than Pevi and/or a temperature lower than a given value, and removing all or part of the heat generated in the one or more reactors Ri &#43;1 connected to the evaporator; III) repeating steps I) and II) with reference to the thermochemical reactor Ri &#43;1 in fluid communication with the evaporator (E) until the difference between the temperature Tc inside the insulated box (C) and the target temperature Tc is equal to a third difference DeltaT 3.)

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