发明名称 Thermo-electric heat pump systems
摘要 This invention relates to providing energy efficient thermo-electric heat pump systems for iso-thermal transport and storage, of perishable goods, such as vaccines, chemicals, biologicals, and other temperature sensitive goods. Also this invention relates to providing energy efficient iso-thermal transport and storage systems, of perishable goods, which are compact, light weight. This invention further relates to providing on-board energy storage for sustaining, for multiple days, the ability of such iso-thermal transport and storage systems to maintain temperature sensitive goods at a constant-temperature.
申请公布号 US9134055(B2) 申请公布日期 2015.09.15
申请号 US201414197589 申请日期 2014.03.05
申请人 发明人 Ilercil Alp
分类号 F25B21/04;F25B21/02 主分类号 F25B21/04
代理机构 Booth Udall Fuller, PLC 代理人 Fuller Rodney J.;Booth Udall Fuller, PLC
主权项 1. A thermal protection system, relating to thermally protecting temperature-sensitive goods, comprising: a vessel configured to contain the temperature sensitive goods, the vessel comprising a first end that further comprises a resealable opening configured to receive the temperature sensitive goods, wherein the vessel further comprises a vent configured to allow air to flow into or from the vessel when the resealable opening is sealed; a stack of at least two thermoelectric unit layers thermally and electrically coupled in series to each other and capable of active use of the Peltier effect, the stack of at least two thermoelectric unit layers in thermal conduction with a second end of the vessel opposite the first end of the vessel, each thermoelectric unit layer having a cold side and a hot side; a capacitance spacer block that stores heat and provides a thermal buffer to delay transfer of heat between the stack of at least two thermoelectric unit layers, wherein a first side of the capacitance spacer block is thermally connected to the hot side of a first thermoelectric unit layer and a second side of the capacitance spacer block opposite the first side of the capacitance spacer block is thermally connected to the cold side of a second thermoelectric unit layer, thereby forming a sandwich layer that pumps heat from the first thermoelectric unit layer to the second thermoelectric layer; an energy source electrically connected in series with each of the at least two thermoelectric unit layers, wherein the energy source is suitable to provide a current; a heat sink thermally coupled to the stack of at least two thermoelectric unit layers opposite the vessel; and a fan assembly associated with the heat sink to dissipate heat with respect to the heat sink through thermal convection.
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