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    • 1. 发明申请
    • SYSTEMS AND METHODS FOR CONTROLLING REFRIGERATION CYCLES
    • 控制制冷循环的系统和方法
    • WO2016176054A1
    • 2016-11-03
    • PCT/US2016/027561
    • 2016-04-14
    • ROCKY RESEARCH
    • KHALILI, KavehROCKENFELLER, Uwe
    • F25B17/08B01D53/14C09K5/04F25B17/00F25B35/04F25B41/04
    • F25B49/046
    • Systems and methods are described for controlling the equalization of pressure between absorbing and desorbing reactors. In a first reaction cycle in a desorbing reactor a gaseous reactant is desorbed from a solid sorbent and concurrently in an absorbing reactor the gaseous reactant is absorbed on a solid sorbent. In a second reaction cycle, absorption and desorption are reversed in the reactors and at least a portion of the gaseous reactant desorbed from in the desorbing reactor is transferred to the absorbing reactor in an equalization process under computer control. The computer control may detect the demand on the system and adjust the amount of time for the equalization process to increase the efficiency of the system.
    • 描述了用于控制吸收和解吸反应器之间的压力均衡的系统和方法。 在解吸反应器中的第一反应循环中,气态反应物从固体吸附剂中解吸,同时在吸收反应器中,气态反应物被吸附在固体吸附剂上。 在第二反应循环中,反应器中的吸收和解吸反向,并且在解吸反应器中解吸的至少一部分气体反应器在计算机控制下的均衡过程中被转移到吸收反应器中。 计算机控制可以检测系统的需求,并调整均衡过程的时间量以提高系统的效率。
    • 9. 发明申请
    • SYSTEMS, DEVICES AND METHODS FOR GAS DISTRIBUTION IN A SORBER
    • 用于气体分配的系统,装置和方法
    • WO2016130465A1
    • 2016-08-18
    • PCT/US2016/016974
    • 2016-02-08
    • ROCKY RESEARCH
    • ROCKENFELLER, UweKHALILI, Kaveh
    • F25B17/08
    • F25B37/00F25B17/083Y02A30/278Y02B30/64
    • Features for distributing a sorber gas in cooling, heating or refrigeration systems with sorbers are disclosed. The sorbers may adsorb gas onto a sorbent material and desorb gas therefrom. Distribution of the gas to and from the sorber may be done with porous, rigid tubes. The tubes may be formed of composite material having pores. The pores may be implemented by flowing fluids through the composite material while the material cures. The sorbers may be reinforced with rods to provide greater strength and stability in load-inducing environments. The tubes may extend through the sorbent and thereby provide a channel for the gas to flow to and from the sorbent and the rest of the cooling, heating or refrigeration system.
    • 公开了在具有吸附剂的冷却,加热或制冷系统中分配吸附剂气体的特征。 吸附剂可以将气体吸附到吸附剂材料上并从其中解吸气体。 气体与吸附剂的分布可以用多孔刚性管进行。 管可以由具有孔的复合材料形成。 可以在材料固化的同时使流体流过复合材料来实现孔。 吸附剂可以用杆来增强,以在负载诱导环境中提供更大的强度和稳定性。 管可以延伸穿过吸附剂,从而提供用于气体流过吸附剂和冷却,加热或制冷系统的其余部分的通道。
    • 10. 发明申请
    • RECUPERATION IN SOLID-VAPOR SORPTION SYSTEM USING SORPTION ENERGY AND VAPOR MASS FLOW
    • 使用分解能和蒸汽质量流动的固体蒸汽分离系统的回收
    • WO2003010472A1
    • 2003-02-06
    • PCT/US2002/022418
    • 2002-07-11
    • ROCKY RESEARCH
    • KHALILI, KavehROCKENFELLER, Uwe
    • F25B17/08
    • F25B17/083Y02A30/276Y02A30/277Y02B30/62
    • A method of carrying out recuperation between alternately absorbing and desorbing reactors in which in a first reaction cycle in a desorbing reactor a gaseous reactant is desorbed from a solid sorbent and concurrently in an absorbing reactor the gaseous reactant is absorbed on a solid sorbent, and in a second reaction cycle, absorption and desorption are reversed in said reactors, respectively, comprising communicating the reaction chambers of the desorbing reactor with the reaction chamber of the absorbing reactor and directing a portion of gaseous reactant desorbed from the sorbent composition in the desorbing reactor near the completion of a desorbing cycle to the absorbing reactor for less than about 10 minutes prior to reversing the cycles.
    • 在交替吸收和解吸反应器之间进行回收的方法,其中在解吸反应器中的第一反应循环中,气态反应物从固体吸附剂中解吸,同时在吸收反应器中,气态反应物被吸收在固体吸附剂上, 在第二反应循环中,吸收和解吸分别在所述反应器中相反,包括将解吸反应器的反应室与吸收反应器的反应室连通,并将一部分从脱附反应器中的吸附剂组合物解吸的气态反应物的一部分接近 在反转循环之前,至少10分钟内完成解吸循环到吸收反应器。