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    • 2. 发明申请
    • HEAT PUMP WITH INTEGRAL SOLAR COLLECTOR
    • 带集成太阳能收集器的热泵
    • WO2011017450A2
    • 2011-02-10
    • PCT/US2010044447
    • 2010-08-04
    • SOL XORCE LLCGURIN MICHAEL H
    • GURIN MICHAEL H
    • F25B27/00F25B30/02F25B49/02
    • F25B27/002Y02A30/272Y02B10/20Y02B10/24
    • The heat pump solar collector generally relates to heat pumps that utilize at least one thermal source operating with the same working fluids. In one embodiment, the heat pump solar collector relates to a hybrid solar heat pump comprised of at least one microchannel heat exchanger with integral solar absorber, at least one compression (i.e., mass flow regulator) device as the heat pump for concurrent compression to a higher pressure and mass flow regulator of the working fluid, and at least one working fluid accumulator with the entire system operating with the same working fluid. The heat pump solar collector also generally relates to heat pump systems that utilize an inventory management system to provide both efficient and safe operation under a wide range of operating conditions.
    • 热泵太阳能收集器通常涉及利用至少一个使用相同工作流体工作的热源的热泵。 在一个实施例中,热泵太阳能收集器涉及一种混合太阳能热泵,其包括至少一个具有整体太阳能吸收器的微通道热交换器,至少一个压缩(即,质量流量调节器)装置,作为用于同时压缩至 工作流体的较高压力和质量流量调节器,以及至少一个工作流体储存器,整个系统用相同的工作流体操作。 热泵太阳能收集器还通常涉及利用库存管理系统在宽范围的操作条件下提供有效和安全的操作的热泵系统。
    • 3. 发明申请
    • HYBRID POWER GENERATION AND ENERGY STORAGE SYSTEM
    • 混合发电和能源储存系统
    • WO2008039725A3
    • 2008-09-12
    • PCT/US2007079318
    • 2007-09-24
    • REXORCE THERMIONICS INCGURIN MICHAEL H
    • GURIN MICHAEL H
    • G05D29/00
    • B60W20/10B60K1/02B60L11/1861B60L2270/44B60W10/24B60W20/00B60W2530/14B60W2550/402Y02T10/6269Y02T10/7005Y02T10/7044Y02T10/705
    • An integrated and hybrid energy provider and storage device system for enhancing the energy efficiency and minimizing greenhouse gas emissions particularly for systems that utilize energy in a discrete and discontinuous manner, such as plug-in hybrid vehicles (110) is provided. The system provides automated means to generate power, distribute the preferably locally generated power to a multiplex array of energy storage devices (90,100) in a dynamic manner. The system, when utilizing dynamic algorithms, preferably meets the complex demands of often conflicting energy storage device requirements and real-time demand loads in-conjunction with dynamic switching between energy storage devices to enhance the performance and effectiveness that is beneficial to both the aggregate energy efficiency and the individual owner demands of each energy storage device.
    • 提供了一种用于提高能量效率并最小化温室气体排放的综合和混合能源提供者和存储装置系统,特别是对于以离散和不连续的方式使用能量的系统,例如插电式混合动力车辆(110)。 该系统提供自动化的装置来发电,优选地将本地生成的功率以动态方式分配给能量存储装置的多路复用阵列(90,100)。 该系统在利用动态算法时,最好能够满足经常冲突的能量存储设备要求和实时需求负载与能量存储设备之间的动态切换的复杂需求,以增强有利于总能量的性能和有效性 每个储能装置的效率和个人所有者的需求。
    • 6. 发明申请
    • HIGH EFFICIENCY ABSORPTION HEAT PUMP AND METHODS OF USE
    • 高效吸收式热泵及其使用方法
    • WO2007082103A2
    • 2007-07-19
    • PCT/US2007001120
    • 2007-01-16
    • GURIN MICHAEL H
    • GURIN MICHAEL H
    • F25B13/00
    • F25B30/04C09K5/047F01K3/02F01K23/02F01K25/065Y02P20/123Y02P20/124Y02P20/544
    • An energy conversion system including a high efficiency absorption heat pump cycle is disclosed using a high pressure stage, a supercritical cooling stage, and a mechanical energy extraction stage to provide a non-toxic combined heat, cooling, and energy system. Using the preferred carbon dioxide gas with partially miscible absorber fluids, including the preferred ionic liquids as the working fluid in the system, the present invention desorbs the CO.sub.2 from an absorbent and cools the gas in the supercritical state to deliver heat. The cooled CO.sub.2 gas is then expanded, preferably through an expansion device transforming the expansion energy into mechanical energy thereby providing cooling, heating temperature lift and electrical energy, and is returned to an absorber for further cycling. Strategic use of heat exchangers, preferably microchannel heat exchangers comprised of nanoscale powders and thermal-hydraulic compressor / pump can further increase the efficiency and performance of the system.
    • 公开了一种包括高效吸收热泵循环的能量转换系统,其使用高压级,超临界冷却级和机械能提取级,以提供无毒的热,冷却和能量系统。 使用优选的二氧化碳气体与部分可混溶的吸收剂流体,包括优选的离子液体作为系统中的工作流体,本发明从吸收剂中解吸CO 2并在超临界状态下冷却气体以传递热量。 然后将冷却的CO 2气体膨胀,优选通过将膨胀能转化为机械能的膨胀装置,从而提供冷却,加热温度升高和电能,并返回到吸收器进行进一步循环。 热交换器,优选由纳米尺度粉末和热液压压缩机/泵组成的微通道热交换器的策略性应用可进一步提高系统的效率和性能。