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    • 2. 发明申请
    • Bimodal refrigeration system and method
    • 双峰制冷系统及方法
    • US20040020236A1
    • 2004-02-05
    • US10409351
    • 2003-04-08
    • Gerard C. Vince IIPrakash W. ShahaniPaul V. Robbins
    • B60H001/32F25B025/00F25D017/02
    • B65D88/745B60H1/00014B60H1/005B60P3/20F25D16/00F25D17/005F25D2201/126F25D2201/14F25D2303/085
    • A bimodal refrigeration system for use in refrigerated transport containers or refrigerated warehouses. The present invention includes a refrigerated container having an enclosed cargo chamber for storing refrigerated goods and a mechanical refrigeration unit that produces a chilled forced-air current within the cargo chamber. The cargo chamber is designed to guide the forced-air current in a specified discharge and return path. In accordance with the present invention, a row of thermal storage ducts for retaining endothermic storage material are disposed within the cargo chamber. The thermal storage ducts are longitudinally disposed in parallel with the air flow direction of the specified forced-air discharge and return path to enable maximum convective thermal exchange between the forced-air current and the endothermic storage material without obstructing the specified forced-air discharge and return path.
    • 用于冷藏运输集装箱或冷藏仓库的双峰制冷系统。 本发明包括具有用于储存冷藏货物的封闭货舱的冷藏集装箱和在货舱内产生冷却的强制空气流的机械制冷装置。 货舱被设计成在指定的排放和返回路径中引导强制空气流。 根据本发明,用于保持吸热储存材料的一排热存储管道设置在货舱内。 热存储管道纵向地设置成与指定的强制空气排放和返回路径的空气流动方向平行,以在强制空气流和吸热存储材料之间实现最大的对流热交换,而不会阻碍指定的强制排气和 返回路径。
    • 4. 发明申请
    • Energy efficient sorption processes and systems
    • 节能吸附过程和系统
    • US20030221438A1
    • 2003-12-04
    • US10367982
    • 2003-02-19
    • Milind V. RaneS. V. Kota ReddyAkhil AgarwalJaskaran S. Bajaj
    • F25B037/00F02M023/14F02M031/00F25D023/00F25B025/00
    • F24F3/1417B01D53/263F24F2003/144F24F2203/1004F24S10/90F25B17/08F25B27/007F25B27/02F25B35/04F25B2315/005F28D15/0266F28D15/0275F28D15/06Y02A30/274Y02E10/40Y02T10/16
    • The present invention relates to novel energy efficient sorption processes and systems for cooling, dehumidifying and heating using multistage liquid desiccant regenerators, or hybrid cooling systems or adsorption cooling systems involving appropriate combinations of rotating contacting devises, adsorption modules with heat transfer passages in thermal contact with the adsorption module wall and switchable heat pipes. The sorption processes of this invention help in flexible designing of compact cooling, dehumidifing, heating systems easy operability. The adsorption module of this invention leads to lower cycle times as low as 5 minutes; makes it possible to achieve high system Coefficient of Performance (COP) up to 0.9 due to reduced thermal mass; offers high specific cooling power in the range of 50 to 750 W/kg of AC; is easy to manufacture and operates at low costs. The refrigeration cum heating system of this invention with heat pipe in thermal contact with the adsorption modules increase the heat transfer rates without increasing the thermal mass leading to increase of COP and the single or multistage pressure equalisation increases the internal regeneration of heat thereby increasing the COP, reducing the cycle time resulting in increased specific cooling power (SCP), reducing the required quantity of adsorbent/refrigerant making the module compact and cost effective.
    • 本发明涉及使用多级液体干燥剂再生器或混合冷却系统或吸附冷却系统进行冷却,除湿和加热的新型节能吸附方法和系统,该系统或吸附冷却系统涉及旋转接触装置的合适组合,具有与热接触的传热通道的吸附模块 吸附模块壁和可切换热管。 本发明的吸附方法有助于灵活设计紧凑型冷却,除湿,加热系统易于操作。 本发明的吸附模块导致较低的循环时间低至5分钟; 由于热质量的降低,可以实现高达0.9的高系统性能系数(COP)。 提供在50至750 W / kg AC范围内的高比冷却功率; 易于制造和低成本运行。 具有与吸附模块热接触的热管的本发明的制冷暨加热系统增加了传热速率,而不增加热质量导致COP的增加,并且单级或多级压力均衡增加了热的内部再生,从而增加了COP ,降低了循环时间,从而提高了比冷却功率(SCP),减少了所需量的吸附剂/制冷剂,从而使模块更加紧凑,性价比高。
    • 6. 发明申请
    • Liquid desiccant air conditioner
    • US20010013226A1
    • 2001-08-16
    • US09819530
    • 2001-03-28
    • Shailesh V. PotnisKevin GurleyPhillip T. McKittrickRobert BaumannSrikant Ram RaoRobert L. Laurent JR.
    • F25D023/00F25D017/06F25B027/00F25B025/00
    • F24F3/1417B01D53/263F24F3/1411F24F5/0014F24F2003/144F28B1/02F28D7/106F28F1/08
    • The present invention provides a liquid desiccant air conditioner including an absorption air conditioner and a liquid desiccant dehumidifier. The dehumidifier includes a liquid desiccant absorber for absorbing moisture contained in ambient air entering the dehumidifier and passing through the desiccant absorber. A boiler is provided for boiling partially preheated dilute liquid desiccant to evaporate moisture to reconstitute the liquid desiccant into concentrated liquid desiccant. In a preferred embodiment, a first heat exchanger fluidly communicates with the desiccant absorber and a second heat exchanger. The first heat exchanger is operable to transfer heat from the concentrated liquid desiccant to the dilute liquid desiccant directed to the first heat exchanger from the desiccant absorber to raise the temperature of the dilute liquid desiccant to a first temperature. A condenser fluidly communicates with the boiler to receive steam generated by boiling the liquid desiccant in the boiler, and with the first heat exchanger to receive partially heated dilute liquid desiccant from the first heat exchanger at the first temperature. The condenser is operable to sensibly heat the dilute liquid desiccant therein to a second temperature by recovering the latent heat of condensation as steam delivered from the boiler is condensed. The second heat exchanger fluidly communicates with the condenser, the boiler and the first heat exchanger. The second heat exchanger is operable to transfer heat from concentrated liquid desiccant directed to the second heat exchanger from the boiler to the dilute liquid desiccant directed to the second heat exchanger from the condenser at the second temperature to raise the temperature of the dilute liquid desiccant to a third temperature. The dilute liquid desiccant at the third temperature is directed to the boiler and the concentrated liquid desiccant from the second heat exchanger is directed to the first heat exchanger. The second heat exchanger is disposed with respect to the boiler to recover waste heat from the boiler. A pump is provided for pumping concentrated liquid desiccant into the absorber. A fraction of the steam from the boiler is used to regenerate the refrigerant in the absorption air conditioner.
    • 9. 发明申请
    • Cooling/heating system of air conditioner
    • 空调冷暖系统
    • US20040134212A1
    • 2004-07-15
    • US10695904
    • 2003-10-30
    • LG Electronics Inc.
    • Won Hee LeeYoon Jei HwangChan Ho Song
    • F25D017/06F25D023/00F25B025/00
    • F24F12/006F24F3/1417F24F2003/1435F25B13/00Y02B30/563
    • Cooling/heating system of air conditioner including a duct having a first passage for drawing external air, and a second passage for drawing room air, the second passage having a part crossed with the first passage, a regenerative heat exchanger having first and second flow passages in the crossed part of the first and second passages for indirect heat exchange between the external air and the room air, a case connected to the first and second passages of the duct having first and second outlets for drawing/discharging external and room air, first and second fans for drawing in the external air and the room air into the case through the first and second passages, and discharging the external air and the room air through the first and second outlets, and first and second heat exchangers for heat exchange with the external air and the room air discharge through the first and second outlets, thereby preventing contamination and dried room air and reducing heat loss to permit cooling/heating even with small amount of energy.
    • 空调机的冷却/加热系统,包括具有用于抽吸外部空气的第一通道的管道和用于抽取室内空气的第二通道,第二通道具有与第一通道交叉的部分,具有第一和第二流动通道的再生式热交换器 在第一和第二通道的交叉部分中,用于在外部空气和室内空气之间进行间接热交换,连接到管道的第一和第二通道的壳体具有用于抽吸/排出外部和室内空气的第一和第二出口,第一 以及第二风扇,用于通过第一和第二通道将外部空气和室内空气吸入壳体,并且通过第一和第二出口排出外部空气和室内空气;以及第一和第二热交换器,用于与 外部空气和室内空气通过第一和第二出口排放,从而防止污染和干燥的室内空气并减少热损失以允许冷却/加热 甚至用少量的能量。
    • 10. 发明申请
    • Air conditioning system
    • 空调系统
    • US20040020237A1
    • 2004-02-05
    • US10633384
    • 2003-08-01
    • Richard A. Burger
    • F25B025/00F25D003/02F25D017/02
    • F24F5/0017F25D3/005Y02E60/147
    • A natural and environmentally friendly cooling system is disclosed. The cooling system includes an insulating enclosure, a block of ice within the insulating enclosure, a primary coil of tubing contacting the block of ice and beneath the block of ice for transferring fluid, a return coil of tubing beneath the block of ice for transferring fluid, and a floor pan for collecting water beneath the primary coil and the return coil. The enclosure can include sloped walls to facilitate freezing of water within the enclosure. Alternatively, the block of ice can be delivered via a service.
    • 公开了一种天然和环保的冷却系统。 冷却系统包括绝缘外壳,绝缘外壳内的一块冰块,与冰块接触并且在冰块下方的用于传送流体的管路的初级线圈,用于传送流体的冰块下方的管道的返回线圈,用于传送流体 以及用于收集初级线圈和返回线圈下面的水的底盘。 外壳可以包括倾斜的壁,以便于冷藏外壳内的水。 或者,可以通过服务传送冰块。