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    • 3. 发明申请
    • AIRCRAFT SUPPLEMENTARY COOLING SYSTEM BY EVAPORATING LIQUID NITROGEN
    • 飞机辅助冷却系统,通过蒸发液氮
    • WO2015067373A1
    • 2015-05-14
    • PCT/EP2014/003004
    • 2014-11-10
    • AIRBUS DEFENCE AND SPACE GMBH
    • THIELE, ChristianCERNKO, Emil
    • B64D13/08
    • B64D13/08B64D2013/0614B64D2013/0629B64D2013/064B64D2013/0674F24F2005/0039F25D3/10Y02T50/56
    • A cooling system (2) for an interior space of a vehicle comprises a main cooling system (4) coupled with an air inlet (6) for receiving air (10) and coupled with the interior space (12, 14, 16, 18, 20) for providing cooled air to the interior space (12, 14, 16, 18, 20), at least one air (8, 22, 24, 26) duct arranged between the air inlet (6) and the interior space (12, 14, 16, 18, 20), a reservoir (30) for liquid nitrogen having a nitrogen outlet (34) and a valve (36) arranged between the outlet (34) and an injection port (38) of the at least one air duct (8, 22, 24, 26). The reservoir (30) is couplable with the injection port (38) of the at least one air duct (8, 22, 24, 26) via the valve (36) on demand for evaporating nitrogen in the at least one air duct (8, 22, 24, 26). With the injection of liquid nitrogen the main cooling system (4) is supported in case it is not able to provide a sufficient cooling power.
    • 用于车辆内部空间的冷却系统(2)包括与用于接收空气(10)并与内部空间(12,14,16,18和18)联接的空气入口(6)联接的主冷却系统(4) 20),用于向内部空间(12,14,16,18,20)提供冷却的空气,至少一个空气(8,22,24,26)管道,布置在空气入口(6)和内部空间(12)之间 ,14,16,18,20),用于液氮的储存器(30),其具有氮气出口(34)和布置在所述出口(34)和所述至少一个的出口(34)之间的喷射口(38) 风道(8,22,24,26)。 储存器(30)可根据要求蒸发至少一个空气管道(8)中的氮气,经由阀(36)与至少一个空气管道(8,22,24,26)的注入口(38)连接 ,22,24,26)。 通过喷射液氮,主冷却系统(4)被支撑,以防其不能提供足够的冷却功率。
    • 7. 发明申请
    • 分散型冷温熱装置による域間熱補完システム
    • 分布式低温和热装置的区域间热补充系统
    • WO2002065034A1
    • 2002-08-22
    • PCT/JP2001/010903
    • 2001-12-12
    • 株式会社 前川製作所佐野 誠川村邦明松田潤二藤間克己工藤孝典川津洋一吉川朝郁深野修司
    • 佐野 誠川村邦明松田潤二藤間克己工藤孝典川津洋一吉川朝郁深野修司
    • F25D17/02
    • F25D17/02F24F2005/0039
    • An inter-region thermal complementary (combination of heat supply with exhaust heat) system capable of complementing a heat by forming an endless loop so as to complement each other the heat produced in the regions such as plants and areas, performing a heat transfer without performing the forced circulation of water by a pump in the endless loop independently of the circumferential diameter of an annular endless water channel, i.e., the areas of the regions to be supplied with heat, wherein an endless multiplex helical loop sealed with liquid or slurry fluid body forms the temperature zones different from each other for each loop without being forcibly circulated by the pump, a distributed cryogenic source and a thermal source are thermally connected to the multiplex helical loop so that the heat can be taken in and discharged between the different loops, whereby a fluid body force-fed energy can be dissipated, a running cost can be reduced, network refrigerators and heat source machines can be distributedly used and networked, and an energy supply system can be centrally controlled through the multiplex helical loop.
    • 一种能够通过形成无限循环来补充热量的区域间热互补(热供应与排热的组合)系统,以便在诸如植物和区域的区域中产生的热互补,进行热传递而不执行 独立于环形无端水通道的圆周直径,即要供热的区域的区域,无限循环中的泵强制循环水,其中用液体或浆液流体体密封的环形多路螺旋回路 对于每个环路形成彼此不同的温度区,而不被泵强制循环,分布式低温源和热源热连接到多路螺旋回路,使得热量可以被吸入和排出在不同的回路之间, 从而可以消耗流体的强力供给能量,可以降低运行成本,网络冰箱和热源机器 nes可以分布式使用和联网,并且可以通过多路螺旋回路集中控制能量供应系统。