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    • 6. 发明专利
    • CLEAN ROOM
    • JP2002115879A
    • 2002-04-19
    • JP2000305699
    • 2000-10-05
    • KAJIMA CORP
    • TAKAHASHI YUKINARISAKAE AKIOARAI YOSHINOBUWAKUI TAKESHIMIYOSHI KOICHIWAKUI ERIKOICHINO MASAYUKI
    • F24F7/06
    • PROBLEM TO BE SOLVED: To provide a clean room, in which chemical substances are restrained to a limit. SOLUTION: The clean room, equipped with a measuring room A and an air-conditioning system B, is provided with an outside air treating unit 11 equipped with a chemical filter and a circulating air treating unit 35 in the air-conditioning system B. The outside air treating unit 11 is provided at the introducing port of outside air while the circulating air treating unit 35 is provided in a ventilating air passage section for supplying outside air introduced through the outside air treating unit 11 and air extracted out of the inside of the measuring room A into the measuring room A. An air-conditioning unit 21, regulating the temperature and humidity of the outside air, introduced from the outside air treating unit 11, and the air, extracted out of the inside of the measuring room A, is provided between the outside air treating unit 11 and the circulating air treating unit 35. In this case, the exposed surfaces of the measuring room A, the ventilating passage and equipment provided in the ventilating passage are constituted of a stainless steel.
    • 10. 发明专利
    • Underground heat exchange system
    • 地下热交换系统
    • JP2008275263A
    • 2008-11-13
    • JP2007120438
    • 2007-05-01
    • Kajima Corp鹿島建設株式会社
    • NIKAIDO MINORUTANAKA SHUNPEIARAI YOSHINOBU
    • F24J3/08
    • Y02E10/10
    • PROBLEM TO BE SOLVED: To provide an underground heat exchange system, which restrains a variation in an underground water level by a water cut-off wall, and is superior in heat exchange efficiency in the ground.
      SOLUTION: A water communication port 9 is arranged in the depth of a water permeable layer 19 of the water cut-off wall 3. That is, underground water flowing in a lower part of a structure 1 from the water communication port 9, flows in the water permeable layer 19 provided with a pipe 11, and the thickness of the water permeable layer 19 becomes a flow passage of the underground water. Thus, since an underground water quantity corresponding to a difference in the depth between the underground water level 7 and the water communication port 9 can be made to flow in the thickness of the water permeable layer 19, a flow speed of the underground water passing trough the water permeable layer 19 can be increased. The flowed-in underground water is exchanged in heat with a heating medium in the pipe 11.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种通过截水壁抑制地下水位变化的地下热交换系统,并且在地面中的热交换效率优异。 解决方案:在隔水墙3的透水层19的深度设置有水连通口9.也就是说,从水连接口9流入结构1的下部的地下水 在设置有管11的透水层19中流动,透水层19的厚度成为地下水的流路。 因此,由于能够使地下水位7与水通路口9之间的深度差相应的地下水量在水渗透层19的厚度上流动,所以地下水通过槽的流速 可以增加透水层19。 流入的地下水与管道11中的加热介质进行热交换。版权所有(C)2009,JPO&INPIT