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    • 3. 发明专利
    • Ice filling quantity measuring method and device
    • ICE填充量测量方法和装置
    • JP2005351487A
    • 2005-12-22
    • JP2004169573
    • 2004-06-08
    • Ishikawajima Harima Heavy Ind Co Ltd石川島播磨重工業株式会社
    • TAKAHARA NOBUSADAKOBAYASHI KAZUOKOUKI TSUNEOSAKUMA NOBUYOSHI
    • F24F5/00F25C5/18F28D20/00
    • Y02E60/142
    • PROBLEM TO BE SOLVED: To provide an ice filling quantity measuring method and its device capable of directly measuring the filling quantity of ice with high accuracy.
      SOLUTION: An initial supply quantity of a pressurized gas in the absence of ice and a supply quantity of the pressurized gas supplied to a set pressure in the presence of ice are measured by a flow meter F1 by supplying the pressurized gas for measurement to the set pressure by a pressurized gas supply valve V3 in a state that a heat storage tank 11 is sealed, and the ice filling quantity is calculated by an calculation means 16 on the basis of the difference between the initial supply quantity and the supply quantity. Thus the volume of ice can be directly determined on the basis of the difference between the supply quantities of the pressurized gas supplied in the presence of ice and the absence of ice into a sealed space until the set pressure is achieved, and the ice filling quantity can be calculated.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种能够以高精度直接测量冰的填充量的冰量测量方法及其装置。 解决方案:在没有冰的情况下,加压气体的初始供给量和在存在冰的情况下供给到设定压力的加压气体的供给量由流量计F1通过供给用于测量的加压气体来测量 在储热箱11被密封的状态下通过加压气体供给阀V3进行设定压力,并且通过计算单元16基于初始供给量与供给量之差计算出冰量填充量 。 因此,冰的体积可以基于在冰存在下供给的加压气体的供给量与不存在冰的密封空间之间的差异直接确定,直到达到设定压力为止,并且冰的填充量 可以计算。 版权所有(C)2006,JPO&NCIPI
    • 7. 发明专利
    • Turbo compressor
    • 涡轮压缩机
    • JP2007177696A
    • 2007-07-12
    • JP2005377217
    • 2005-12-28
    • Ishikawajima Harima Heavy Ind Co Ltd石川島播磨重工業株式会社
    • TAKAHASHI TOSHIOHIRATA YUTAKAKOBAYASHI KAZUOKURIHARA KAZUAKIODA KENTARO
    • F04D29/049
    • F04D29/059F04D17/12F04D25/16F25B1/053F25B1/10F25B2400/13F25B2400/23
    • PROBLEM TO BE SOLVED: To extend the service life of a bearing by reducing mechanical loss in a bearing part, and to increase a critical speed without shortening the axial length of an impeller.
      SOLUTION: A first stage centrifugal impeller and a second stage centrifugal impeller are arranged in a direction that the mutual back surface sides are opposed to each other. The bearing 50 comprises cylindrical rolling bearings 51, 52 which support radial load acting on a rotary shaft 28 in respective two supporting positions axially separated from each other, and a thrust bearing 53 which supports thrust load acting on the rotary shaft 28. The bearing which supports one supporting position between the bearings supporting two supporting positions is arranged between the first centrifugal impeller and the second centrifugal impeller.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:通过减少轴承部件的机械损失来延长轴承的使用寿命,并提高临界速度,而不缩短叶轮的轴向长度。 解决方案:第一级离心式叶轮和第二级离心式叶轮沿相互的后表面侧相对的方向排列。 轴承50包括圆柱形滚动轴承51,52,其支撑作用在旋转轴28上的径向载荷,该径向载荷彼此轴向分离的相应的两个支撑位置,以及支撑作用在旋转轴28上的推力负载的推力轴承53。 在第一离心式叶轮和第二离心式叶轮之间设置支撑支撑两个支撑位置的轴承之间的一个支撑位置。 版权所有(C)2007,JPO&INPIT
    • 8. 发明专利
    • Method and device for storing cold energy of ice
    • 用于储存冰冷能力的方法和装置
    • JP2005003208A
    • 2005-01-06
    • JP2003163603
    • 2003-06-09
    • Ishikawajima Harima Heavy Ind Co Ltd石川島播磨重工業株式会社
    • KOUKI TSUNEOKOBAYASHI KAZUO
    • F24F5/00
    • PROBLEM TO BE SOLVED: To increase the coefficient of performance in a cold energy of ice storage device, and simplify the structure of the cold energy of ice storage device.
      SOLUTION: This cold energy of ice storage device is constituted by having a cold energy of ice storage tank 3; circulation lines 28 and 34 having a first heat exchanger 4, a turbo refrigerator 2, and a first circulation pump 31 and circulating refrigerant in the cold energy of ice storage tank; and another circulation line 36 having a second heat exchanger 5 and a second circulation pump 38 and circulating the refrigerant in the cold energy of ice storage tank. While the refrigerant is heated by the first heat exchanger, another circulation line is cut out in cold energy of ice storage to cool the refrigerant by the turbo refrigerator for ice making.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提高储冰装置冷能的性能系数,简化储冰装置的冷能结构。 解决方案:储冰装置的这种冷能通过储冰箱3的冷能构成; 具有第一热交换器4,涡轮冷冻机2和第一循环泵31的循环管路28和34以及储冰罐的冷能循环制冷剂; 以及具有第二热交换器5和第二循环泵38的另一个循环管线36,并使制冷剂在储冰箱的冷能中循环。 当制冷剂被第一热交换器加热时,另外一个循环管线在冰存储器的冷能中被切掉,以便通过涡轮制冷机将制冷剂冷却用于制冰。 版权所有(C)2005,JPO&NCIPI