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    • 113. 发明专利
    • Liquid discharging device for tank having secondary liquid storing function
    • 具有二次液体储存功能的液体液体排放装置
    • JPS5940100A
    • 1984-03-05
    • JP14994282
    • 1982-08-31
    • Kawasaki Heavy Ind Ltd
    • TOMITA TSUTOMU
    • B65D90/24F17C13/12
    • F17C13/126F17C2201/0109F17C2201/0119F17C2201/052F17C2203/0629F17C2205/0326F17C2260/037
    • PURPOSE:To permit to suck the leakage of liquid from the lower part of a space between inner and outer tanks by a submerged pump through a strainer. CONSTITUTION:A pump pot 15 for housing the submerged pump is provided temporarily in a pit 14 formed in a foundation 2 below the space 12 between the inner and outer tanks. The space 12 and the pump pot 15 are connected by a liquid discharging pipeline 18 interposed with the strainer 16 and a solenoid main valve 17. When a crack is produced in the side plate 10 of the inner tank and reserved liquid 13 leaks into the space 12, a detector 19 is operated, the solenoid valve 17 is opened immediately through a control unit 20, the submerged pump is operated and the stored liquid 13, leaking into the space 12, may be retrieved.
    • 目的:允许通过过滤器通过浸没式泵从内罐和外罐之间的空间下部吸入液体泄漏。 构成:用于容纳浸没泵的泵罐15临时设置在形成在内罐和外箱之间的空间12下方的基座2中的凹坑14中。 空间12和泵罐15通过插入有过滤器16和螺线管主阀17的液体排出管道18连接。当在内罐的侧板10中产生裂纹并且保留的液体13泄漏到空间 如图12所示,操作检测器19,电磁阀17立即通过控制单元20打开,操作浸没式泵,并且可以取出泄漏到空间12中的储存液体13。
    • 116. 发明专利
    • DOUBLE SHELL LOW TEMPERATURE TANK
    • JPS58174799A
    • 1983-10-13
    • JP5774282
    • 1982-04-07
    • KAWASAKI HEAVY IND LTD
    • TOMITA TSUTOMU
    • F17C13/00F17C13/12
    • PURPOSE:To make pressures in inner and outer tanks equal and prevent buckling of the inner tank by providing an emergency communication device which is closed in normal operation and opened to communicate atmospheres in the inner and outer tanks by the effort of an atmosphere in the outer tank whose pressure is increased more than that in the inner tank when it is damaged. CONSTITUTION:A roof 11a of an inner tank 11 and a wall 12a of an outer tank 12 are connected by an inverse U-shaped pipe 13. The pipe 13 has at the perpendicular part an emergency opening valve 16 which is kept closed in the normal state. If a low temperature liquid flows out on account of an accident such as a damage of the inner tank 11, a pressure P1 in the inner tank is reduced to a negative pressure because of reduction of liquid level in the inner tank 11 while the other pressure P2 in the outer tank 12 is increased because of rise of liquid level and atomization of a low temperature liquid. The pressures may make a relation of P2>P1. If the differential pressure exceeds a set value, a pressure controller 18 is actuated to open the emergency opening valve 16 so that the atmospheres in the inner and outer tanks may be communicated by the pipe 13 to fall in the relation of P1=P2, thereby preventing the buckling of the inner tank 11.
    • 119. 发明专利
    • PUMP BARREL ASSEMBLY FOR USE IN LIQUID RESERVOIR TANK
    • JPS5788291A
    • 1982-06-02
    • JP16632280
    • 1980-11-25
    • KAWASAKI HEAVY IND LTD
    • TOMITA TSUTOMU
    • F04D7/02F04B23/06F04D7/00F04D13/08
    • PURPOSE:To obtain structural stability of a pump barrel assembly, by dividing a barrel into a plurality of sections, supporting the divided barrel sections at the top, bottom and a lower portion of the side plate, and thereby distributing the load acted to the barrel. CONSTITUTION:A pump barrel 3 is divided into an upper barrel section 3a, middle barrel section 3b and a lower barrel section 3c. The upper barrel section 3a and the middle barrel section 3b are coupled together by a flexible joint 4 consisting of bellows or the like interposed between them, while the middle barrel section 3b and the lower barrel section 3c are coupled together by a flexible joint 5 also consisting of bellows or the like. With such an arrangement, if vertical movement of the upper barrel section 3a is caused by the thermal behavior of a reservoir tank 1, the thermal behavior is absorbed by the two flexible joints 4, 5, so that the dead load is supported always at the top and bottom plates 2, 6 in a distributed manner. Therefore, it is enabled to obtain structural stability of the tank.