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    • 4. 发明专利
    • BUILDING FOR TURBINE
    • JPS63282693A
    • 1988-11-18
    • JP10893587
    • 1987-05-06
    • TOSHIBA CORPTOSHIBA ENGINEERING CO
    • TSUJI SHIGEKIFURUHIRA MASAO
    • G21C13/00F01K13/00
    • PURPOSE:To increase the area of an operation floor, by forming a blow-out passage for discharging the leaked steam from a main steam pipe to the open air to release pressure so as to take a detour way around the operation floor. CONSTITUTION:A turbine 26 is fixed to the operation floor 25 provided to the uppermost story in a building for turbine main body 22 under tension and an MS tunnel 29 accommodating a main steam pipe is allowed to communicate with the steam condenser area 28 provided to the lower part of said main body 22 sideways. An open air opening 35a is opened to the upper part of the outside wall 23a of a heat-exchange building 23 and a normally used machin ery lay-down area 34 communicates with the open air. Therefore, a blow-out passage 36 is formed so as to communicate with the open air opening 35a the area 34 a horizontal hole a humidity separating heater chamber 31 a vertical hole 33 the area 28 the tunnel 29. This passage 36 guides leaked steam in the direction shown by an arrow when the main steam pipe is broken in the tunnel 29 and main steam is leaked. By this constitution, the increase in the area of the floor 25 as the area 34 can be achieved as compared with such a case that the passage 36 is formed by providing the blow-out hole to the floor 25 by drilling.
    • 5. 发明专利
    • BUILDING DOOR STRUCTURE OF POWER PLANT
    • JP2000171582A
    • 2000-06-23
    • JP34366498
    • 1998-12-03
    • TOSHIBA CORPTOSHIBA ENGINEERING CO
    • FURUHIRA MASAOTAKAHASHI AKIRA
    • G21C13/00G21C13/02
    • PROBLEM TO BE SOLVED: To simplify door structure for reducing costs, and improve operability and maintenance property by arranging a ceiling crane rail for disassembling a turbine and a rail for sliding door on floor surface at a building that is adjacent to a turbine building and fitting an electric side-sliding door between them. SOLUTION: A ceiling crane rail 6 for disassembling turbine and a rail 14 for sliding door on a building floor surface 13 are laid at a building 6 that is adjacent to a turbine building 1, and an electric side-sliding door 15 is provided between the turbine building 1 and the building 6 for partitioning. The electric side-sliding door 15 is made of an entire surface electric door for side sliding where a steel plate 17 is laminated at both the sides of a structure member 16, and can travel freely on the rail 14 for sliding door that is laid on the floor surface 13 by electrically driving a wheel 18 that can freely travel in a crosswise direction. The electric side-sliding door 15 is opened and closed by an operation switch 19 installed near it.
    • 7. 发明专利
    • TURBINE BUILDING
    • JPH01294905A
    • 1989-11-28
    • JP12186288
    • 1988-05-20
    • TOSHIBA CORPTOSHIBA ENGINEERING CO
    • KAWAGUCHI KIYOSHIFURUHIRA MASAO
    • E04H5/02F01K13/00
    • PURPOSE:To enable reduction of the volume of a building, by a method wherein an air conditioner chamber is situated to the side part of an operation chamber in which an overhead traveling crane is installed, and an operation floor for the small parts of a turbine system device on which a crane is installed is situated below the air conditioner chamber. CONSTITUTION:A large device, e.g. steam turbine 3 provided with a high pressure turbine 3a and a low pressure turbine 3b, a generator 4, is disposed on an operation floor 12 of a turbine building 11. Meanwhile, a turbine system main device, not shown, e.g. a main steam valve, a bypass valve, and condensate pump, and a condenser 6 are disposed below the floor 12. An air conditioner chamber 14 is set at a part of the upper space of an operation chamber 13, and a brace 15 made of a steel and a reinforcing wall 16 made of reinforced concrete are situated as structural reinforcement of the operation chamber 13, forming large span structure by means of an overhead traveling crane 5, in the air conditioner chamber 14 and to the side part of the operation chamber 13.
    • 9. 发明专利
    • INSTALLATION STRUCTURE OF MOISTURE SEPARATING HEATER
    • JPS643403A
    • 1989-01-09
    • JP15703587
    • 1987-06-24
    • TOSHIBA CORPTOSHIBA ENGINEERING CO
    • FURUHIRA MASAO
    • F22B37/26F01K7/22
    • PURPOSE: To improve an earthquake resistance by disposing an intermediate valve substantially parallel to and near a moisture separating heater, and constituting to narrow an installation space of the heater and the valve in a direction perpendicular to an axis of the heater, thereby effectively utilizing an interior of a building. CONSTITUTION: An intermediate valve 4 having a butterfly valve 4a having a shutting-off function and a butterfly valve 4b having a control function is mounted at a steam introducing pipe 3 coupled between the moisture separating heater 1 and a low pressure turbine 2. Since an installation space of the heater 1 and the valve 4 becomes narrow in a direction perpendicular to an axis of the heater 1, a space in a building can be effectively utilized. And, shielding walls 7, 13 can be disposed at positions corresponding to a building post 12 and building beams 9, 10. And particularly, the wall 7 is not necessarily made vertical, but can be formed as a continuous wall from a building floor 6 to a shielding ceiling 8. Thus, an earthquake resisting strength of the wall 7 can be enhanced. And, a support member 15 and an earthquake resisting snapper 17a can be mounted at the wall 7.