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    • 51. 发明专利
    • GB202006069D0
    • 2020-06-10
    • GB202006069
    • 2019-07-15
    • UNIV HOHAI
    • A seakeeping unmanned boat provided with a water-surface self-adaptive stabilizer. The unmanned boat is of a catamaran type and comprises an upper deck (1), floating bodies (7) separated from the upper deck (1) and the self-adaptive stabilizer; the floating bodies (7) provide buoyancy for the unmanned boat and are provided with propelling devices (8); the floating bodies (7) are two floating bodies that are completely bilaterally symmetric; a tilt angle sensor, an accelerometer and a gyroscope are provided on the upper deck (1) and are used to acquire the rotating angle of the upper deck (1) and an angular acceleration prediction and tendency and to transmit the same to a control system in real time; and the self-adaptive stabilizer comprises a suspension system and a balance control mechanism (6).
    • 53. 发明专利
    • Heat transfer pipe embedded in a prefabricated pipe pile and embedding method
    • AU2016306883B2
    • 2019-09-12
    • AU2016306883
    • 2016-07-13
    • UNIV HOHAI
    • KONG GANGQIANGZHOU YANGHUANG XUPENG HUAIFENGLI CHUNHONG
    • E02D5/30
    • A heat transfer pipe embedded in a prefabricated pipe pile and embedding method, the heat transfer pipe comprising: several prefabricated pipe piles (2) arranged side by side, a heat transfer pipe module and a pump apparatus group (9). A base portion of the prefabricated pipe pile (2) is sealed by closing the bottom thereof. Inclined holes are provided at both sides of a top portion of the prefabricated pipe pile (2). A locking pin (6) is provided at an inner wall of the pipe pile. A steel plate (7) is provided on the locking pin (6). A steel bar structure is bound on the steel plate (7). The heat transfer pipe module comprises a horizontal heat transfer pipe (1) and a vertical heat transfer pipe (4). One end of the horizontal heat transfer pipe (1) communicates with the vertical heat transfer pipe (4). Another end of the horizontal heat transfer pipe (1) connects to the pump apparatus group (9). Another end of the vertical heat transfer pipe (4) also connects to the pump apparatus group (9). The horizontal heat transfer pipe (1) is embedded and fixed via the steel bar structure. An embedded portion of the vertical heat transfer pipe (4) passed through the inclined holes and via a steel bar bracket is fixed in the prefabricated pipe pile (2). The mode of connection of the heat transfer module in each prefabricated pipe pile (2) comprises a serial and a parallel connection. The required costs for manufacture and embedding are low, the engineering efficiency is high, and the survival rate of the embedded pipes is high.
    • 54. 发明专利
    • Water structure health sensing distributed optical fiber calibration system and method
    • NZ738396A
    • 2019-07-26
    • NZ73839615
    • 2015-11-20
    • UNIV HOHAI
    • SU HUAIZHIYANG MENGGUO ZHIYUN
    • G01D18/00G01K15/00
    • The present invention discloses a water-adjacent structure health sensing distributed optical fiber calibration system and a method. The system comprises a heat insulation barrel, and a plurality of calibration modules located in the inner ring of the heat insulation barrel around an axis thereof, wherein the calibration module comprises a through-shaft, a first electronic thermometer and a second electronic thermometer, an optical cable to be calibrated is twisted on the through-shaft, the optical cable to be calibrated is connected to an optical fiber temperature demodulator outside the heat insulation barrel, the first electronic thermometer and the second electronic thermometer are respectively connected to a first temperature control meter and a second temperature control meter outside the heat insulation barrel, a temperature source wire for heating water in the heat insulation barrel is arranged in the wall of the heat insulation barrel, the temperature source wire is connected to a power temperature control meter outside the heat insulation barrel, and the first temperature control meter is connected to cooling and heating devices simultaneously through leads of the first temperature control meter. According to the water-adjacent structure health sensing distributed optical fiber calibration system of the present invention, high precision calibration on long distance optical cables can be implemented by single times by flexibly controlling the temperature changes in the heat insulation barrel through the cooling and heating devices.
    • 55. 发明专利
    • Apparatus and method for arranging concrete structure service condition fiber optic acoustic emission sensing device
    • GB2565739A
    • 2019-02-20
    • GB201820635
    • 2017-01-16
    • UNIV HOHAI
    • HUAIZHI SUMENG YANGQIANGQIANG JIA
    • G01N29/14
    • An apparatus and method for arranging a concrete structure service condition fiber optic acoustic emission sensing device. The apparatus comprises a bottom plate, a first side plate (304), and a second side plate (305). The top of the first side plate (304) is connected with the top of the second side plate (305) by means of an arc-shaped fiber carrying channel (310, 311). A first arc-shaped cover (300) and a second arc-shaped cover (301) are hingedly connected to the tops of the first side plate (304) and the second side plate (305), respectively. A first arc-shaped pressing body (308) and a second arc-shaped pressing body (309) are fixedly connected with the lower end surfaces of the first arc-shaped cover (300) and the second arc-shaped cover (301), respectively. A first sensing optical fiber (312) and a second sensing optical fiber (313) positioned in the arc-shaped fiber carrying channel (310, 311) are provided below the first arc-shaped pressing body (308) and the second arc-shaped pressing body (309), respectively. The first arc-shaped cover (300) is connected with the second arc-shaped cover (301) by means of a locking means. According to the apparatus for arranging a concrete structure service condition fiber optic acoustic emission sensing device, by providing a plurality of first through holes and second through holes and a main shared cavity (315), acoustic wave propagation is improved, multilevel acoustic emission sources with multiple different durations are constructed, and thus, multilevel different durations of optical information in the sensing optical fibers can be affected.
    • 57. 发明专利
    • No title
    • GB201817796D0
    • 2018-12-19
    • GB201817796
    • 2017-11-28
    • UNIV HOHAI
    • H04L69/40
    • Disclosed is a power distribution network fault repair system data sharing method for an information exchange bus based on IEC 61968 standards. The method is such that, with data collected by subsystems serving as data models, a metamodel generating component abstractly generates a metamodel from the data models according to a four-layer metadata structure per the MOF standard. The metamodel comprising data model information and metamodel description information is transmitted to an IEC 61968-based power distribution network information exchange bus. A mobile operation terminal identifies via the metamodel description information and extracts from the power distribution network information exchange bus a required file, and a metamodel converting component converts a model definition into a program-understandable XML text according to the PMDL standard. The present invention implements rapid fault repair commanding service interoperation between different service systems, abstracts two information exchanging systems into two information objects, and views exchanged information as one file, thus facilitating system integration and information exchange.
    • 59. 发明专利
    • SYSTEM FOR GENERATING POWER USING ENERGY-STORAGE WATER PIPES OF MULTIPLE HIGH-RISE BUILDINGS
    • CA3057187A1
    • 2018-09-27
    • CA3057187
    • 2018-02-02
    • UNIV HOHAI
    • GE XINFENGXU XUCHEN HUINANZANG WEIYAO TINGTINGCHI YUKAI
    • F03B13/00
    • Disclosed is a system for using energy-storing water pipes (1-3) of multiple high-rise buildings to generate electricity, the system comprising an energy-storing water pipe apparatus (1), a lower water pipeline apparatus (2) fitting with the energy-storing water pipe apparatus (1), an underground communicating water intake pipeline (4), an underground pressurised water reservoir (5), a water turbine and an electricity generating system (6), wherein each high-rise building is configured with an energy-storing water pipe apparatus (1) and a lower water pipeline apparatus (2), the energy-storing water pipe apparatus (1), via a water intake pipeline, leading rainwater and daily polluted water into an energy-storing water pipe (1-3); each high-rise building is configured with an underground communicating water intake pipeline (4), the underground communicating water intake pipeline (4) leading water in the energy-storing water pipe (1-3) into the underground pressurised water reservoir (5), the underground pressurised water reservoir (5) balancing the water level in each energy-storing water pipe (1-3), and when the water level in the energy-storing water pipe (1-3) exceeds a certain height H1, starting to generate electricity, and when the water level reduces to H0, stopping electricity generation.