Patents Assigned to Tohoku Electric Power Co., Inc.
  • Patent number: 10211777
    Abstract: The output of a photovoltaic power generator is estimated by estimating a solar radiation amount at a point different from solar radiation measurement points and determining an estimation error amount from solar radiation values measured at limited points. A photovoltaic power generator output estimation method estimates an output of a photovoltaic power generator based on a measured solar radiation value.
    Type: Grant
    Filed: January 14, 2015
    Date of Patent: February 19, 2019
    Assignees: Hitachi, Ltd., Tohoku Electric Power Co., Inc., Tohoku Electric Manufacturing Co., Ltd.
    Inventors: Masahiro Watanabe, Kenichiro Yamane, Takuya Matsumoto, Masatoshi Kumagai, Tsukasa Oonishi, Ryo Egashira, Katsuhiro Matsuda, Jun Murakoshi, Tomoya Sato
  • Patent number: 9512781
    Abstract: In a cooling structure for a recovery-type air-cooled gas turbine combustor having a recovery-type air-cooling structure that bleeds, upstream of the combustor, and pressurizes compressed air supplied from a compressor, that uses the bled and pressurized air to cool a wall, and that recovers and reuses the bled and pressurized air as combustion air for burning fuel in the combustor together with a main flow of the compressed air, wall cooling in which cooling air is supplied to cooling air passages formed in the wall of the combustor to perform cooling involves a downstream wall region, closer to a turbine, that is cooled using the bled and pressurized air as the cooling air and an upstream wall region, closer to a burner, that is cooled using, as the cooling air, bled compressed air bled from a main flow of the compressed air through a housing inner space.
    Type: Grant
    Filed: August 10, 2011
    Date of Patent: December 6, 2016
    Assignees: MITSUBISHI HITACHI POWER SYSTEMS, LTD., TOHOKU ELECTRIC POWER CO., INC.
    Inventors: Satoshi Mizukami, Tatsuo Ishiguro, Junichiro Masada, Kazumasa Takata, Shunsuke Torii, Yuya Fukunaga, Tetsu Konishi, Yoshiaki Nishimura, Yoshiaki Igarashi, Shinya Ishikawa
  • Patent number: 9478986
    Abstract: A load leveling system and a method for a power system are capable of attaining load leveling in a distribution substation unit. The load leveling system is for a power system with a controller having a major customer and lower transforming apparatus, and with a customer connected to the lower transforming apparatus via a low-voltage line. The system also has a communication unit between the customer and its own system, and control use time zones of devices within the customer, as well as an electric demand prediction unit, and a first load leveling processing unit. By employing such a system, it becomes possible to provide a load leveling system for a power system that is capable of realizing load leveling of both a distribution substation unit and a pole transformer unit.
    Type: Grant
    Filed: August 17, 2012
    Date of Patent: October 25, 2016
    Assignees: Hitachi, Ltd., Tohoku Electric Power Co., Inc.
    Inventors: Hirotaka Takahashi, Yasushi Tomita, Takashi Oda, Eri Isozaki, Tsukasa Onishi, Kazuhiro Horikoshi, Katsuhiro Matsuda
  • Patent number: 9459591
    Abstract: A multipoint simultaneous measurement method and a multipoint simultaneous measurement system in an electric power station and an internal clock used therefor, capable of performing measurement at the correct time even at a place in the electric power station where GPS radio waves cannot be received, and of securing simultaneity with high accuracy and with ease without connecting a plurality of measurement points via a cable and the like.
    Type: Grant
    Filed: May 28, 2012
    Date of Patent: October 4, 2016
    Assignees: CVENGINEERING CORPORATION, TOHOKU ELECTRIC POWER CO., INC.
    Inventors: Tatsuya Chiba, Masaki Sato, Yoichi Yanagisawa
  • Patent number: 9303378
    Abstract: Provided is foreign-object offshore processing system, including foreign-object inflow prevention devices configured to prevent inflow of foreign object into water intake and provided at interval. Each device includes: collecting pontoon serving as inlet of foreign object and provided to float on sea surface of pool defined by curtain wall, the pool being for drawing cooling sea water from sea toward water intake; bottom net spreading toward sea bottom on upstream side of water intake channel in triangular shape with collecting pontoon as vertex; longitudinal net fixed to two floating chains in suspended manner to spread out in surface area of sea, the two floating chains extending on sea surface from collecting pontoon in correspondence with two sides extending from vertex of triangular shape forming bottom net; and lateral net spreading between bottom net and at least portion of longitudinal net, wherein horizontal net cover covers interval between adjacent devices.
    Type: Grant
    Filed: March 2, 2011
    Date of Patent: April 5, 2016
    Assignees: TOHOKU ELECTRIC POWER CO., INC., KANAE CORPORATION, HIMEJI-ECOTECH CO., LTD.
    Inventors: Shinya Ishikawa, Takashi Saito, Kyoichi Shimizu, Masaki Suzuki, Kota Shioda, Masaru Ieyasu
  • Patent number: 9284403
    Abstract: This invention provides a method for synthesizing semi-crystalline polylactides (PLA) even from a lactide mixture including meso-LA and rac-LA. According to the invention, when a mixture of racemic lactide and meso-lactide ispolymerized using a catalyst capable of iso-selectively polymerizing L-lactide and D-lactide, an amorphous poly (meso-lactide) block is formed from meso-lactide and a semi-crystalline poly (racemic lactide) block is formed from racemic lactide by separately polymerizing racemic lactide and meso-lactide by taking advantage of a difference in physicochemical properties between racemic lactide and meso-lactide, whereby polylactide which is semi-crystalline as a whole is produced.
    Type: Grant
    Filed: September 11, 2012
    Date of Patent: March 15, 2016
    Assignees: Hitachi Zosen Corporation, Tohoku Electric Power Co., Inc., National University Corporation Nagoya University, NatureWorks LLC
    Inventors: Hisanori Kishida, Takashi Hasegawa, Nobuyoshi Nomura, Makoto Takahashi, Joseph Schroeder, Manuel Natal
  • Patent number: 9239164
    Abstract: A slag monitoring device 100 for a coal gasifier includes a slag hole camera 11 that observes a slag hole 3 from which molten slag flows out, a water surface camera 12 that observes a situation in which the slag flowing out from the slag hole 3 falls onto a water surface 5H of cooling water 5, a falling sound sensor 13 that observes a sound of the slag falling onto the water surface 5H, and a processing device 20 that determines a solidification and adhesion position of the slag based on an opening area of the slag hole 3 observed by the slag hole camera 11 and falling lines and falling positions of the slag observed by the water surface camera.
    Type: Grant
    Filed: September 17, 2010
    Date of Patent: January 19, 2016
    Assignees: MITSUBISHI HITACHI POWER SYSTEMS, LTD., HOKKAIDO ELECTRIC POWER COMPANY, INCORPORATED, TOHOKU ELECTRIC POWER CO., INC., THE TOKYO ELECTRIC POWER COMPANY, INCORPORATED, CHUBU ELECTRIC POWER CO., INC., HOKURIKU ELECTRIC POWER COMPANY, THE KANSAI ELECTRIC POWER CO., INC., THE CHUGOKU ELECTRIC POWER CO., INC., SHIKOKU ELECTRIC POWER CO., INC., KYUSHU ELECTRIC POWER CO., INC., ELECTRIC POWER DEVELOPMENT CO., LTD., CENTRAL RESEARCH INSTITUTE OF ELECTRIC POWER INDUSTRY, JOBAN JOINT POWER CO., LTD.
    Inventors: Masami Iida, Yoshinori Koyama, Katsuhiko Yokohama, Naoki Suganuma, Mutsuaki Taguchi
  • Patent number: 9056946
    Abstract: To provide a method capable of producing stereocomplex polylactic acid, the method being capable of using carbon neutral materials that are not competitive from foods, such as saccharides, without the use of a method for designing optical resolution, which requires complicated operations and high cost and is difficult to perform mass production. The production method of the present invention comprises: a step of reacting glycerin with sodium hydroxide in high-temperature and high-pressure water to produce a racemic sodium lactate aqueous solution; a step of separating sodium from the racemic sodium lactate aqueous solution to recover racemic lactic acid; a step of dimerizing the racemic lactic acid to produce a lactide mixture containing meso lactide and racemic lactide; a step of separating meso lactide from the mixture to recover racemic lactide; and a step of polymerizing the racemic lactide with a salen-metal complex as a catalyst to produce stereocomplex polylactic acid.
    Type: Grant
    Filed: June 16, 2011
    Date of Patent: June 16, 2015
    Assignees: HITACHI ZOSEN CORPORATION, TOHOKU ELECTRIC POWER CO., INC., NATIONAL UNIVERSITY CORPORATION NAGOYA UNIVERSITY
    Inventors: Hisanori Kishida, Takashi Hasegawa, Kenji Miyaguchi, Takehiko Moriya, Nobuyoshi Nomura, Ryohei Ogawa
  • Patent number: 8997665
    Abstract: A leading end located in a two-stage entrained-flow bed coal gasifier has a double-walled structure including an outer cylinder and an inner cylinder, and cooling water for cooling the leading end is supplied through an interior of the inner cylinder to cool the leading end and is then returned to a base end through a space formed between the outer cylinder and the inner cylinder. The space formed between the outer cylinder and the inner cylinder has a smaller channel area than the interior of the inner cylinder, and a swirling flow along a guide formed on an outer circumferential surface of the inner cylinder and a substantially linear flow in a longitudinal direction of the outer cylinder and the inner cylinder are applied to the cooling water returned to the base end through the space formed between the outer cylinder and the inner cylinder.
    Type: Grant
    Filed: October 5, 2009
    Date of Patent: April 7, 2015
    Assignees: Mitsubishi Hitachi Power Systems, Ltd., Joban Joint Power Co., Ltd., Hokkaido Electric Power Company, Incorporated, Tohoku Electric Power Co., Inc., The Tokyo Electric Power Company, Incorporated, Chubu Electric Power Co. Inc., Hokuriku Electric Power Company, The Kansai Electric Power Co., Inc., The Chugoku Electric Power Co., Inc., Shikoku Electric Power Co., Inc., Kyushu Electric Power Co., Inc., Electric Power Development Co., Ltd., Central Research Institute of Electric Power Industry
    Inventors: Shinya Hamasaki, Toshimi Ohtsuka, Yoshinori Koyama, Katsuhiko Yokohama, Yasunari Shibata, Jun Kasai
  • Publication number: 20150087799
    Abstract: This invention provides a method for synthesizing semi-crystalline polylactides (PLA) even from a lactide mixture including meso-LA and rac-LA. According to the invention, when a mixture of racemic lactide and meso-lactide ispolymerized using a catalyst capable of iso-selectively polymerizing L-lactide and D-lactide, an amorphous poly (meso-lactide) block is formed from meso-lactide and a semi-crystalline poly (racemic lactide) block is formed from racemic lactide by separately polymerizing racemic lactide and meso-lactide by taking advantage of a difference in physicochemical properties between racemic lactide and meso-lactide, whereby polylactide which is semi-crystalline as a whole is produced.
    Type: Application
    Filed: September 11, 2012
    Publication date: March 26, 2015
    Applicants: HITACHI ZOSEN CORPORATION, NATUREWORKS LLC, NATIONAL UNIVERSITY CORPORATION NAGOYA UNIVERSITY, TOHOKU ELECTRIC POWER CO., INC.
    Inventors: Hisanori Kishida, Takashi Hasegawa, Nobuyoshi Nomura, Makoto Takahashi, Joseph Schroeder, Manuel Natal
  • Patent number: 8637784
    Abstract: An object is to provide a method and an apparatus for improving a residual stress in a tubular body, which are enabled to improve the residual stress reliably by clearly defining controlling rage for treatment conditions without depending on an installation state and configuration of the tubular body. When a cylindrical tubular body (2) is improved in its residual stress by locally irradiating an outer-circumferential surface of a welded portion (C) of the tubular body (2) with laser beams (5a) and by moving an irradiation area (s) in an circumferential direction, a plurality thermocouples (9) are installed on the tubular body (2) to be improved, a temperature history of the outer surface of the tubular body (2) by the irradiation of the laser beam (5a) is managed by measuring the temperature history itself.
    Type: Grant
    Filed: January 11, 2008
    Date of Patent: January 28, 2014
    Assignees: Mitsubishi Heavy Industries, Ltd., The Japan Atomic Power Company, Hokkaido Electric Power Company, Inc., Tohoku Electric Power Co., Inc, The Tokyo Electric Power Co., Inc, Chubu Electric Power Co., Inc, Hokuriku Electric Power Company, The Kansai Electric Power Co., Inc, The Chugoku Electric Power Co., Inc, Shikoku Electric Power Co., Inc, Kyushu Electric Power Co., Inc, Electric Power Development Co., Ltd
    Inventors: Takahiro Ota, Kazuhiko Kamo, Itaru Muroya, Seiji Asada, Kazuhiro Wakabayashi, Koji Okimura, Hironori Onitsuka
  • Publication number: 20140001107
    Abstract: Provided is foreign-object offshore processing system, including foreign-object inflow prevention devices configured to prevent inflow of foreign object into water intake and provided at interval. Each device includes: collecting pontoon serving as inlet of foreign object and provided to float on sea surface of pool defined by curtain wall, the pool being for drawing cooling sea water from sea toward water intake; bottom net spreading toward sea bottom on upstream side of water intake channel in triangular shape with collecting pontoon as vertex; longitudinal net fixed to two floating chains in suspended manner to spread out in surface area of sea, the two floating chains extending on sea surface from collecting pontoon in correspondence with two sides extending from vertex of triangular shape forming bottom net; and lateral net spreading between bottom net and at least portion of longitudinal net, wherein horizontal net cover covers interval between adjacent devices.
    Type: Application
    Filed: March 2, 2011
    Publication date: January 2, 2014
    Applicants: TOHOKU ELECTRIC POWER CO., INC., HIMEJI-ECOTECH CO., LTD., KANAE CORPORATION
    Inventors: Shinya Ishikawa, Takashi Saito, Kyoichi Shimizu, Masaki Suzuki, Kota Shioda, Masaru Ieyasu
  • Publication number: 20130311135
    Abstract: A multipoint simultaneous measurement method and a multipoint simultaneous measurement system in an electric power station and an internal clock used therefor, capable of performing measurement at the correct time even at a place in the electric power station where GPS radio waves cannot be received, and of securing simultaneity with high accuracy and with ease without connecting a plurality of measurement points via a cable and the like.
    Type: Application
    Filed: May 28, 2012
    Publication date: November 21, 2013
    Applicants: CVEngineering Corporation, TOHOKU ELECTRIC POWER CO., INC.
    Inventors: Tatsuya Chiba, Masaki Sato, Yoichi Yanagisawa
  • Publication number: 20130178598
    Abstract: To provide a method capable of producing stereocomplex polylactic acid, the method being capable of using carbon neutral materials that are not competitive from foods, such as saccharides, without the use of a method for designing optical resolution, which requires complicated operations and high cost and is difficult to perform mass production. The production method of the present invention comprises: a step of reacting glycerin with sodium hydroxide in high-temperature and high-pressure water to produce a racemic sodium lactate aqueous solution; a step of separating sodium from the racemic sodium lactate aqueous solution to recover racemic lactic acid; a step of dimerizing the racemic lactic acid to produce a lactide mixture containing meso lactide and racemic lactide; a step of separating meso lactide from the mixture to recover racemic lactide; and a step of polymerizing the racemic lactide with a salen-metal complex as a catalyst to produce stereocomplex polylactic acid.
    Type: Application
    Filed: June 16, 2011
    Publication date: July 11, 2013
    Applicants: HITACHI ZOSEN CORPORATION, NATIONAL UNIVERSITY CORPORATION NAGOYA UNIVERSITY, TOHOKU ELECTRIC POWER CO., INC.
    Inventors: Hisanori Kishida, Takashi Hasegawa, Kenji Miyaguchi, Takehiko Moriya, Nobuyoshi Nomura, Ryohei Ogawa
  • Publication number: 20130054040
    Abstract: It is an object of the present invention to provide a load leveling system of a power system capable of attaining load leveling in a distribution substation unit and a method thereof. Disclosed is a load leveling system of a power system with a controller having a major customer and lower transforming apparatus, and with a customer connected to the lower transforming apparatus via a low-voltage line. The system also has a communication unit between the customer and its own system, and control use time zones of devices within the customer; an electric demand prediction unit, and a first load leveling processing unit. By employing such an arranged system, it becomes possible to provide a load leveling system of a power system capable of realizing load leveling of both a distribution substation unit and a pole transformer unit.
    Type: Application
    Filed: August 17, 2012
    Publication date: February 28, 2013
    Applicants: Tohoku Electric Power Co., Inc., Hitachi, Ltd.
    Inventors: Hirotaka Takahashi, Yasushi Tomita, Takashi Oda, Eri Isozaki, Tsukasa Onishi, Kazuhiro Horikoshi, Katsuhiro Matsuda
  • Publication number: 20110318697
    Abstract: Provided is a ground flare in which a low-frequency vibration generated from a ground flare tower, such as a chimney, is properly adjusted to suppress it below a fixture-vibration generation limit, thereby preventing surrounding objects from resonating and vibrating. In a ground flare that burns a flammable exhaust gas with a burner at the lower end of a chimney, in which the lower end of the chimney and the periphery of the burner are surrounded by a windbreak, the low-frequency-noise sound pressure level of a ground flare tower composed of the chimney and the windbreak is reduced by selecting at least one of changing a natural frequency generated from the ground flare tower, using multiple ground flare towers, and installing a low-frequency-vibration absorber in the ground flare tower.
    Type: Application
    Filed: December 18, 2009
    Publication date: December 29, 2011
    Applicants: MITSUBISHI HEAVY INDUSTRIES, LTD., HOKKAIDO ELECTRIC POWER COMPANY, INCORPORATED, TOHOKU ELECTRIC POWER CO., INC., THE TOKYO ELECTRIC POWER COMPANY, INCOPORATED, CHUBU ELECTRIC POWER CO., INC., CLEAN COAL POWER R&D CO., LTD., THE KANSAI ELECTRIC POWER CO., INC., THE CHUGOKU ELECTRIC POWER CO., INC., SHIKOKU ELECTRIC POWER CO., INC., KYUSHU ELECTRIC POWER CO., INC., ELECTRIC POWER DEVELOPMENT CO., LTD., HOKURIKU ELECTRIC POWER COMPANY
    Inventors: Katsuhiko Yokohama, Iwao Honda, Naoki Suganuma, Hirofumi Ando, Naoshige Yoshida, Yoshihiko Horie, Hitoshi Terada, Toru Kawai, Atsushi Kimura
  • Patent number: 7871586
    Abstract: The present invention provides a mercury removal system and method for effectively removing a mercury component, which is present in a gas stream in an extremely small amount in wet gas cleaning. The mercury removal system in wet gas cleaning includes a water washing tower for introducing therein a target gas containing a mercury component and transferring the mercury component into an absorbing solution, a flash drum (10) for flashing the absorbing solution discharged from the water washing tower to separate the absorbing solution into a gas component and waste water, an oxidation treatment means (1) for adding an oxidizing agent to the absorbing solution at the preceding stage of the flash drum, and a waste water treatment means for subjecting to coagulation sedimentation treatment the separated waste water containing the mercury component at the following stage of the flash drum to dispose of the mercury component as sludge.
    Type: Grant
    Filed: June 9, 2006
    Date of Patent: January 18, 2011
    Assignees: Mitsubishi Heavy Industries, Ltd., Clean Coal Power R&D Co., Ltd., Hokkaido Electric Power Company, Inc., Tohoku Electric Power Co., Inc., The Tokyo Electric Power Company Inc., Chubu Electric Power Co., Inc., Hokuriku Electric Power Company, The Kansai Electric Power Co., Inc., The Chugoku Electric Power Co., Inc., Shikoku Electric Power Co., Inc., Kyushu Electric Power Co., Inc., Central Research Institute of Electric Power Industry
    Inventors: Masahiro Harada, Makoto Susaki, Shintaro Honjo, Shuji Kameyama, Masaki Nakahara, Akira Kisei
  • Publication number: 20100326974
    Abstract: An object is to provide a method and an apparatus for improving a residual stress in a tubular body, which are enabled to improve the residual stress reliably by clearly defining controlling rage for treatment conditions without depending on an installation state and configuration of the tubular body. When a cylindrical tubular body (2) is improved in its residual stress by locally irradiating an outer-circumferential surface of a welded portion (C) of the tubular body (2) with laser beams (5a) and by moving an irradiation area (s) in an circumferential direction, a plurality thermocouples (9) are installed on the tubular body (2) to be improved, a temperature history of the outer surface of the tubular body (2) by the irradiation of the laser beam (5a) is managed by measuring the temperature history itself.
    Type: Application
    Filed: January 11, 2008
    Publication date: December 30, 2010
    Applicants: MITSUBISHI HEAVY INDUSTRIES, LTD., THE JAPAN ATOMIC POWER COMPANY, HOKKAIDO ELECTRIC POWER COMPANY, INCORPORATED, TOHOKU ELECTRIC POWER CO., INC., THE TOKYO ELECTRIC POWER COMPANY, INC., CHUBU ELECTRIC POWER CO., INC., HOKURIKU ELECTRIC POWER COMPANY, THE KANSAI ELECTRIC POWER CO., INC., THE CHUGOKU ELECTRIC POWER CO., INC., SHIKOKU ELECTRIC POWER CO., INC., KYUSHU ELECTRIC POWER CO., INC., ELECTRIC POWER DEVELOPMENT CO., LTD.
    Inventors: Takahiro Ota, Kazuhiko Kamo, Itaru Muroya, Seiji Asada, Kazuhiro Wakabayashi, Koji Okimura, Hironori Onitsuka
  • Patent number: 7829740
    Abstract: A process for producing lactic acid according to the invention is characterized in that glycerin is subjected to a hydrothermal reaction under an alkaline condition at a temperature in the range of 150 to 400° C. and under pressure equal to or more than the saturated vapor pressure at the temperature. The glycerin produced from plant fats, animal fats or the like or pure product synthesized chemically or a discharge containing glycerin generated at the production of diesel fuel oil from fats, in which the fats are subjected to a transesterification with alcohol in the presence of an alkali catalyst in order to obtain fatty acid ester is preferably used as a starting material.
    Type: Grant
    Filed: June 29, 2006
    Date of Patent: November 9, 2010
    Assignees: Hitachi Zosen Corporation, Tohoku Electric Power Co., Inc.
    Inventors: Heiji Enomoto, Fangming Jin, Takehiko Moriya, Kenji Kakeda, Yoshitoshi Sekiguchi, Hisanori Kishida
  • Patent number: 7780143
    Abstract: An object is to provide a gate valve capable of preventing operational deficiencies caused by particulate materials accumulating in a valve box, thus providing superior sealing properties and high durability, having a simple structure, and allowing inspection and maintenance to be performed easily.
    Type: Grant
    Filed: November 29, 2007
    Date of Patent: August 24, 2010
    Assignees: Mitsubishi Heavy Industries, Ltd., Hirata Valve Industry Co., Ltd., Clean Coal Power R&D Co., Ltd., Hokkaido Electric Power Co., Incorporated, Tohoku Electric Power Co., Inc., The Tokyo Electric Power Co., Inc., Chubu Electric Power Co., Inc., Hokuriku Electric Power Co., The Kansai Electric Power Co., Inc., The Chugoku Electric Power Co., Inc., Shikoku Electric Power Co., Inc., Kyushu Electric Power Co., Inc., Electric Power Development Co., Ltd., Central Research Institute of Electric Power Industry
    Inventors: Yasunari Shibata, Yoshinori Koyama, Soken Takase, Taizo Hoshino, Shuji Kameyama, Yasuhiro Suzuki, Yoshihiko Horie, Hitoshi Terada, Hirofumi Yamada