-
公开(公告)号:US09891003B2
公开(公告)日:2018-02-13
申请号:US14936174
申请日:2015-11-09
Inventor: Takumi Hikichi , Osao Kido , Atsuo Okaichi , Osamu Kosuda
CPC classification number: F28D7/0008 , F01K25/08 , F22B1/18 , F28F27/00 , Y02E20/14
Abstract: A CHP system includes a combustor as a heat source, a Rankine cycle apparatus, a second heat exchanger, and a thermal fluid flow path. The Rankine cycle apparatus includes, as an evaporator, a first heat exchanger that absorbs thermal energy from combustion gas (thermal fluid). The second heat exchanger absorbs thermal energy from the combustion gas and transfers the thermal energy to a heat medium. The first heat exchanger and the second heat exchanger are disposed in the thermal fluid flow path. The thermal fluid flow path includes a first flow path that allows the combustion gas to reach the first heat exchanger directly from the combustor and a second flow path that allows the combustion gas to reach the second heat exchanger directly from the combustor.
-
公开(公告)号:US10767513B2
公开(公告)日:2020-09-08
申请号:US14929412
申请日:2015-11-02
Inventor: Subaru Matsumoto , Osao Kido , Atsuo Okaichi , Takumi Hikichi , Osamu Kosuda , Noriyoshi Nishiyama
Abstract: A thermal electric power generator includes an evaporator, an expander, an electric generator, a condenser, and a pump. A working fluid used in the thermal electric power generator is an organic working fluid. The evaporator includes a heat exchanger, a bypass channel, and a flow rate adjustment mechanism. The bypass channel allows a heat medium to bypass the heat exchanger. The flow rate adjustment mechanism adjusts a flow rate of the heat medium to be supplied to the heat exchanger and a flow rate of the heat medium to be supplied to the bypass channel.
-
公开(公告)号:US10161684B2
公开(公告)日:2018-12-25
申请号:US15635486
申请日:2017-06-28
Inventor: Osamu Kosuda , Osao Kido , Atsuo Okaichi , Takumi Hikichi , Masaaki Konoto , Noriyoshi Nishiyama , Yoshio Tomigashi , Tetsuya Matsuyama
Abstract: An air cooling unit is an air cooling unit used in a Rankine cycle system and includes an expander and a condenser. The expander recovers energy from a working fluid by expanding the working fluid. The condenser cools the working fluid using air. The air cooling unit includes a heat-transfer reducer that reduces heat transfer between the expander and an air path.
-
公开(公告)号:US09927116B2
公开(公告)日:2018-03-27
申请号:US14521240
申请日:2014-10-22
Inventor: Atsuo Okaichi , Osao Kido , Takumi Hikichi , Osamu Kosuda
IPC: F22B1/18 , F01K11/02 , F01K7/38 , F01L13/02 , F01K25/08 , F01K23/06 , F01K17/02 , F01K25/10 , F01K13/00 , F01K9/00 , F01K23/10 , F01K13/02
CPC classification number: F22B1/18 , F01K7/38 , F01K9/003 , F01K11/02 , F01K13/00 , F01K13/02 , F01K17/02 , F01K23/065 , F01K23/10 , F01K25/08 , F01K25/10 , Y02E10/46 , Y02E20/12 , Y02E20/14 , Y02P80/152 , Y02T10/16 , Y02T10/166
Abstract: An exhaust heat recovery apparatus includes an exhaust heat passage through which a first heat medium holding exhaust heat flows; a second heat medium passage through which the second heat medium, of which temperature is lower than that of the first heat medium, flows; a Rankine cycle which includes a pump, an evaporator, an expander, and a condenser and causes heat exchange at the evaporator between the first heat medium flowing through the exhaust heat passage and a working fluid, so that the working fluid is evaporated, the evaporated working fluid expands at the expander, and power is generated; and an exhaust heat recovery heat exchanger which causes heat exchange between the first heat medium flowing through the exhaust heat passage and the second heat medium flowing through the second heat medium passage, so that the second heat medium is heated and exhaust heat of the first heat medium is recovered.
-
公开(公告)号:US09714581B2
公开(公告)日:2017-07-25
申请号:US14395694
申请日:2014-01-08
Inventor: Atsuo Okaichi , Osao Kido , Takumi Hikichi , Osamu Kosuda , Masaya Honma , Masanobu Wada
Abstract: A Rankine cycle apparatus (1A) of the present disclosure includes a main circuit (10), a heat exchange portion (HX), a bypass flow path (20), a flow rate-adjusting mechanism (3), and a pair of temperature sensors (7A). The main circuit (10) is formed by an expander (11), a condenser (13), a pump (14), and an evaporator (15) that are circularly connected in this order. The heat exchange portion (HX) is located in the main circuit (10) at a position between an outlet of the expander (11) and an inlet of the pump (14). The bypass flow path (20) branches from the main circuit (10) at a position between an outlet of the evaporator (15) and an inlet of the expander (11), and joins to the main circuit (10) at a position between the outlet of the expander (11) and an inlet of the heat exchange portion (HX). The flow rate-adjusting mechanism (3) adjusts the flow rate of the working fluid in the bypass flow path (20). The pair of temperature sensors (7A) detects temperatures of the working fluid at two positions spaced from each other in a flow direction of the working fluid.
-
公开(公告)号:US09702263B2
公开(公告)日:2017-07-11
申请号:US14635307
申请日:2015-03-02
Inventor: Atsuo Okaichi , Osao Kido , Takumi Hikichi , Osamu Kosuda , Noriyoshi Nishiyama , Yoshio Tomigashi , Masaaki Konoto , Subaru Matsumoto , Tetsuya Matsuyama
CPC classification number: F01D17/085 , F01K9/003 , F01K13/02 , F01K25/08 , F05D2210/12 , F05D2220/31 , F05D2270/303 , F22B1/18 , Y02E20/14
Abstract: A Rankine cycle device in the present disclosure includes an evaporator as a heater, an expander, a cooler, a first temperature sensor, a second temperature sensor, and a control device. The first temperature sensor detects a temperature of the working fluid flowing from an outlet of the heater to an inlet of the expander in the circuit of the working fluid. The second temperature sensor detects a temperature of the working fluid flowing from an outlet of the expander to an inlet of the cooler. The controller controls a number of rotation of the expander based on a difference between a detected temperature of the first temperature sensor and a detected temperature of the second temperature sensor.
-
-
-
-
-