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    • 1. 发明公开
    • PISTON ASSEMBLY
    • KOLBENANORDNUNG
    • EP2841820A2
    • 2015-03-04
    • EP13716346.5
    • 2013-02-19
    • Isentropic Ltd
    • HOWES, Jonathan Sebastian
    • F16J1/00F04B3/00F04B53/14F04B53/16F16J10/02F25B1/02
    • F16J1/00F04B53/14F04B53/143F04B53/162F16J1/001F16J10/02F16J15/16
    • A piston assembly (12) comprising a reciprocating sleeve (14) incorporating an integral internal piston surface (28), which sleeve is slidably mounted upon a cylinder head (18) so as to define a piston chamber (26) therewith, the piston chamber being sealed in the vicinity of the cylinder head (18) by a circumferential static seal (20) that acts to seal against the reciprocating sleeve (14). The static seal (20) may occupy a horizontal plane and may include sacrificial wear zones and be formed from a graphite-based material. The piston assembly may be an oversquare assembly for use in an oil-free environment for processing high temperature gases, for example, a hot gas engine or heat pump or heat engine such as may be used in an energy storage system.
    • 一种活塞组件(12),包括结合有一体内部活塞表面(28)的往复式套筒(14),所述套筒可滑动地安装在气缸盖(18)上以便限定活塞室(26),活塞室 通过用于密封往复式套筒(14)的周向静密封(20)密封在气缸盖(18)附近。 静态密封件(20)可以占据水平面并且可以包括牺牲耐磨区并且由石墨基材料形成。 活塞组件可以是用于无油环境中用于处理高温气体的过方形组件,例如可用于能量存储系统中的热气发动机或热泵或热机。
    • 3. 发明公开
    • HYBRID POWER GENERATION SYSTEM
    • HYBRIDSTROMERZEUGUNGSSYSTEM
    • EP3030770A1
    • 2016-06-15
    • EP14765984.1
    • 2014-08-07
    • Isentropic Ltd
    • HOWES, Jonathan SebastianMACNAGHTEN, James
    • F02C6/16
    • F02C6/08F01D15/10F02C3/04F02C6/16F02C7/057F05D2220/32F05D2240/35F05D2260/42Y02E20/16Y02E60/15
    • A hybrid combustion turbine power generation system (CTPGS) (40) comprising: a primary, combustion turbine based system (30), the primary system comprising one or more power shaft assemblies comprising at least a first generator or motor/generator (15'),at least a first compressor (11) and at least a first expansion turbine (14) operatively associated with the one or more power shaft assemblies, and at least one combustor (12) configured to feed the at least first expansion turbine, wherein the primary system comprises a first flow network allowing outlet air from the at least first compressor to pass successively downstream to the at least one combustor for combustion and the at least first expansion turbine for expansion, respectively, wherein the primary system is modified by integration of: an adiabatic compressed air energy storage (ACAES) sub-system, the sub-system comprising at least one compressed air store (50) and at least a first thermal energy storage (TES) (41) system for removing and returning thermal energy to the compressed air upon charging and discharging the store, respectively, wherein the sub-system comprises a second flow network allowing outlet air from the first compressor to pass, upon charging, via the TES system to the at least one compressed air store, and to pass, upon discharging, back to the at least one combustor and/or first expansion turbine,via the TES system, wherein the hybrid CTPGS further comprises flow valve arrangements and mechanical coupling arrangements so configured as to provide the necessary flow and mechanistic connections to allow the hybrid CTPGS to be operable in at least the following modes of operation:- (i) a power generating first mode in which the hybrid CTPGS produces power and the sub-system is not discharging;and, (ii) a power generating second mode in which the hybrid CTPGS produces power and the sub-system is discharging.
    • 7. 发明公开
    • IMPROVEMENTS RELATING TO THE TRANSMISSION OF ENERGY
    • 的改进,有能力的传输连接
    • EP2845312A2
    • 2015-03-11
    • EP13717806.7
    • 2013-03-11
    • Isentropic Ltd
    • HOWES, Jonathan Sebastian
    • H02P9/06H02P23/00H02P9/10
    • H02P6/34H02K7/116H02K7/1807H02K2213/09H02P9/06H02P9/10H02P23/183
    • Apparatus for transmitting energy comprising an electrical machine arranged to convert between electrical and mechanical energy, and comprising a rotor (20) and control means (42, 44, 90) arranged to regulate the motion of the rotor to ensure that the power angle of the electrical machine is maintained within a range of a predetermined power angle. A signal generator (2, 6), such as a synchronous machine and associated flywheel, may generate a reference signal relating to the predetermined power angle and be powered by a frequency regulated electrical supply. The control means (42, 44, 90) may be a mechanical control linkage or servo control system and may regulate the output of the motion of the rotor in response to a change in its motion which the control means or a dedicated detection device detects. The electrical machine may be an electric motor, an electricity generator, or a machine switchable between motor and generator modes. The apparatus may generate electricity to supply to a power grid and/or store electricity supplied by a power grid, and the electrical machine may be a synchronous machine where the rotor requires regulation to accommodate grid fluctuations such as low voltage events so as to remain synchronised. The apparatus may comprise an energy storage system that supplies and/or receives power from a power grid.