Grid-connected system and method of thermo-acoustic generator set
A technology of generator set and thermoacoustic engine, which is applied in the direction of single-grid parallel feeding arrangement, etc., can solve problems such as power loss, and achieve the effect of reducing power loss, avoiding inverter, and solving difficulties in grid connection.
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Embodiment 1
[0019] This embodiment provides a grid-connected system of a thermoacoustic generating set, and its structural diagram is as follows figure 1 As shown, the grid-connected system includes: a phase-locking device 10, a signal amplifier 9, a thermoacoustic generator set A and an access switch 11, one input end of the phase-locking device 10 is connected to the power grid B, and the output end of the phase-locking device 10 is connected to The input end of the signal amplifier 9 is connected, the output end of the signal amplifier 9 is connected to the input end of the thermoacoustic generator set A, the output end of the thermoacoustic generator set A is connected to the grid B, and the output end of the thermoacoustic generator set A is connected to the grid B There is an access switch 11 between them, and the other input end of the phase-locking device 10 is connected between the output end of the thermoacoustic generator set A and the access switch 11, so that the phase-locking...
Embodiment 2
[0023] Based on Embodiment 1, this embodiment provides a specific grid-connected system of thermoacoustic generator sets, and its specific structure is as follows figure 2 As shown, the thermoacoustic generator set A includes multiple sets of thermoacoustic engines connected in series between the compressor piston 1 and the generator piston 6, and each set of thermoacoustic engines is coupled through an ejector 5, and the thermoacoustic engines include sequential The secondary connected main water cooler 2 , regenerator 3 and heater 4 , the main water cooler 2 is connected with the compressor piston 1 , and the thermoacoustic generator set A also includes a permanent magnet 7 and a coil 8 connected with the generator piston 6 .
[0024] The piston 1 of the compressor moves repeatedly under the drive of the external voltage and compresses the gas inside the unit to generate oscillating sound waves. The mechanical energy of the engine is multiplied and input to the next-stage e...
Embodiment 3
[0026] Based on Embodiment 1, this embodiment provides another grid-connected system of a thermoacoustic generating set, the schematic diagram of which is shown in image 3 As shown, the thermoacoustic generator set A includes multiple sets of thermoacoustic engines connected in series between the compressor piston 1 and the generator piston 6, and the resonance between each set of thermoacoustic engines is formed by the mass piston 14 and the resonant spring 13 The sub-components are coupled, and the thermoacoustic engine includes a main water cooler 2, a regenerator 3, a heater 4 and a secondary water cooler 12 connected in sequence, the main water cooler 2 is connected to the compressor piston 1, and the secondary water cooler 12 is connected to the heater Between 4 and the resonant spring 13, the thermoacoustic generator set A further includes a permanent magnet 7 and a coil 8 connected to the generator piston 6.
[0027] Among them, the harmonic oscillator component can r...
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