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a power generation system

A power generation system and evaporator technology, which is applied in the direction of machines/engines, steam engine devices, mechanical equipment, etc., can solve the problems of poor heat exchange effect, loss, shutdown of power generation system, etc., to reduce temperature difference stress, reduce thermal stress, The effect of reducing economic loss

Active Publication Date: 2018-06-26
ZHEJIANG SUPCON SOLAR TECHNOLOGY CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Using a single heat exchange device in the case of a certain system equipment failure will directly affect the operation of the heat exchange device, indirectly cause the entire power generation system to shut down, cause the power station to fail to generate electricity normally, and cause a series of losses
On the other hand, tower-type solar thermal power stations often require low-load operation of the system due to grid requirements or system operation requirements. At this time, the heat exchange device needs to cooperate with the steam turbine to achieve low-load operation and variable load operation. Under low load conditions, the heat exchange device will have problems such as low operating efficiency and poor heat exchange effect.

Method used

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Examples

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Embodiment 1

[0032] Such asfigure 1 As shown, a power generation system provided by an embodiment of the present invention includes: a high-temperature heat storage medium storage tank 2: used to store a high-temperature heat storage medium; a low-temperature heat storage medium storage tank 1: used to store a low-temperature heat storage medium; heat exchange Device: used to realize the heat exchange between the heat storage medium and the water working medium, and convert the liquid water working medium into superheated steam; steam turbine 9: driven by the superheated steam to drive the generator 10 to generate electric energy; steam exhaust condensing device 11 : The steam discharged from the steam turbine 9 is condensed into water, and the condensed water is further introduced into the heat exchange device as a water working medium to exchange heat with a heat storage medium.

[0033] Specifically, such as figure 2 As shown, the heat exchange device includes a first superheater 3, a ...

Embodiment 2

[0042] Such as image 3 As shown, the power generation system provided by this embodiment is the same as that of Embodiment 1, except that the power generation system of this embodiment also includes a first reheater 26 and a second reheater 27, and the steam turbine 9 is a reheating steam turbine 9. At least one low-pressure cylinder and one high-pressure cylinder are included. The low-pressure steam discharged from the low-pressure cylinder communicates with the hydraulic medium inlets of the first reheater 26 and the second reheater 27 respectively through the fourth hydraulic fluid distribution pipe 31, The hydraulic fluid outlets of the first reheater 26 and the second reheater 27 are respectively connected to the steam inlet of the steam turbine 9 after being merged in the fourth hydraulic fluid confluence pipe 30 through pipelines;

[0043] The heat storage medium outlet of the high-temperature heat storage medium storage tank 2 communicates with the heat storage medium...

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Abstract

The invention relates to a power generating system comprising a high-temperature heat storage medium storage tank, a low-temperature heat storage medium storage tank, a heat exchange device, a turbine, a generator and a steam exhausting condensation device. The heat exchange device comprises two superheaters, two evaporators in series connection and two preheaters. The high-temperature heat storage medium storage tank, the superheaters, the evaporators, the preheaters and the low-temperature heat storage medium storage tank are connected in sequence to form a passage for circulating of a heat storage medium. The steam exhausting condensation device, the preheaters, the evaporators, the superheaters and the turbine are connected in sequence to form a passage for circulating of a water working medium. After the water working medium and a high-temperature heat storage medium are subjected to heat exchange in the heat exchange device, steam is formed and allows for working of the turbine, so that the generator is driven to generate power. The steam exhausted from the turbine enters the steam exhausting condensation device to form condensed water serving as the water working medium, and the water working medium enters the heat exchange device to be subjected to heat exchange with the high-temperature heat storage medium. Compared with the prior art, the ability of failure coping of the whole power generating system is improved through the heat exchange device.

Description

technical field [0001] The invention relates to the field of solar thermal power generation, in particular to a power generation system. Background technique [0002] With the continuous burning of traditional fossil fuels, the conventional energy available to human beings is becoming less and less, and the massive consumption of fossil energy has destroyed the ecological environment in which human beings live, seriously threatening human security and survival. In order to protect the earth's ecological environment on which human beings depend, measures must be taken to reduce the consumption of fossil energy, vigorously develop and utilize clean, clean new energy and renewable energy, and take the road of green energy that is harmonious with the ecological environment. [0003] Solar energy is the most abundant permanent energy source in the world. The total amount of solar energy received by the earth every year is 1×1018kW·h, which is equivalent to 5×1014 barrels of crude...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): F01D15/10F01K11/02
CPCF01D15/10F01K11/02
Inventor 余志勇陈明强唐亚平周慧唐娟孙峰周楷王玄骅
Owner ZHEJIANG SUPCON SOLAR TECHNOLOGY CO LTD
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