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Energy storage device hot spot temperature determination method based on digital twinborn technology

An energy storage device and hot spot temperature technology, which is applied in the field of hot spot temperature determination of energy storage devices based on digital twin technology, can solve problems such as lack of a structured framework, and achieve the effect of temperature monitoring

Pending Publication Date: 2021-12-28
刘晨熙
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, as a relatively new theory, digital twin does not have a relatively overall structural framework, and it is also one of the research goals to construct and improve the digital twin framework in the process of application.

Method used

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  • Energy storage device hot spot temperature determination method based on digital twinborn technology
  • Energy storage device hot spot temperature determination method based on digital twinborn technology
  • Energy storage device hot spot temperature determination method based on digital twinborn technology

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Embodiment Construction

[0032] The invention will be further described below in conjunction with the accompanying drawings and specific implementation examples. With the continuous expansion of the installed capacity of new energy power generation in my country, electric heat storage technology has been widely used as energy consumption. If the temperature of the heat storage pool is too high, it will cause problems such as gasification of the heat storage fluid and damage to the heating column, and the temperature of the hot spot cannot be directly Measurement. The heat storage device in this embodiment is taken as an example. Based on the finite element analysis technology, a numerical analysis model of the temperature field of the heat storage device is established, and the fluid field and temperature field inside the heat storage tank are calculated and analyzed. Acquisition is carried out, and the hot spot temperature in the heat storage pool is estimated based on digital twin technology.

[003...

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Abstract

The invention provides an energy storage device hot spot temperature determination method based on a digital twinborn technology, and aims to solve the problems of heat storage fluid gasification, heating column damage and the like caused by overhigh temperature of a heat storage pool along with continuous expansion of new energy power generation installed capacity in China, and the problem that the hot spot temperature cannot be directly measured. A heat storage device temperature field numerical analysis model is established based on the finite element analysis technology, a fluid field and a temperature field in a heat storage pool are calculated and analyzed, the temperature of the wall face of the heat storage device is collected through optical fiber temperature measurement, and the hot spot temperature in the heat storage pool is calculated based on the digital twinning technology. The temperature of the heat storage device can be monitored in real time, the problem that the temperature of the energy storage device cannot be measured through a measuring instrument is solved, the hot spot temperature is speculated through the temperature of the low-temperature area of the wall face by means of the digital twin technology, and temperature monitoring of the energy storage device is achieved.

Description

technical field [0001] The invention belongs to the field of new energy technology, and in particular relates to a method for determining the hot spot temperature of an energy storage device based on digital twin technology. Background technique [0002] The heat source inside the electric heat storage system (energy storage device) generally selects high-temperature fluid, and uses the low-valley electric heating heat source in the power system to convert electric energy into thermal energy and store it in the heat storage battery. The system generates electricity for use. The temperature in the heat storage pool can reach hundreds of degrees Celsius. If the hot spot temperature is too high, the heat storage fluid will vaporize and explode, and the heating column will be damaged and affect the life. At the same time, the hot spot temperature cannot be directly measured because of the high temperature. [0003] Digital twin technology Since German Industry 4.0 was propose...

Claims

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Application Information

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IPC IPC(8): G06F30/23G01K13/00G06F17/11G06F119/08G06F113/08G06F111/10G06F119/04
CPCG06F30/23G06F17/11G01K13/00G06F2111/10G06F2119/08G06F2113/08G06F2119/04
Inventor 刘晨熙
Owner 刘晨熙
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