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Alkali metal seed system with quantitative injection function

A technology of alkali metal and seeds, applied in the direction of electrical components, electromechanical devices, etc., can solve the problems of seed flow fluctuation, difficulty in determining, unclear amount of alkali metal seeds, etc.

Active Publication Date: 2021-09-03
INST OF ELECTRICAL ENG CHINESE ACAD OF SCI
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The mixture of carrier gas and alkali metal vapor needs to pass through the slender delivery pipe and pass through the water-cooled main gas flow cylinder. During this process, the alkali metal vapor will condense into liquid. At the same time, due to the compressibility of the gas, its flow rate must also be It will be affected by the pressure fluctuation of the main air flow. The amount of alkali metal vapor carried in the mixed gas is related to the pressure of the carrier gas and the vaporization process. The flow rate of the mixed gas injected into the main air flow is related to the injection pressure and the pressure of the main air flow. Influenced by fluctuations, the actual injected flow rate is difficult to control and determine, which seriously affects the ionization of seeds, resulting in low conductivity of the working medium for power generation, affecting the power output of the generator and experimental research
[0006] image 3 The soda metal seed injection system of the Chinese patent ZL20150572329.X inert gas plasma magnetohydrogen generator mentioned, although it mentions the application of a syringe to output a quantitative amount of alkali metal, but its injection system uses a three-way mixer to combine the carrier gas with the syringe The liquid alkali metal sent is mixed to bring out the alkali metal droplet. The carrier gas and the alkali metal droplet pass through the slender pipeline. Due to the need to avoid the influence of the strong magnetic field of the magnetic fluid generator, the length of the pipeline generally needs to exceed 1.5 meters. Passing through the water-cooled main gas flow cylinder, this two-phase flow will also inevitably separate gas and liquid in the delivery pipe, showing a state of one section of liquid and one section of gas
Moreover, due to the compressibility of the gas, when the pressure of the main airflow fluctuates, it also causes the fluctuation of the seed flow rate. In fact, the flow rate of the seed injection is fluctuating, which is not equal to the flow rate of the quantitative injection.
[0007] To sum up, in the above-mentioned prior art, the amount of alkali metal seeds injected into the main gas flow is unclear and unstable, and it is impossible to realize the real accurate and quantitative delivery of alkali metals, let alone the injection of micro-quantitative liquid alkali metal seeds.

Method used

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  • Alkali metal seed system with quantitative injection function
  • Alkali metal seed system with quantitative injection function
  • Alkali metal seed system with quantitative injection function

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Embodiment Construction

[0034] The present invention will be further described below in conjunction with the accompanying drawings and specific embodiments.

[0035] Such as Figure 4 As shown, the alkali metal seed quantitative injection system of the present invention includes a programmable high-pressure stainless steel injection pump 1, a liquid alkali metal delivery pipeline system 2, an inert gas supply and delivery pipeline system 3, a vacuum pump 4, and a pneumatic atomized seed injection ring 5.

[0036] Such as Figure 5 As shown, the programmable high-pressure stainless steel syringe pump 1 is connected with a liquid alkali metal delivery pipeline system 2 . Both ends of the liquid alkali metal delivery pipeline system 2 are respectively connected to a programmable high-pressure stainless steel injection pump 1 and a pneumatic atomized seed injection ring 5; one end of the inert gas supply and delivery pipeline system 3 is connected to a vacuum pump 4 and a vacuum pump 4 respectively. Th...

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Abstract

The invention discloses an alkali metal seed system with a quantitative injection function. The alkali metal seed system comprises a programmable high-pressure stainless steel injection pump, a liquid alkali metal conveying pipeline system, an inert gas supply and conveying pipeline system, a vacuum pump and a pneumatic atomization seed injection ring. Liquid alkali metal seeds are quantitatively pushed and output from the high-pressure injection pump according to a set program, enter a pneumatic atomization spray gun of the pneumatic atomization seed injection ring through the liquid alkali metal conveying pipeline system, and directly reach a mixing chamber at the end part of the spray gun so as to be mixed with inert gas input into the mixing chamber at the end part of the spray gun by the inert gas supply and conveying pipeline system; the liquid alkali metal seeds are pneumatically atomized and are injected into the injection ring at an angle of 90 degrees with the high-temperature main gas flow in the injection ring. Quantitative injection of the alkali metal seeds according to needs can be achieved, and good conditions are created for uniform mixing and sufficient ionization of the alkali metal seeds and main airflow.

Description

technical field [0001] The invention relates to an alkali metal seed injection system of a magnetic fluid generator. Background technique [0002] Magnetic fluid power generation is a new power generation method that directly converts heat energy into electrical energy. The basic working principle is Faraday's law of electromagnetic induction. Depending on the use of conductive fluid working medium, magnetic fluid power generation can be divided into combustion gas plasma magnetic fluid power generation, inert gas plasma power generation and liquid metal magnetic fluid power generation. When nuclear energy is used as a heat source, inert gas plasma power generation can make full use of the high heat generated by nuclear energy, the total temperature and total pressure of the inert gas will increase, and a pressure difference will be formed at both ends of the MHD power generation channel, thereby forming a flow field. The inert gas plasma quickly flows through the power gen...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H02K44/22H02K44/08
CPCH02K44/22H02K44/08
Inventor 朱培奇彭爱武刘保林沙次文
Owner INST OF ELECTRICAL ENG CHINESE ACAD OF SCI
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