Novel supercritical water parallel channel segment adjustable electric heating apparatus
An electric heating device and supercritical water technology, applied in electric heating devices, ohmic resistance heating, heating element materials, etc., can solve the problems of inability to realize, simulate, unstable flow of non-uniform heat flux, etc., to reduce the processing and manufacturing requirements, The effect of keeping the current output direction stable
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Embodiment 1
[0034] Such as figure 1 As shown, a novel supercritical water parallel channel section adjustable electric heating device of the present invention includes a heating channel 1 with equal wall thickness, at least three conductive copper bars 2 are arranged on the heating channel 1, and two adjacent conductive copper bars A heating module is connected between the rows 2, and the heating module includes a programmable DC power supply 3 and a one-way diode 4 connected to the programmable DC power supply 3. Two adjacent heating modules form a heating module group, and the two individual heating modules of the heating module group The negative poles of the two unidirectional diodes 4 are connected to the negative poles, the positive poles of the two unidirectional diodes 4 are connected to the positive poles, and the current loops formed by the two adjacent heating modules and the conductive copper bars 2 do not communicate with each other. .
[0035] Wherein, the heating channel 1...
Embodiment 2
[0047] Using the supercritical water parallel channel segmented adjustable electric heating device described in Example 1, the axial non-uniform distribution of the core power of the water-cooled reactor is simulated. During the simulation process, the power transient control and adjustment methods are manual adjustment control and automatic adjustment. control.
[0048] The manual adjustment control method is: each programmable DC power supply has a signal input port, and the operator can adjust the heating power of each programmable DC power supply by inputting a 4-20mA signal at the control terminal of the programmable DC power supply according to the test needs , because each programmable DC power supply is in one-to-one correspondence with a part of the heating channel, that is, a programmable DC power supply is connected to two adjacent conductive copper bars, one-way diodes, and the partial area of the heating channel between two adjacent conductive copper bars A loop...
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