Experimental device and method for testing discharged water temperature of reservoir
An experimental device and water temperature technology, applied in hydraulic models and other directions, can solve the problem of not being able to monitor the average value of the discharge water temperature, and achieve the effect of solving the problem of layered monitoring errors and ensuring accuracy.
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Embodiment 1
[0034] This embodiment is an experimental device for testing the temperature of water discharged from a reservoir, such as figure 1 , 2 shown. This embodiment includes: a tailwater mixing tank 2 provided with an outlet 1 of a draft tube, the tailwater mixing tank is connected with a constricted flow stabilization tank 3 , and the flow stabilization tank is connected with a sump 4 . The downstream of the outlet of the draft tube is provided with a mixing facility 5 for generating communication between the upper and lower layers of the water, and a water temperature sensor 6 is provided in the water collection tank, and the water temperature sensor is electrically connected with a water temperature data collector 7 .
[0035] The basic principle of this embodiment is to strengthen the turbulence of the water in the tail water mixing tank through the mixing facilities, and destroy the temperature stratification of the discharged water, so as to accurately test the average water ...
Embodiment 2
[0040] This embodiment is an improvement of the first embodiment, which is the refinement of the tail water mixing tank in the first embodiment. The aspect ratio of the tail water mixing tank described in this embodiment is 2:1.
[0041] The length and width of the tail water mixing tank described in this embodiment, the said length is the length along the water flow direction, and the said width is the width of the pool perpendicular to the water flow direction.
Embodiment 3
[0043] This embodiment is an improvement of the above embodiment, and it is a refinement of the above embodiment about the blending facility. The mixing facility described in this embodiment is located in the upper, middle and lower reaches of the tail water mixing tank, and consists of at least three retaining walls, such as image 3 shown.
[0044]The mixing facility described in this embodiment is composed of more than three retaining walls arranged in a staggered manner. The retaining walls can be arranged up and down, or left and right, or up and down, left and right, so that the water body in the mixing pool will roll up and down / left and right, and the water temperature distribution in the pool will be weakened. The form of the retaining wall can be right-angled or triangular.
[0045] In order to further strengthen the turbulent effect of the water flow in the mixing pool and make the water flow more fully mixed, in this embodiment, pebbles are evenly distributed on a...
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