heat storage container
A container and heat storage technology, applied in heat storage equipment, indirect heat exchangers, heat exchanger types, etc., can solve problems such as longer cooling time and waste of power consumption
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Embodiment 1)
[0066] use figure 1 and figure 2 The heat storage container of Example 1 of this embodiment is demonstrated. In addition, in all the following drawings, in order to make understanding easy, the dimension, ratio, etc. of each component are suitably changed and shown. figure 1 It is a perspective view which shows the appearance of the heat storage container 100 of this Example. In this embodiment, as the heat storage container 100, a direct cooling type refrigerator is taken as an example for description. The thermal storage container 100 has a rectangular parallelepiped-shaped thermal storage container main body 101 that is vertically high in an installed state. exist figure 1 In the middle, the state which looked at the front surface 101a of the heat storage container main body 101 from obliquely upper left is shown. On the front surface 101a of the heat storage container main body 101, rectangular openings are provided in the upper and lower stages, respectively. The l...
Embodiment 2)
[0094] Next, use Figure 4 The heat storage container 110 of Example 2 of this embodiment is demonstrated. Components having the same functions and actions as those in the heat storage container 100 of Example 1 are given the same reference numerals, and description thereof will be omitted.
[0095] Figure 4 (a) with figure 2 The same cross section as the heat storage container 100 shown in (a) shows the heat storage container 110 of this embodiment. Such as Figure 4 As shown in (a), the front part 2a of the cooler 2 of this embodiment has a concavo-convex shape. This concave-convex shape has a convex portion extending substantially parallel to the front surface 101a of the heat storage container main body 101, and a groove space as a concave portion adjacent to the convex portion in a direction perpendicular to the front surface 101a. Adjacent protrusions and recesses are regarded as a set, and plural sets are arranged along the direction perpendicular to the front su...
Embodiment 3)
[0102] Next, use Figure 5 to Figure 7 The heat storage container 120 of Example 3 of this embodiment is demonstrated. Components having the same functions and actions as those of the thermal storage containers of the first and second embodiments described above are assigned the same reference numerals, and descriptions thereof are omitted.
[0103] First, use Figure 5 to Figure 7 The structure of the heat storage container 120 is demonstrated. Figure 5 (a) with figure 2 The same cross section as the heat storage container 100 shown in (a) shows the heat storage container 120 of this embodiment. The heat transfer region 10 on the surface of the front member 2a of the cooler 2 of this embodiment has the same planar shape as that of the first embodiment. On the other hand, a plurality of strip-shaped latent heat storage materials 5 similar to those in Example 2 are arranged in the heat transfer region 10 . Strip-shaped space regions between adjacent latent heat storage m...
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