Auto-cascade jet type refrigerator
A technology of ejector and refrigerator, which is applied in the direction of refrigerator, refrigeration components, refrigeration and liquefaction, etc., can solve the problems of high operating cost and complex structure, and achieve the effect of improving refrigeration performance, reducing compression ratio, and improving ejector efficiency
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Embodiment 2
[0033] This implementation is an improvement on the basis of Example 1, such as figure 2 shown in figure 1 On the basis of the system shown, the first ejector 3 is connected to the condenser 4 in series with the second ejector 10 . A pipeline communicates with the outlet of the first generator 9 and the inlet of the working fluid of the second injector 10 .
[0034] The specific connection is as follows: the pipeline between the first ejector 3 and the first condenser 4 is provided with a second ejector 10; the working fluid inlet of the second ejector 10 is communicated with the working fluid outlet of the first generator 9, The ejection fluid inlet of the second ejector 10 communicates with the ejection outlet of the first ejector 3 , and the ejection outlet of the second ejector 10 communicates with the working fluid inlet of the first condenser 4 . The rest of the components are connected as in Example 1.
[0035] Compared with Example 1, the working flow of the workin...
Embodiment 3
[0037] like image 3 As shown, this embodiment is an improvement on the basis of Example 1. The third throttling element 11 and the second generator 12 are connected in series between the outlet of the first circulating pump 8 and the working fluid inlet of the third ejector 13 in sequence.
[0038] The specific connection is as follows: the working fluid inlet of the third injector 13 is communicated with the working fluid outlet of the second generator 12, the injection fluid inlet of the third injector 13 is communicated with the injection outlet of the first injector 3, and the third injector The injection outlet of 13 is communicated with the working medium inlet of the first condenser 4; The rest of the components are connected as in Example 1.
[0039] Compared with Example 1, the working flow of the working fluid in this example is different in that part of the liquid at the outlet of the first circulating pump 8 directly enters the first generator 9, and becomes a hi...
Embodiment 4
[0041] like Figure 4 As shown, this embodiment is an improvement on the basis of Example 4, wherein the third throttling element 11 is located on the pipeline between the first generator 9 and the third throttling element 11 .
[0042] The specific connection is as follows: the working medium inlet of the second generator 12 is communicated with the working medium outlet of the first circulating pump 8 . The working medium outlet of the third throttling element 11 is communicated with the working medium inlet of the first generator 9 , and the working medium inlet of the third throttling element 11 is connected with the working medium outlet of the first circulating pump 8 . The rest of the components are connected as in Example 1. The rest of the components are connected as in Example 3.
[0043] Compared with Example 4, the working flow of the working fluid in this example is different in that part of the liquid at the outlet of the first circulating pump 8 directly enter...
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