Method and system for determining suffocation death risk of fishes
A fish determination method and fish technology, applied in the field of aquatic ecological risk analysis, can solve the problems of not being able to effectively prevent a large number of fish deaths, not being able to analyze the risk of death, and lacking model descriptions
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Embodiment 1
[0175] The fish population density distribution in embodiment 1 is w~N(300,100), and the density distribution in embodiment 2 is w~N(300,20). According to two kinds of weight distribution functions, the weight distribution frequency map can be randomly generated, and the weight distribution frequency map It can be obtained that the expected fish body weight in Example 1 and Example 1 is 300g.
[0176] 3) Meteorological parameters
[0177] The main source of meteorological parameters in Examples 1 and 2 is the National Scientific Meteorological Data Sharing Service Platform. The data in Example 1 starts at 0:00 on September 17, 2017 and ends on September 27, 2017, a total of 11 days , Continuous rainfall from September 19 to 25, of which continuous heavy rain occurred on the 24th. The data in Example 2 starts at 0:00 on July 27, 2017, ends at 23:00 on August 4, and lasts for 216 hours. No. 9 Typhoon Nasat landed in Fuqing, Fujian at 6:00 on July 30, and No. 10 Typhoon Haitang...
Embodiment 2
[0232] Embodiment 2 shows that the dissolved oxygen simulation results of 10 days before and after the typhoon occurred, the average concentration of dissolved oxygen in a total of 8 time periods is less than the suffocation point concentration of 50g fish, as shown in Table 4.
[0233] table 3
[0234]
[0235] Table 4
[0236]
[0237] In Table 3, there were two serious hypoxic situations on September 21-22 and 25-26. Taking the second time period as an example, the 24-hour data in this time period (from 16:00 on September 25 to At 15:00 on the 26th) according to the simulated average dissolved oxygen concentration in the environment and the suffocation point formula, the minimum body weight of the fish affected by the dissolved oxygen concentration was calculated back, and the results are as follows Figure 4 As shown, the results show that only small fish were initially affected by the simulated hypoxia scenario, and larger fish were affected as the average dissolve...
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