Construction Method of Bio-optical Model of Stratified Water Body
A water biological and optical model technology, which is applied in the direction of material analysis, scientific instruments, color/spectral property measurement by optical means, etc., can solve the problem of difficult to reveal the mechanism of remote sensing monitoring of the vertical distribution of algae particles, and achieve great scientific significance. Effect
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Publication Date
- 2020-09-04
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Abstract
Description
technical field
[0001] The invention relates to a method for constructing a bio-optical model of a stratified water body. Background technique
[0002] Lake eutrophication and harmful algal blooms are common ecological environmental problems in waters all over the world (Qin Boqiang et al., 2016). Frequent outbreaks of cyanobacterial blooms caused by lake eutrophication are currently the main challenges facing freshwater lakes in China (Liu and Yang , 2012). Driven by the coupling of various environmental factors (external factors), cyanobacteria have an absolute advantage in the phytoplankton community due to their unique physiological and ecological characteristics (internal factors), which produce huge biomass. Under suitable hydrometeorological conditions, a large number of algae particles accumulate on the water surface to form a cyanobacterial bloom (Ma Jianrong et al., 2013). Studies have shown that cyanobacterial blooms have strong temporal and spatial variability,...
Examples
Embodiment 1
[0046] This example illustrates the construction method of the stratified water bio-optical model of the present invention.
[0047] In this embodiment, a bio-optical model of stratified water is established based on radiation transfer simulation data, and the implementation method is as follows: through Hydrolight radiation transfer simulation, the underwater light field data set under different vertical distribution conditions of chlorophyll a concentration is simulated, and the vertical distribution of algae is analyzed. For the apparent optical quantity AOP (remote sensing reflectance r rs (λ,z), diffuse attenuation coefficient K x (λ,z)) spectrum and vertical influence mechanism; by comparing the effects of several different equivalent weight functions in the simulated data set, the equivalent weight function with the smallest error is selected to calculate the impact of different layers of the water body on Remote sensing reflectance (r rs (0 - ))); Finally, a bio-opt...