Технологічний режим лазерної передпосівної обробки насіння соняшнику

Автор(и)

  • Л. Є. Никифорова
  • С. В. Гайдукевич
  • Н. П. Семенова
  • І. В. Кізім

Анотація

TECHNOLOGICAL  MODE OF LASER PROCESSING OF SEEDS OF SUNFLOWER

L. Nikiforowa, S. Gaydukevich, N. Semenova, I. Kizim

 

In the article  are led preconditions of determination of the technological mode of laser presowing treatment of seed of sunflower by the method of the mathematical planning of complete factor experiment.

For conducting of experiment of the technological mode of laser presowing treatment of seed of sunflower, factors were select and levels of their varying.

With the purpose of reduction of general volume of experiments was done an experiment from sifting from.

The matrix of planning of experiment from sifting from of the second order is based on three factors.

It allows to get linear equalizations of regression in a general view.

After the conducted experiments there are the determined coefficients of regression of every factor and error of experiment.

After the criterion of Kokhrena are the determined dispersion of reproduction, on the basis of which it is possible to say that the reproduced of experiments is good.

After a criterion of the St'yudenta are the determined coefficients of regression of polynomial.

For determination of adequacy of model, comparison of critical and calculation value of the meuning Fyshera criterion is conducted. Thus, it is exposed, that the got nonlinear model is adequate, that is meun it can be used for construction of region of optimum and determination of its co-ordinates.

The given equalizations of model, that describe influence of factors on the criterion of optimization  allowed to defined the technological mode of laser presowing treatment of seed of sunflower, namely: amount of days from the irradiation to beginning of determination of sowing qualities of seed - 8,47 days; amount of impulses - 1931 things; closeness of energy - 3,25 mVт/сm2

The graphs, which give possibility to define dependence the changes  of sowing qualities of seed, from the closeness of energy, amount of impulses and days on the irradiation to beginning of determination of sowing qualities of seed, are built.

Посилання

Mel’nikov, S. V., Аleshkin, V. R., Roshchin, P. M. (1980). Planirovaniye eksperimenta v issledovaniyakh sel’skokhozyaystvennykh protsessov [Experiment planning in studies of agricultural processes]. Leningrad, Kolos, 168.

Guseynov, F. G., Mamedyarov, O. S. (1988). Planirovaniye eksperimenta v zadachakh eletroenergetiki [Experiment planning in the electricity problems ]. Moskow, Energoizdat, 151.

Bukatyy, V. I., Karmanchikov, V. P. (1999). Vozdeystviye lazernogo izlucheniya na semena sel’skokhozyaystvennykh kul’tur [The impact of laser radiation on crop seeds]. Barnaul, Izd-vo АTU, 58.

Velichko, O. I., Demkiv, O. T. (2003). Vliyaniye lazernogo osveshcheniya semyan i prorostkov na aktivnost’ karboangidrazy v prorostkakh kress-salata [Effect of laser light seeds and seedlings on carbonic anhydrase activity in seedlings of cress]. Fiziologiya i biokhimiya kul’turnykh rasteniy, 35 (1), 22-28.

Lobko, V. V., Karu, T. Y., Letokhov, B. C. (1985). Sushchestvenna li kogerentnost’ nizkointensivnogo lazernogo sveta pri ego vozdeystvii na biologicheskiye ob”yekty [Coherence is essential if low-intensity laser light as it impacts on biological objects]. Biofizika, 30 (2), 366-371.

Завантаження

Опубліковано

2017-02-27

Номер

Розділ

Статті