I. Prokopov, P. Shonazarov, S. Darovskikh, N. N. Gudaev
{"title":"Hardware and software tools for modeling solar microwave radiation and natural magnetospheric disturbances","authors":"I. Prokopov, P. Shonazarov, S. Darovskikh, N. N. Gudaev","doi":"10.47813/nto.3.2022.6.242-249","DOIUrl":null,"url":null,"abstract":"The relevance of the study of the evolutionary mechanisms of the interaction of objects of animate and inanimate nature with various types of radiation and fields, the source of which is the Sun, is substantiated. Conducting such studies is currently difficult due to the growing level of electromagnetic pollution of the environment. This does not allow carrying out experimental studies using real natural radiations and fields. They are possible only with the use of specialized hardware and software devices for their simulation. The presented materials of the article reflected the description of the original hardware and software tools for modeling the microwave radiation of the Sun and natural magnetospheric disturbances. When developing these devices, modern ideas about the frequency-time structure of radiation and fields of natural origin were used. The already existing positive experience of using the device for simulating solar microwave radiation in assessing the interaction of radiation generated by it with biological objects was also noted. First of all, it is associated with a decrease in the resistance properties of microorganisms, disaggregation of erythrocytes, etc. Such results, according to the authors, are associated with excitation in biological structures under the influence of natural radiation of elastic vibrations. They are also possible in the study of abiogenic materials. The features of their excitation when using natural radiations and fields are determined. The results of research using the developed hardware and software tools can be used as the basis for the creation of new technologies for reducing the influence of the technogenic factor on the life process of organisms. They will also find application in the development of methods for the synthesis of new abiogenic structures.","PeriodicalId":169359,"journal":{"name":"Proceedings of III All-Russian Scientific Conference with International Participation \"Science, technology, society: Environmental engineering for sustainable development of territories\"","volume":"32 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"1900-01-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Proceedings of III All-Russian Scientific Conference with International Participation \"Science, technology, society: Environmental engineering for sustainable development of territories\"","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.47813/nto.3.2022.6.242-249","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
The relevance of the study of the evolutionary mechanisms of the interaction of objects of animate and inanimate nature with various types of radiation and fields, the source of which is the Sun, is substantiated. Conducting such studies is currently difficult due to the growing level of electromagnetic pollution of the environment. This does not allow carrying out experimental studies using real natural radiations and fields. They are possible only with the use of specialized hardware and software devices for their simulation. The presented materials of the article reflected the description of the original hardware and software tools for modeling the microwave radiation of the Sun and natural magnetospheric disturbances. When developing these devices, modern ideas about the frequency-time structure of radiation and fields of natural origin were used. The already existing positive experience of using the device for simulating solar microwave radiation in assessing the interaction of radiation generated by it with biological objects was also noted. First of all, it is associated with a decrease in the resistance properties of microorganisms, disaggregation of erythrocytes, etc. Such results, according to the authors, are associated with excitation in biological structures under the influence of natural radiation of elastic vibrations. They are also possible in the study of abiogenic materials. The features of their excitation when using natural radiations and fields are determined. The results of research using the developed hardware and software tools can be used as the basis for the creation of new technologies for reducing the influence of the technogenic factor on the life process of organisms. They will also find application in the development of methods for the synthesis of new abiogenic structures.