Файл: Исследование суточных вариаций поровой активности радона в поверхностных грунтах удк 550. 42 546. 296 551. 51.docx

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СОДЕРЖАНИЕ

PLANNED RESULTS OF THE DEVELOPMENT OF THE PLO/OPOP

SYMBOLS AND ABBREVIATIONS

Introduction

1 Chapter

Areas applications quantities density flow radon

Climatology. Radon - as a tracer of air exchangeprocesses

Static and dynamic methods measurements

Chapter

Dynamics of radon activity and its decay products inside the storage chamber

Conclusion on the chapter The field of β-radiation at depths of 0.5 and 1 m quite well reflects the dynamics of the radon subsoil field, the daily variation is well traced. However, the daily course of the β-field in some periods has a shift compared to the daily course of the radon field, i.e. the time of the onset of the maximum in the dynamics of the β-field is ahead/late by several hours.The dynamics of RA of radon in soil air at the same depth, but at a distance of 1.5–2 m, can differ significantly. The maxima in the daily course of RA of radon at different depths occur at different times, at a depth of 0.5 m - approximately at 16-18 hours, and at a depth of 1 m - at 24 hours. The delay in some periods reaches 8 hours.Correlation analysis between the radon field and meteorological values revealed only a significant relationship with the amount of rainfall.A 2-month experiment on the calibration of β- and α-radiation detectors installed in wells did not make it possible to unambiguously determine the correction factors for converting to units of volumetric activity. As a result, it was decided to conduct a second experiment with some adjustment of the experimental design, as well as refinement of the VA detector installation scheme. The requirements for the conditions for calibrating the readings of the VA detector in units of RA of radon are as follows: Wells with VA detectors installed inside should not be opened during calibration, i.e. tubes for pumping air from the well, which are cyclically connected to the radon radiometer, should be installed at least a day before the start of the experiment. The VA detectors should not be removed from the well or moved in the well during calibration, as this leads to a distortion of the time series of data. To calculate the coefficient of decrease in the range of diurnal variations after the start of pumping air from the well, it is necessary to record data from the VA detector at least a week before the start of the experiment, and after its completion. The development of the project infrastructure made it possible to analyze the results of the calibration of soil detectors by 0.5 and 1 мusing a radon radiometer, which showed the following:at depth, 0,5 мthe temporal changes in the α- and β-fields are practically synchronous, but have different amplitudes ;in the daily course of radon VA at different depths, the maxima at depth 0,5 мare recorded at 16–18 h, and at depth 1 мat 24 h; the delay in time of the moments of the onset of maxima in radon VA is

Chapter 4 Financial management, resource efficiency and resource saving

Consumer portrait

SWOT analysis

Project Initiation

Project Participants

Project Schedule

Scientific and technical research budget

Basic salary

Additional salary

Overhead costs

Conclusion

Social responsibility

Industrial safety

Artificial lighting

Electrical safety

Static electricity

Safety in emergencies

Conclusions to the section social security

List of sources used

application 1

цикла

Период выполнения (осенний/весеннийсеместр2022/2023учебного года)




Обучающийся:

КАЛЕНДАРНЫЙ РЕЙТИНГ-ПЛАН

выполнения выпускной квалификационной работы

Группа

ФИО

0АМ13

Кажитаев Санжар Муралович

Тема работы:




Срок сдачи обучающимся выполненной работы:

25.05.2023




Дата контроля

Название раздела (модуля) / вид работы (исследования)

Максимальный

балл раздела (модуля)

10.04.2023

Обзорлитературныхисточников

10

24.04.2023

Методыиприборыизмеренияпоровойактивностирадонав

грунте

15

25.04.2023

Определения зависимости суточных вариации поровой

активностирадонаотклиматическихусловий

20

26.04.2023

Исследованиесуточнойактивностирадонавповерхностныхгрунтах


20

02.05.2023

Анализ полученныхрезультатов

15

04.05.2023

Финансоваяответственность

10

05.05.2023

Социальнаяответственность

10

СОСТАВИЛ:

Руководитель ВКР

Должность

ФИО

Ученая степень, звание

Подпись

Дата

Профессор ОЯТЦ

Яковлева В.С.

Д.т.н.








СОГЛАСОВАНО:

Руководитель ООП/ОПОП

Должность

ФИО

Ученая степень,

звание

Подпись

Дата

Ст. преподаватель

ОЯТЦ

Семенов А.О.

К.т.н.







Обучающийся

Группа

ФИО

Подпись

Дата

0АМ13

Кажитаев Санжар Муралович








SchoolofNuclearScience &Engineering

Field of training (specialty): 14.04.02 Nuclear Science and Technology Levelofeducation:Master's degree

NuclearFuelCycleDivision

Period of work (fall/spring semester 2022/2023 academic year)




Student:

CALENDAR RATING PLAN

completion of the final qualifying work

Группа

ФИО

0АМ13

Kazhitaev Sanzhar Muralovich

Work theme:



The deadline for the student's completed work:

25.05.2023




Control date

Section name

Maximum score of a

section (module)

10.04.2023

Literaturereview

10

24.04.2023

Methodsandinstrumentsformeasuringtheporeactivityofradoninthesoil

15

25.04.2023

Determination ofthedependenceofdailyvariationsofradonpore

activityon climaticconditions

20

26.04.2023

Investigationofdailyradon activityinsurfacesoils

20

02.05.2023

Analysis oftheresultsobtained

15

04.05.2023

Financial responsibility

10

05.05.2023

Social responsibility

10


COMPOSED: HEAD OF FQW

Должность

ФИО

Ученая степень,

звание

Подпись

Дата


Professor NFCD


Yakovleva V.S.

Doctor of

technical sciences







AGREED:

Head of BEP

Должность

ФИО

Ученая степень, звание

Подпись

Дата

Senior lecturer NFCD

Semenov A.O.

Ph.D.







Student

Группа

ФИО

Подпись

Дата

0АМ13

Kazhitaev Sanzhar Muralovich







PLANNED RESULTS OF THE DEVELOPMENT OF THE PLO/OPOP



Competence code Name of

competence

Competence code Name of competence

Universal competencies

CC (U)-1

Is able to carry out a critical analysis of problem situations

based on a systematic approach, develop a strategy for the actions

CC (U)-2

Is able to manage the project at all stages of its life cycle

CC (U)-3

Is able to organize and manage the work of the team,

developing a team strategy to achieve the goal

CC (s)-4

Is able to apply modern communication technologies,

including in a foreign language(s), for academic and professional interaction

CC (s)-5

Is able to analyze and take into account the diversity of

cultures in the process of intercultural interaction

CC (s)-6

Is able to determine and implement the priorities of its own activities and ways its improvement based on self-

assessment

General professional competencies

of the Defense

Industry (U)-1

Is able to formulate research goals and objectives, select

evaluation criteria, identify priorities for solving problems

OPK(U)-2

Is able to apply modern research methods, evaluate and

present the results of the work performed

OPK(U)-3

Is able to formalize the results of research activities in the form of articles, reports, scientific reports and presentations

using computer layout systems and office software packages


Competence code Name of

competence

Competence code Name of competence

Professional competencies

PC(U)-1

Ability to create theoretical and mathematical models in the

field of nuclear physics and technology

PC(S)-2

Willingness to apply methods of research and calculation of processes occurring in modern physical installations and

devices in the field of nuclear physics and

PC(S)-3.

Willingness to develop practical recommendations for the

use of the results of scientific research

PC(S)-4.

Ability to assess risk and determine safety measures for new installations and technologies, prepare and analyze scenarios of potential accidents, develop methods to reduce the risk of

their occurrence

PC (U)-5.

Ability to analyze technical and computational-theoretical developments, to take into account their compliance with the requirements of the laws of the Russian Federation in the

field of nuclear and radiation safety, atomic energy

PC (U)-6.

Ability to objectively evaluate the proposed solution or project in relation to the modern world level, to prepare an

expert opinion

PC (S)-7.

Ability to formulate technical specifications, use information technologies and application software packages in the design and calculation of physical installations, use knowledge of methods of analysis of environmental and economic

efficiency in the design

PC (S)-8

Willingness to apply optimization methods, analysis of options, search for solutions to multi-criteria problems,

accounting for uncertainties in the design

PC (S)-9.

The ability to solve problems in the field of science, technology and technology development, taking into account regulatory legal regulation in the field of intellectual

property

PC (Y)-10.

Readiness to teach in the main educational programs of higher education and additional professional education

(APE)

PC (U)-11.

Ability to design and economic justification of an innovative

project, content, structure and order of its development