北欧辐射保护协会-一个重要的辐射保护知识论坛
Jack Valentin1,2, Sören Mattsson3
1KcRN (Swedish Radiation Emergency Medicine Centre), Cancercentrum Karolinska, R8:03, Visionsgatan 56, SE-171 64 Solna, Sweden.
Radiation protection dosimetry
|August 28, 2025
概括
北欧辐射保护协会 (NSFS) 成立于1964年,旨在促进北欧各国对辐射保护的知识交流. 它促进核安全,废物管理和医学物理方面的合作,作为辐射保护专业的关键声音.
科学领域:
- 辐射保护科学
- 核安全与保障
- 环境健康
背景情况:
- 北欧辐射保护协会 (NSFS) 成立于1964年.
- 它的使命是促进北欧国家在辐射保护方面的知识和经验交流.
- 作为国际辐射保护协会 (IRPA) 的创始成员,NSFS一直在吸引来自北欧五个国家的成员.
研究的目的:
- 概述NSFS的历史发展和正在进行的活动.
- 突出社会在促进辐射保护方面的合作和知识转移方面的作用.
- 强调NSFS对国际辐射保护工作的贡献.
主要方法:
- 自成立以来NSFS活动的历史回顾.
- 分析NSFS会议结构和主题重点领域.
- 审查NSFS在更广泛的国际辐射保护社区中的作用.
主要成果:
- 自1966年以来,NSFS定期组织国际会议,促进跨代技能转让.
- 该协会在包括核安全,废物管理,放射生态学,医学放射学和临床物理学在内的多个领域激发了北欧合作.
- 在北欧地区,NSFS积极参与辐射防护的研究生教育.
结论:
- 在北欧地区,NSFS在促进辐射保护科学和实践方面发挥了重要作用.
- 它的协作方法和对知识交流的重视加强了北欧在关键领域的合作.
- 实际上,NSFS体现了IRPA的愿景,即成为辐射保护专业的国际发言人.
相关概念视频
Radiation: Applications
1.2K
The average temperature of Earth is the subject of much current discussion. Earth is in radiative contact with both the Sun and dark space; it receives almost all its energy from the radiation of the Sun and reflects some of it into outer space. Dark space is very cold, about 3 K, so Earth radiates energy into it. For instance, heat transfer occurs from soil and grasses, the rate of which can be so rapid that frost can occur on clear summer evenings, even in warm latitudes.
The average...
The average...
1.2K
Radiation Pressure: Problem Solving
456
The radiation pressure applied by an electromagnetic wave on a perfectly absorbing surface equals the energy density of the wave. The wave's momentum also gets transferred to the surface when an electromagnetic wave is entirely absorbed by it. The rate at which momentum is transmitted to an absorbing surface perpendicular to the propagation direction equals the force on the surface.
The average value of the rate of momentum transfer divided by the absorbing area represents the average force...
The average value of the rate of momentum transfer divided by the absorbing area represents the average force...
456
Biological Effects of Radiation
15.9K
All radioactive nuclides emit high-energy particles or electromagnetic waves. When this radiation encounters living cells, it can cause heating, break chemical bonds, or ionize molecules. The most serious biological damage results when these radioactive emissions fragment or ionize molecules. For example, α and β particles emitted from nuclear decay reactions possess much higher energies than ordinary chemical bond energies. When these particles strike and penetrate matter, they...
15.9K
Nuclear Power
8.2K
Controlled nuclear fission reactions are used to generate electricity. Any nuclear reactor that produces power via the fission of uranium or plutonium by bombardment with neutrons has six components: nuclear fuel consisting of fissionable material, a nuclear moderator, a neutron source, control rods, reactor coolant, and a shield and containment system.
Nuclear Fuels
Nuclear fuel consists of a fissile isotope, such as uranium-235, which must be present in sufficient quantity to provide a...
Nuclear Fuels
Nuclear fuel consists of a fissile isotope, such as uranium-235, which must be present in sufficient quantity to provide a...
8.2K
Radial System Protection
147
Radial systems employ time-delay overcurrent relays to reduce load interruptions. When a fault occurs, the nearest breaker opens first, while upstream breakers remain closed due to longer delay settings. This approach ensures minimal disruption to the rest of the system.
In a radial system with a fault downstream of the third breaker, ideally, only the third breaker will open, isolating the fault and interrupting the load connected beyond it. The second breaker has a longer delay setting,...
In a radial system with a fault downstream of the third breaker, ideally, only the third breaker will open, isolating the fault and interrupting the load connected beyond it. The second breaker has a longer delay setting,...
147
Absorption of Radiation
819
The rate of heat transfer by emitted radiation is described by the Stefan-Boltzmann law of radiation:
819


