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Dive into the research topics where Rahmi Küçer is active.

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Featured researches published by Rahmi Küçer.


Archive | 2018

Double-layer neutron shield design as neutron shielding application

Demet Sarıyer; Rahmi Küçer

The shield design in particle accelerators and other high energy facilities are mainly connected to the high-energy neutrons. The deep penetration of neutrons through massive shield has become a very serious problem. For shielding to be efficient, most of these neutrons should be confined to the shielding volume. If the interior space will become limited, the sufficient thickness of multilayer shield must be used. Concrete and iron are widely used as a multilayer shield material. Two layers shield material was selected to guarantee radiation safety outside of the shield against neutrons generated in the interaction of the different proton energies. One of them was one meter of concrete, the other was iron-contained material (FeB, Fe2B and stainless-steel) to be determined shield thicknesses. FLUKA Monte Carlo code was used for shield design geometry and required neutron dose distributions. The resulting two layered shields are shown better performance than single used concrete, thus the shield design could leave more space in the interior shielded areas.The shield design in particle accelerators and other high energy facilities are mainly connected to the high-energy neutrons. The deep penetration of neutrons through massive shield has become a very serious problem. For shielding to be efficient, most of these neutrons should be confined to the shielding volume. If the interior space will become limited, the sufficient thickness of multilayer shield must be used. Concrete and iron are widely used as a multilayer shield material. Two layers shield material was selected to guarantee radiation safety outside of the shield against neutrons generated in the interaction of the different proton energies. One of them was one meter of concrete, the other was iron-contained material (FeB, Fe2B and stainless-steel) to be determined shield thicknesses. FLUKA Monte Carlo code was used for shield design geometry and required neutron dose distributions. The resulting two layered shields are shown better performance than single used concrete, thus the shield design coul...


Archive | 2018

Development of neutron shielding concrete containing iron content materials

Demet Sarıyer; Rahmi Küçer

Concrete is one of the most important construction materials which widely used as a neutron shielding. Neutron shield is obtained of interaction with matter depends on neutron energy and the density of the shielding material. Shielding properties of concrete could be improved by changing its composition and density. High density materials such as iron or high atomic number elements are added to concrete to increase the radiation resistance property. In this study, shielding properties of concrete were investigated by adding iron, FeB, Fe2B, stainless - steel at different ratios into concrete. Neutron dose distributions and shield design was obtained by using FLUKA Monte Carlo code. The determined shield thicknesses vary depending on the densities of the mixture formed by the additional material and ratio. It is seen that a combination of iron rich materials is enhanced the neutron shielding of capabilities of concrete. Also, the thicknesses of shield are reduced.Concrete is one of the most important construction materials which widely used as a neutron shielding. Neutron shield is obtained of interaction with matter depends on neutron energy and the density of the shielding material. Shielding properties of concrete could be improved by changing its composition and density. High density materials such as iron or high atomic number elements are added to concrete to increase the radiation resistance property. In this study, shielding properties of concrete were investigated by adding iron, FeB, Fe2B, stainless - steel at different ratios into concrete. Neutron dose distributions and shield design was obtained by using FLUKA Monte Carlo code. The determined shield thicknesses vary depending on the densities of the mixture formed by the additional material and ratio. It is seen that a combination of iron rich materials is enhanced the neutron shielding of capabilities of concrete. Also, the thicknesses of shield are reduced.


Procedia - Social and Behavioral Sciences | 2015

Neutron Shielding Properties of Concretes Containing Boron Carbide and Ferro – Boron☆

D. Sarıyer; Rahmi Küçer; Nermin Küçer


Acta Physica Polonica A | 2015

Neutron Shielding Properties of Concrete and Ferro-Boron

D. Sarıyer; Rahmi Küçer; Nermin Küçer


Journal of the Korean Physical Society | 2013

Monte carlo computation of the energy deposited by protons in water, bone and adipose

Rahmi Küçer; Nermin Küçer; Görkem Türemen


Süleyman Demirel Üniversitesi Fen Edebiyat Fakültesi Fen Dergisi | 2015

Farklı Yoğunluktaki Malzemelerin Nötron Zayıflatma Özelliklerinin İncelenmesi

Demet Sarıyer; Rahmi Küçer


Süleyman Demirel Üniversitesi Fen Edebiyat Fakültesi Fen Dergisi | 2014

100-250 MeV Enerjili Proton Hızlandırıcıları için Beton ve Toprak Zırh Kalınlıklarının FLUKA Monte Carlo Kodu ile Belirlenmesi

Demet Sarıyer; Rahmi Küçer


Süleyman Demirel Üniversitesi Fen Edebiyat Fakültesi Fen Dergisi | 2014

Proton Hızlandırıcılarında Kontrollü Alanlar için Gerekli Olan Zırh Kalınlıklarının FLUKA Monte Carlo Kodu ile Belirlenmesi

Demet Sarıyer; Rahmi Küçer


Süleyman Demirel Üniversitesi Fen Edebiyat Fakültesi Fen Dergisi | 2013

Proton Hızlandırıcılarında Farklı Maddeler İçin Zırh Kalınlıklarının Analitik Yöntemle Belirlenmesi

Demet Sarıyer; Rahmi Küçer


Süleyman Demirel Üniversitesi Fen Edebiyat Fakültesi Fen Dergisi | 2012

Hizlandiricilardan Yayinlanan Çati Radyasyonunun Uzakliğa Bağli Doz Değerleri

Rahmi Küçer; Demet Sarıyer; Nermin Küçer

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D. Sarıyer

Celal Bayar University

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