Zobrazeno 1 - 10
of 16
pro vyhledávání: '"DH Dedy Haryanto"'
Publikováno v:
Atom Indonesia, Vol 44, Iss 3, Pp 123-130 (2018)
A better understanding on the phenomenon of natural circulation flow for cooling systems is necessary prior to improving the safety of nuclear power plant, not only in normal operation but also in accident conditions. One way to understand this pheno
Publikováno v:
Tri Dasa Mega, Vol 23, Iss 3, Pp 115-122 (2021)
The latest accident in Japan's nuclear power station became a valuable experience to start engaging passive cooling systems (PCS) more aggressively to improve safety aspects in nuclear power reactors being studied in Indonesia. This investigation is
Autor:
Andi Sofrany Ekariansyah, Rahayu Kusumastuti, DH Dedy Haryanto, Mukhsinun Hadi Kusuma, Susyadi, Surip Widodo, Hendro Tjahjono, Mulya Juarsa
Publikováno v:
AIP Conference Proceedings.
In order to develop the design of Reactor Cavity Cooling System (RCCS) from High Temperature Reactors (HTRs), Center for Nuclear Reactor Technology and Safety (PTKRN) has built an RCCS experimental facility aimed for supporting the development of met
Publikováno v:
Journal of Physics: Conference Series. 1772:012050
Experimental Power Reactor (RDE) uses a type of pebble bed fuel and helium gas as the primary coolant. In order to maintain the quality of helium as a coolant in accordance with the established requirements, the helium purification system is designed
Publikováno v:
Journal of Physics: Conference Series. 1772:012048
The Experimental Power Reactor as a fourth type of reactor currently being developed in Indonesia is high temperature gas cooled reactor which has a passive cooling system. This passive cooling system uses the principle of natural circulation through
Autor:
DH Dedy Haryanto
Publikováno v:
POROS. 16
Strand Test Facility has been constructed and will be used for passive reactor core cooling simulation research without using a pump or outside force, so that the movement of water flow occurs naturally. One important component of the FASSIP-02 is th
Publikováno v:
SIGMA EPSILON - Buletin Ilmiah Teknologi Keselamatan Reaktor Nuklir. 22
ESTIMASI PERUBAHAN KALOR SELAMA KENAIKAN TEMPERATUR AIR DI UNTAI PRE-FASSIP 02. Kecelakaan reaktor nuklir Fukushima terjadi dipicu oleh bencana alam gempa bumi dan Tsunami. Kerusakan yang terjadi pada teras reaktor akibat kegagalan sistem aktif selam
Autor:
Mulya Juarsa, Lutfi Fitria Ningsih, GN Giarno, DH Dedy Haryanto, Ahmad Rofiq Sofyan, Joko Prasetyo Witoko
Publikováno v:
SIGMA EPSILON - Buletin Ilmiah Teknologi Keselamatan Reaktor Nuklir. 22
ESTIMASI PERHITUNGAN KALOR DAN LAJU ALIRAN KALOR PADA UNTAI FASSIP02. Kecelakaan reaktor nuklir di Fukushima karena adanya gempa bumi yang menyebabkan tsunami sehingga mematikan sistem kelistrikan untuk pemompa air pendingin. Dari kejadian tersebut d
Autor:
Mulya Juarsa, GN Giarno, DH Dedy Haryanto, Gregorius Bambang Heru, Ignatius Djoko Irianto, Ahmad Fauzi
Publikováno v:
AME (Aplikasi Mekanika dan Energi): Jurnal Ilmiah Teknik Mesin. 5:6
Kecelakaan reaktor nuklir di Fukushima Daiichi Jepang pada 11 Maret 2011, menyebabkan dilakukannya penelitian ini di berbagai negara termasuk Indonesia yang sedang mengembangkan sistem keselamatan pasif dengan alat Untai FASSIP-01 Mod.1 di PTKRN-BATA
Publikováno v:
Journal of Physics: Conference Series. 1198:022047
The Experimental Power Reactor uses the type of pebble bed fuel and helium gas as its primary coolant. Therefore, to maintain and maintain the quality of helium as a coolant in accordance with predetermined requirements helium purification system is