第17回
島根原子力発電所における電子版事前消火計画(PRISM)の導入
著者:
岩崎 晃,池田 浩巳,村上 達明,(中国電力)
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The purpose of implementing the Pre-Fire Plan with PRISM software is to assist firefighters to respond to fires properly and quickly by defining firefighting strategies (Pre-Fire Plan) including access routes for firefighters and location of fire-fighting equipment in advance. Fire could be a complex emergency causing unexpected failures and damages and it is extremely difficult to predict the necessary fire response. PRISM Pre-Fire Plan Software can display the fire-fighting strategy of each area of the pl...
英字タイトル:
Implementation of electronic pre-fire plan (PRISM) at Shimane Nuclear Power Station
第2回
詳細乱流解析手法を用いたT字配管合流部の温度揺らぎ現象評価
著者:
堺 紀夫,Norio SAKAI,池田 浩,Hiroshi IKEDA,清水 武司,Takeshi SHIMIZU,瀧川 幸夫,Yukio TAKIGAWA,大島 伸行,Nobuyuki OHSHIMA
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Abstract: Temperature fluctuations. arising when fluids with different temperature are mixed. cause high cycle thermal fatigue to materials of plant components. Thus analyzing the characterist ics of these temperature fluctuations is important for plant maintenance. In this study, a large eddy simulation, one of the detailed turbulence simulation methods. was applied to the analysi s of two typical flow patterns with temperature fluctuations in a tee pipe. Results were compared with the experimental data. ...
英字タイトル:
Evaluation of Fluid Temperature Fluctuations in a Tee Pipe by Detailed Turbulence Simulations
第3回
閉塞枝配管における熱成層化現象解析
著者:
池田 浩,Hiroshi IKEDA,中田 耕太郎,Kotaro NAKADA,室伏 正,Tadashi MUROFUSHI
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The cavity flow is driven by the main flow where the branched flow from main pipe in plants is stagnant. Heat of main flow is transported to the branch pipe and the thermal stratification is formed in the branch pipe. It is necessary that the locatio n of thermal stratification can be predicted in order to estimate the thermal fatigue of pipe wall. This study predicts the location of thermal stratification using numerical simulation, and showed the prediction has good agreement with experiments....
英字タイトル:
Numerical Simulation of Thermal Stratification in a Branch Pipe