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CONSTRUCTION METHOD FOR CONCRETE EMBANKMENT
To reduce the temperature gradient of concrete.SOLUTION: In a construction method for a concrete embankment 100, a first heat transfer medium flow pipe 10 is placed along a discharge pipe 2a that defines a concrete placement area; concrete is placed in the concrete placement area so as to cover the circumference of the first heat transfer medium flow pipe 10; after placing the concrete, a heating medium is circulated through the first heat transfer medium flow pipe 10.SELECTED DRAWING: Figure 3
【課題】コンクリートの温度勾配を小さくする。【解決手段】コンクリート堤体100の構築方法は、コンクリート打設領域を画定する放流管2aに沿って第1熱伝達媒体流通管10を配置し、第1熱伝達媒体流通管10の周囲を覆うようにコンクリート打設領域にコンクリートを打設し、コンクリートの打設後に第1熱伝達媒体流通管10に加温媒体を流通させる。【選択図】図3
CONSTRUCTION METHOD FOR CONCRETE EMBANKMENT
To reduce the temperature gradient of concrete.SOLUTION: In a construction method for a concrete embankment 100, a first heat transfer medium flow pipe 10 is placed along a discharge pipe 2a that defines a concrete placement area; concrete is placed in the concrete placement area so as to cover the circumference of the first heat transfer medium flow pipe 10; after placing the concrete, a heating medium is circulated through the first heat transfer medium flow pipe 10.SELECTED DRAWING: Figure 3
【課題】コンクリートの温度勾配を小さくする。【解決手段】コンクリート堤体100の構築方法は、コンクリート打設領域を画定する放流管2aに沿って第1熱伝達媒体流通管10を配置し、第1熱伝達媒体流通管10の周囲を覆うようにコンクリート打設領域にコンクリートを打設し、コンクリートの打設後に第1熱伝達媒体流通管10に加温媒体を流通させる。【選択図】図3
CONSTRUCTION METHOD FOR CONCRETE EMBANKMENT
コンクリート堤体の構築方法
OGUCHI YOSHITAKE (author) / OKAYAMA MAKOTO (author) / MASUMURA KOICHI (author) / KANETO TAKASHI (author) / SAKAI GORO (author) / KOBAYASHI KIYOSHI (author) / HAYASHI KENJI (author) / OUCHI HITOSHI (author)
2022-06-14
Patent
Electronic Resource
Japanese
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