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PIPE PARALLEL TYPE SNOW MELTING DEVICE
PROBLEM TO BE SOLVED: To provide a pipe parallel type snow melting device capable of preventing so-called bridge phenomenon and snow melting efficiently using thermal energy.SOLUTION: A plurality of pipes 40 installed in parallel with the steam supply port 20 and the steam discharge port 30, and a supply port side pipe plug member 60 having a passage for supplying steam substantially at the center is installed in the steam supply port 20; the steam discharge port 30 is provided with the pipe parallel type snow melting device 10 in which the discharge port side pipe plug member 70 provided with a passage for discharging steam substantially at the center thereof.SELECTED DRAWING: Figure 1
【課題】いわゆるブリッジ現象を防止して熱エネルギーを効率的に使用して融雪することができるパイプ管並列型融雪装置を提供する。【解決手段】水蒸気供給口20と水蒸気排出口30を備えた並列に設置した複数のパイプ管40からなり、水蒸気供給口20には、略中心に水蒸気を供給するための通路を備えた供給口側パイプ栓部材60が設置され、水蒸気排出口30には、略中心に水蒸気を排出するための通路を備えた排出口側パイプ栓部材70が設置されているパイプ管並列型融雪装置10とした。【選択図】図1
PIPE PARALLEL TYPE SNOW MELTING DEVICE
PROBLEM TO BE SOLVED: To provide a pipe parallel type snow melting device capable of preventing so-called bridge phenomenon and snow melting efficiently using thermal energy.SOLUTION: A plurality of pipes 40 installed in parallel with the steam supply port 20 and the steam discharge port 30, and a supply port side pipe plug member 60 having a passage for supplying steam substantially at the center is installed in the steam supply port 20; the steam discharge port 30 is provided with the pipe parallel type snow melting device 10 in which the discharge port side pipe plug member 70 provided with a passage for discharging steam substantially at the center thereof.SELECTED DRAWING: Figure 1
【課題】いわゆるブリッジ現象を防止して熱エネルギーを効率的に使用して融雪することができるパイプ管並列型融雪装置を提供する。【解決手段】水蒸気供給口20と水蒸気排出口30を備えた並列に設置した複数のパイプ管40からなり、水蒸気供給口20には、略中心に水蒸気を供給するための通路を備えた供給口側パイプ栓部材60が設置され、水蒸気排出口30には、略中心に水蒸気を排出するための通路を備えた排出口側パイプ栓部材70が設置されているパイプ管並列型融雪装置10とした。【選択図】図1
PIPE PARALLEL TYPE SNOW MELTING DEVICE
パイプ管並列型融雪装置
MORISHITA KAZUYA (author) / MITSUI TOSHIHISA (author) / TANAKA HIDEKAZU (author)
2018-05-24
Patent
Electronic Resource
Japanese
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