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      Zr-based 합금을 이용한 hydride heat pump의 작동 특성에 관한 연구

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      https://www.riss.kr/link?id=A108030677

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      In order to improve the power of hydride heat pump, prototype heat pump was constructed using Zr<sub>0.95</sub>Ti<sub>0.08</sub>Cr<sub>0.9</sub>Fe<sub>1.1</sub> -Zr<sub>0.9</sub>Ti<sub>0.1</sub>Cr<sub>0.6</sub>Fe<sub>1.4</sub> which had very good hydrogenation properties. The power changed with operating parameter such as cycle time, air flow rate, and temperature of hot air was investigated. The power shows maximum value with cycle time. The power incerased with sir flow rate and temperature of hot air. The power of the heat pump was 65-72Kcal/kg-alloy.h under optimum operating condition, which was superior to that the system using LaNi<sub>6.7</sub>Al<sub>0.3</sub> -MmNi<sub>4.18</sub>Al<sub>0.68</sub>Fe<sub>0.2</sub> alloy pairs.
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      In order to improve the power of hydride heat pump, prototype heat pump was constructed using Zr<sub>0.95</sub>Ti<sub>0.08</sub>Cr<sub>0.9</sub>Fe<sub>1.1</sub> -Zr<sub>0.9</sub>Ti<sub>...

      In order to improve the power of hydride heat pump, prototype heat pump was constructed using Zr<sub>0.95</sub>Ti<sub>0.08</sub>Cr<sub>0.9</sub>Fe<sub>1.1</sub> -Zr<sub>0.9</sub>Ti<sub>0.1</sub>Cr<sub>0.6</sub>Fe<sub>1.4</sub> which had very good hydrogenation properties. The power changed with operating parameter such as cycle time, air flow rate, and temperature of hot air was investigated. The power shows maximum value with cycle time. The power incerased with sir flow rate and temperature of hot air. The power of the heat pump was 65-72Kcal/kg-alloy.h under optimum operating condition, which was superior to that the system using LaNi<sub>6.7</sub>Al<sub>0.3</sub> -MmNi<sub>4.18</sub>Al<sub>0.68</sub>Fe<sub>0.2</sub> alloy pairs.

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