Heat accumulator radial penetration density optimized design method

The invention provides a heat accumulator radial penetration density optimized design method which comprises a heat accumulator. The evaporation end of a heat pipe is arranged in the heat accumulator.The heat accumulator is arranged in a heat source. The condensation end of the heat pipe is arranged...

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Hauptverfasser: LI HONG, WEI SHANSHAN, LIU JIANWEN, LIU ZONGJIE, MIAO QINGQING, ZHU GUOLIANG, ZHANG XUEYUAN, LI JING, LENG XUELI, XU YONGPING, CHEN SHUXIANG, XUAN SHIPENG, QIU YAN, LYU WEN, ZHOU XIANGYU, LI YIZHEN, TIAN MAOCHENG, MA JUNDI, FAN XIANGCHEN, LI YAN, ZHANG GUANMIN, WANG YONGBIN
Format: Patent
Sprache:chi ; eng
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Zusammenfassung:The invention provides a heat accumulator radial penetration density optimized design method which comprises a heat accumulator. The evaporation end of a heat pipe is arranged in the heat accumulator.The heat accumulator is arranged in a heat source. The condensation end of the heat pipe is arranged in a container above the evaporation end. The evaporation end comprises a plurality of evaporationpipes extending downwards. Copper pipes are arranged between the adjacent evaporation pipes. The copper pipes are designed according to the rule that the distance between the copper pipes and the center of the heat accumulator is S, then the number of the copper pipes is designed as G(S), and G'(S)>0. According to the method, through optimized design of the number of the copper pipes, the effectthat liquid can be heated evenly as soon as possible in the heating process can be guaranteed. 本发明提供了一种蓄热器径向贯通密度优化设计的方法,包括蓄热器,热管的蒸发端设置在蓄热器中,所述蓄热器设置在热源中,热管的冷凝端设置在蒸发端上部的容器,所述蒸发端包括多根向下延伸的蒸发管,所述相邻蒸发管之间设置管铜管,管铜管采取如下方式进行设计:距离蓄热器的中心的距