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秋子梨杂种后代叶片性状的遗传倾向研究 被引量:6
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作者 刘畅 张经常 +8 位作者 唐斯旸 黄烁 冯章丽 卜海东 顾广军 张武杰 于文全 刘延杰 叶万军 《中国果树》 北大核心 2019年第5期35-40,共6页
以秋子梨作亲本的19个组合534株杂交后代为试材,测定并调查分析叶面积、叶柄长度、叶片形状、叶基形状、叶尖形状、叶缘6个表观性状,研究了秋子梨杂种后代叶片遗传倾向。结果表明,秋子梨杂种后代叶片变异系数较大,叶面积均呈变小趋势,... 以秋子梨作亲本的19个组合534株杂交后代为试材,测定并调查分析叶面积、叶柄长度、叶片形状、叶基形状、叶尖形状、叶缘6个表观性状,研究了秋子梨杂种后代叶片遗传倾向。结果表明,秋子梨杂种后代叶片变异系数较大,叶面积均呈变小趋势,叶柄平均长度均超过母本,叶片形状的遗传相对稳定,叶尖形状以突尖、渐尖为主,叶基形状、叶缘不同组合差异较大。 展开更多
关键词 秋子梨 后代 叶片 早期选择
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Research on the Heat Transfer Characteristics of a Loop Heat Pipe Used as Mainline Heat Transfer Mode for Spacecraft 被引量:2
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作者 WANG Lu MIAO Jianyin +4 位作者 GONG Mingming ZHOU Qiangu liu changu ZHANG Hongxing FAN Hanlin 《Journal of Thermal Science》 SCIE EI CAS CSCD 2019年第4期736-744,共9页
An experimental research is conducted on the heat transfer characteristics of a loop heat pipe(LHP)used in the"mainline"heat transfer mode for spacecraft platform thermal control.The heat from multiple instr... An experimental research is conducted on the heat transfer characteristics of a loop heat pipe(LHP)used in the"mainline"heat transfer mode for spacecraft platform thermal control.The heat from multiple instruments scattered in different locations is collected by thermal control techniques such as axially grooved heat pipes and then transmitted to the radiant surface for dissipation through the LHP in an unified way.The research contents include the start-up characteristics,the operational stability characteristics,the operational blocking characteristics,the continuous blocking characteristics,the heat transfer capability,the thermal resistance,and the dynamic response characteristics under the change of the heat sink temperature.The results show that the higher the auxiliary starting power is,the easier it is to start the LHP;the higher the input power of the thermoelectric cooler is,the more beneficial it is to speed up the stabilization of the vapor-liquid interface in the condenser;the higher the blocking power,the shorter the blocking time of the LHP;the LHP can be operated stably within the heat sink temperature alteration process;the heat transfer ability is higher than 500 W with a systematic thermal resistance of 0.037℃/W. 展开更多
关键词 LHP mainline HEAT TRANSFER MODE HEAT TRANSFER characteristics
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