TK124 2003032090太阳能热动力发电系统吸热器腔体辐射计算=Thermalradiation calculation in heat receiver cavity of SDPS[刊,中]/侯欣宾(北京航空航天大学飞行器与应用力学系.北京(100083)),袁修干∥宇航学报.—2002,23(2).—15-18...TK124 2003032090太阳能热动力发电系统吸热器腔体辐射计算=Thermalradiation calculation in heat receiver cavity of SDPS[刊,中]/侯欣宾(北京航空航天大学飞行器与应用力学系.北京(100083)),袁修干∥宇航学报.—2002,23(2).—15-18建立了太阳能热动力发电系统吸热器腔体辐射模型,结合换热器的传热模型计算了吸热器的传热过程。得到了吸热器热损失,换热管最大温度,工质出口温度等结果,并进行了比较、分析。展开更多
With the development of manned spaceflight, more and more researches are involved in the area of gravitation physiology. When astronauts are exposed to microgravity, a series of special physiological or pathological c...With the development of manned spaceflight, more and more researches are involved in the area of gravitation physiology. When astronauts are exposed to microgravity, a series of special physiological or pathological changes will occur, which will start self-regulation mechanisms to reduce abnormalities and help the organism to better adapt to microgravity. However, these adaptive changes may also induce degradation or damage to physiological functions. This paper summarizes the physiological effects of microgravity on the human body from the aspects of skeletal and mineral metabolism, muscle structure and function, vestibular functions, cardiovascular function and pulmonary function, as well as expounds some commonly used ground-based space analogies. The paper will provide a reference for further study on the physiological effects of microgravity.展开更多
文摘TK124 2003032090太阳能热动力发电系统吸热器腔体辐射计算=Thermalradiation calculation in heat receiver cavity of SDPS[刊,中]/侯欣宾(北京航空航天大学飞行器与应用力学系.北京(100083)),袁修干∥宇航学报.—2002,23(2).—15-18建立了太阳能热动力发电系统吸热器腔体辐射模型,结合换热器的传热模型计算了吸热器的传热过程。得到了吸热器热损失,换热管最大温度,工质出口温度等结果,并进行了比较、分析。
文摘With the development of manned spaceflight, more and more researches are involved in the area of gravitation physiology. When astronauts are exposed to microgravity, a series of special physiological or pathological changes will occur, which will start self-regulation mechanisms to reduce abnormalities and help the organism to better adapt to microgravity. However, these adaptive changes may also induce degradation or damage to physiological functions. This paper summarizes the physiological effects of microgravity on the human body from the aspects of skeletal and mineral metabolism, muscle structure and function, vestibular functions, cardiovascular function and pulmonary function, as well as expounds some commonly used ground-based space analogies. The paper will provide a reference for further study on the physiological effects of microgravity.