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利用人体运动传感器实现智能风扇的算法与设计
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作者 周亚东 葛红剑 +2 位作者 王军 周樱 邓惠丹 《电子测量技术》 2020年第21期45-50,共6页
现有风扇不管人体是否需要,都按照预先设定的模式运行,这使得使用者非常被动。利用单片机将人体运动传感器与温湿度传感器相结合,系统先设置26℃、26.5℃、27.3℃三种温度区间,不同温度区间与相应的风速对应,同时风扇自动校正网络时间,... 现有风扇不管人体是否需要,都按照预先设定的模式运行,这使得使用者非常被动。利用单片机将人体运动传感器与温湿度传感器相结合,系统先设置26℃、26.5℃、27.3℃三种温度区间,不同温度区间与相应的风速对应,同时风扇自动校正网络时间,适时环境温度与档位相匹配,转速将根据时间划分及设置的温度区间来进行转动。再通过监测正常人在舒适环境中睡眠时身体各部位的几种体动情况,归纳出人体在冷热环境下体动时间短、周期短的特征。当使用者使用夜间智能模式后,系统自动监测周围环境温湿度情况,结合人体体动特征判断此时人体体动是否是由于冷热引起的,再根据所设温度区间及对应的时间自动向上一级或向下一级档位匹配,直到达到人体真正对风力的需求。实现真正意义上的根据人体需求的智能控制风扇,具有较高的应用意义。 展开更多
关键词 风扇 传感器 体动建模 温度区间 NREM睡眠 运行
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Modeling of fluid-induced vibrations and identification of hydrodynamic forces on flow control valves 被引量:3
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作者 Samad Mehrzad Ilgar Javanshir +1 位作者 Ahmad Rahbar Ranji Seyyed Hadi Taheri 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第7期2596-2603,共8页
Dynamics and vibration of control valves under flow-induced vibration are analyzed. Hydrodynamic load characteristics and structural response under flow-induced vibration are mainly influenced by inertia, damping, ela... Dynamics and vibration of control valves under flow-induced vibration are analyzed. Hydrodynamic load characteristics and structural response under flow-induced vibration are mainly influenced by inertia, damping, elastic, geometric characteristics and hydraulic parameters. The purpose of this work is to investigate the dynamic behavior of control valves in the response to self-excited fluid flow. An analytical and numerical method is developed to simulate the dynamic and vibrational behavior of sliding dam valves, in response to flow excitation. In order to demonstrate the effectiveness of proposed model, the simulation results are validated with experimental ones. Finally, to achieve the optimal valve geometry, numerical results for various shapes of valves are compared. Rounded valve with the least amount of flow turbulence obtains lower fluctuations and vibration amplitude compared with the flat and steep valves. Simulation results demonstrate that with the optimal design requirements of valves, vibration amplitude can be reduced by an average to 30%. 展开更多
关键词 flow-induced force hydrodynamic force finite element method(FEM) valve design fluid-structure interaction vibration
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Mathematical modeling and analysis of gas torque in twin-rotor piston engine
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作者 邓豪 潘存云 +1 位作者 徐小军 张湘 《Journal of Central South University》 SCIE EI CAS 2013年第12期3536-3544,共9页
The gas torque in a twin-rotor piston engine(TRPE) was modeled using adiabatic approximation with instantaneous combustion. The first prototype of TRPE was manufactured. This prototype is intended for high power densi... The gas torque in a twin-rotor piston engine(TRPE) was modeled using adiabatic approximation with instantaneous combustion. The first prototype of TRPE was manufactured. This prototype is intended for high power density engines and can produce 36 power strokes per shaft revolution. Compared with the conventional engines, the vector sum of combustion gas forces acting on each rotor piston in TRPE is a pure torque, and the combustion gas rotates the rotors while compresses the gas in the compression chamber at the same time. Mathematical modeling of gas force transmission was built. Expression for gas torque on each rotor was derived. Different variation patterns of the volume change of working chamber were introduced. The analytical and numerical results is presented to demonstrate the main characteristics of gas torque. The results show that the value of gas torque in TRPE falls to be less than zero before the combustion phase is finished; the time for one stroke is 30° in terms of the rotating angle of the output shaft; gas torque in one complete revolution of the output shaft has a period which is equal to 60° and it is necessary to put off the moment when gas torque becomes zero in order to export the maximum energy. 展开更多
关键词 ROTOR piston engine gas torque power density adiabatic process
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