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Prediction of dry ice mass for firefighting robot actuation

机译:消防机器人致动的干冰质预测

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The limitation in the performance of electric actuated firefighting robots in high-temperature fire environment has led to research on the alternative propulsion system for the mobility of firefighting robots in such environment. Capitalizing on the limitations of these electric actuators we suggested a gas-actuated propulsion system in our earlier study. The propulsion system is made up of a pneumatic motor as the actuator (for the robot) and carbon dioxide gas (self-generated from dry ice) as the power source. To satisfy the consumption requirement (9cfm) of the motor for efficient actuation of the robot in the fire environment, the volume of carbon dioxide gas, as well as the corresponding mass of the dry ice that will produce the required volume for powering and actuation of the robot, must be determined. This article, therefore, presents the computational analysis to predict the volumetric requirement and the dry ice mass sufficient to power a carbon dioxide gas propelled autonomous firefighting robot in a high-temperature environment. The governing equation of the sublimation of dry ice to carbon dioxide is established. An operating time of 2105.53s and operating pressure ranges from 137.9kPa to 482.65kPa were achieved following the consumption rate of the motor. Thus, 8.85m~3 is computed as the volume requirement of the CAFFR while the corresponding dry ice mass for the CAFFR actuation ranges from 21.67kg to 75.83kg depending on the operating pressure.
机译:高温消防环境中电动驱动的消防机器人性能的局限导致了在这种环境中消防机器人移动性的替代推进系统的研究。利用这些电动执行器的局限性我们在我们之前的研究中提出了一种气体驱动推进系统。推进系统由气动电动机组成,作为致动器(用于机器人)和作为电源的二氧化碳气体(从干冰自动产生)。为了满足电动机的消耗要求(9CFM),以便有效地在火环境中的机器人致动,二氧化碳气体的体积,以及将产生所需容量的干冰的相应质量,以供电和致动必须确定机器人。因此,本文呈现了计算分析以预测足以在高温环境中为二氧化碳气体推进的二氧化碳气体推进的多氧化碳气体的变量要求和干冰质量。建立了对二氧化碳的干冰升华的控制方程。在电机的消耗速率之后,实现了2105.53s和操作压力范围为137.9kpa至482.65kpa的操作时间。因此,将8.85m〜3计算为CaffR的体积要求,而Cafffr致动的相应干冰质量根据操作压力为21.67kg至75.83kg。

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