首页> 外文会议>ASME/Bath Symposium on Fluid Power and Motion Control >MODELING OF A PNEUMATIC STRAIN ENERGY ACCUMULATOR FOR VARIABLE SYSTEM CONFIGURATIONS WITH QUANTIFIED PROJECTIONS OF ENERGY EFFICIENCY INCREASES
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MODELING OF A PNEUMATIC STRAIN ENERGY ACCUMULATOR FOR VARIABLE SYSTEM CONFIGURATIONS WITH QUANTIFIED PROJECTIONS OF ENERGY EFFICIENCY INCREASES

机译:用于可变系统配置的气动应变能量蓄能器的建模,其能效具有量化投影增加

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The pneumatic Strain Energy Accumulator (pSEA), a device that stores the energy of compressed air in the strain energy of a rubber bladder, has recently undergone proof of concept testing showing promise in compact energy storage applications. An adequate model of the pneumatic strain energy accumulator on a systems level is needed to explore the design space in order to optimize the device. The recent success of the pneumatic strain energy accumulator on an Ankle Foot Orthosis (AFO) medical assist device serves as motivation for such a systems level model. In laboratory experiments the AFO medical assist device has reported from 25-75% energy efficiency improvement when using the pSEA depending on the various parameters of the medical device. Early measurements and calculations for a single stage independent process pSEA indicated a theoretical maximum energy efficiency increase of 33% which lies between the energy efficiency values realized on the AFO device using a single stage coupled process pSEA. A study of a lumped parameter model using measured Pressure-Volume curve data as a model input will be used to quantify energy efficiency increases for a variety of system configurations. Once complete, a set of measurement techniques and tools to successfully realize the strain energy accumulator will be ready to use in quantifying its energy savings.
机译:气动应变能量蓄能器(PSEA),将压缩空气能量的能量存储在橡胶囊的应变能量,最近经历了概念测试的证据,显示了紧凑型能量存储应用中的承诺。需要在系统水平上进行充气应变能量蓄能器的足够模型来探索设计空间以优化设备。最近气动应变能量蓄能器在脚踝脚矫形器(AFO)医疗辅助装置上的成功用作这种系统级模型的动机。在实验室实验中,AFO医疗辅助装置报告了25-75%的能效改善,根据医疗装置的各种参数使用PSEA。单级独立过程PSEA的早期测量和计算表示,理论最大能效增加33%,其使用单级耦合过程PSEA在AFO装置上实现的能效值之间。使用测量的压力量曲线数据作为模型输入的集总参数模型的研究将用于量化各种系统配置的能效增加。一旦完成,一套成功实现应变能量蓄能器的测量技术和工具将准备好用于量化其节能。

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