首页> 外文会议>ASME Conference on Smart Materials, Adaptive Structures and Intelligent Systems >DYNAMIC MODEL OF DIELECTRIC ELASTOMER DIAPHRAGM GENERATORS FOR OSCILLATING WATER COLUMN WAVE ENERGY CONVERTERS
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DYNAMIC MODEL OF DIELECTRIC ELASTOMER DIAPHRAGM GENERATORS FOR OSCILLATING WATER COLUMN WAVE ENERGY CONVERTERS

机译:用于振荡水柱波能量转换器的介电弹性体隔膜发电机的动态模型

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Dielectric Elastomers (DEs) are incompressible rubber-like solids whose electrical and structural responses are highly non-linear and strongly coupled. Thanks to their coupled electro-mechanical response, intrinsic lightness, easy-manufacturability and low-cost, DEs are perfectly suited for the development of novel solid-state polymeric energy conversion units with capacitive nature and high-voltage operation, which are more resilient, lightweight, integrated, economic and disposable than traditional generators based on conventional electromagnetic technology. Inflated Circular Diaphragm DE Generators (ICD-DEGs) are a special embodiment of polymeric transducer which can be used to convert pneumatic energy into usable electricity. Potential application of ICD-DEGs is as Power Take-Off (PTO) system for wave energy converters based on the Oscillating Water Column (OWC) principle. This paper presents a reduced, yet accurate, dynamic model for ICD-DEGs which features one degree of freedom and which accounts for DE visco-elasticity. The model is computationally simple and can be easily integrated into existing wave-to-wire models of OWCs to be used for fast analysis and real-time applications. For demonstration purposes, integration of the considered ICD-DEG model with a lumped-parameter hydrodynamic model of a realistic OWC is also presented along with a simulation case study.
机译:介电弹性体(DES)是不可压缩的橡胶状固体,其电气和结构响应是高度线性和强烈偶联的。由于其耦合的机电响应,本质亮度,易于制造性和低成本,DES非常适合开发具有电容性质和高压操作的新型固态聚合物能量转换单元,这更具弹性,基于传统电磁技术的传统发电机轻巧,集成,经济和一次性。膨胀的圆形隔膜De发电机(ICD-DEGS)是聚合物换能器的特殊实施例,其可用于将气动能量转化为可用的电力。 ICD-DEG的潜在应用是基于振荡水柱(OWC)原理的波能转换器的电力消耗(PTO)系统。本文为ICD-Degs提供了一种减少,但准确的动态模型,其具有一种自由度,并且占De Visco-Aliastionity的算法。该模型是计算上简单的,可以很容易地集成到现有的OWC的WEV线模型中,以用于快速分析和实时应用。为了示范目的,还与拟计案例研究一起介绍了具有逼真的IOMC的总参数流体动力模型的考虑ICD-DEG模型的集成。

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