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기록

MOLDED MAT WITH INTEGRATED FLUID FLOW CHANNELS AND MANIFOLD SYSTEM FOR ENERGY TRANSFER

발명심사 중
5조회수
20청구항 · 2 독립항
§ Ⅰ

개요

발명자

Barak Cilluffo; Keith Lemmer; Theodore Thompson; David Pudwill

IPC 분류

F3G 7/8F3B 17/H2K 7/18

CPC 분류

F3G7/85F3B17/5H2K7/1823F5B2260/421

The present disclosure pertains to a device for capturing and converting kinetic energy into electrical energy. The device comprises a unitary molded mat body that includes a first plurality of parallel primary fluid flow channels integrally formed within its structure, where adjacent channels share dividing walls. These channels are arranged in a uniform, repeating pattern across the width of the mat. A first edge manifold channel extends along one edge of the mat, while a second edge manifold channel extends along the opposite edge. Each of the primary fluid flow channels is in fluid communication with both edge manifold channels, which are configured to connect to a pressure storage system. This configuration ensures efficient energy transfer, with fluid flow facilitated by the interconnected manifold and primary channels. The device's unitary construction optimizes durability and performance in converting kinetic energy into electrical energy.

원문 (중국어)

The present disclosure pertains to a device for capturing and converting kinetic energy into electrical energy. The device comprises a unitary molded mat body that includes a first plurality of parallel primary fluid flow channels integrally formed within its structure, where adjacent channels share dividing walls. These channels are arranged in a uniform, repeating pattern across the width of the mat. A first edge manifold channel extends along one edge of the mat, while a second edge manifold channel extends along the opposite edge. Each of the primary fluid flow channels is in fluid communication with both edge manifold channels, which are configured to connect to a pressure storage system. This configuration ensures efficient energy transfer, with fluid flow facilitated by the interconnected manifold and primary channels. The device's unitary construction optimizes durability and performance in converting kinetic energy into electrical energy.