Product Design, Manufacturing & Innovation Resources

최신 간행물 – 열에너지 저장(TES) 관련 특허

열 에너지 저장

팁: 아래 선택 항목 외에도, 저희가 제공하는 두 개의 전체 데이터베이스를 검색하고 필터링할 수 있습니다.

> 무료 간행물 검색 도구 < 저자, 주제, 키워드, 날짜 또는 저널별로 검색.

> 무료 특허 검색 도구 < 유럽 ​​특허청의 영문 특허를 참조하십시오.

Thermal energy storage
열에너지 저장(TES)은 효율적인 열 관리 및 성능 최적화를 위해 다양한 메커니즘을 활용합니다. 제품 디자인 그리고 공학.

열에너지 저장(TES)은 세 가지 기본 메커니즘을 통해 열 또는 냉기를 포착합니다. 첫째, 물, 암석 또는 용융염과 같은 물질에 현열을 저장하는 방식, 둘째, 상변화 물질(PCM)의 상전이를 통해 잠열을 저장하는 방식, 셋째, 금속 수소화물, 제올라이트 또는 칼슘 루핑 시스템에서 가역 반응을 통해 열화학적으로 저장하는 방식입니다. 저장 용량, 충방전 사이클 효율, 엑서지 보존율 및 열 손실 관리는 일일 완충에서부터 계절 간 저장에 이르기까지 다양한 시간 규모에서 시스템 성능을 결정합니다.

통합 컨텍스트는 다음과 같습니다. 집광형 태양열 용융염 2탱크 구성, 지역난방망, 산업 폐열 회수 및 흡수식 냉방을 이용한 발전이 가능합니다. 충전층 재생기, 열층 탱크, 대수층 및 시추공 시스템은 설계 범위를 더욱 확장합니다.

이 페이지는 TES 기술 분야 전반에 걸쳐 최신 동료 검토 논문과 승인된 특허를 종합적으로 보여줍니다.

본 자료는 열에너지 저장(TES)에 관한 전 세계 영문 논문 및 특허를 엄선하여 정리한 것으로, 다양한 온라인 과학 저널에 게재된 자료들을 포함합니다. 주요 주제는 현열 저장, 잠열 저장, 열화학 저장, 층상 열 저장, 충전층 재생기, 용융염 저장, 2탱크 용융염 저장, 1탱크 열층 저장, 암반층 저장, 대수층 열에너지 저장, 시추공 열에너지 저장, 계절 열 저장, 지역난방 통합, 열전달 유체, 충전 및 방전 주기, 열층화, 엑서지 효율, 저장 용량 밀도, 열손실, 단열 성능, 태양열 통합, 랭킨 사이클 연동, 흡수식 냉각기 연동, 가역 열화학 반응, 금속 수소화물 저장, 제올라이트 흡착 저장, 칼슘 루핑, 캡슐화된 PCM 층, 열교환기 효율, 열 래칫팅 및 열에너지 저장입니다.

Performance analysis of a coal mine air supply system based on a multienergy complementary energy supply system

Published on 2026-06-03 by @OXFORD

Abstract: AbstractMine ventilation air heating in severely cold regions is commonly supplied by coal-fired boilers, leading to high energy use and environmental impacts. This study proposes a multienergy complementary energy supply system integrating air-source heat pumps (ASHPs), a cascade water-source heat pump, and thermal energy storage to ensure reliable shaft anti-freezing (3°C) and flexible operation under time-of-use electricity pricing. A dynamic TRNSYS model was developed for a coal mine in Wuh[...]


Our summary: This study presents a multienergy complementary energy supply system for mine ventilation heating in cold regions. A dynamic TRNSYS model was validated, showing a 7.57% error margin. The proposed system enhances performance in extreme cold, reducing costs and emissions significantly.

multienergy system, air-source heat pumps, thermal energy storage, coal mine ventilation

Publication

A cryogenic heat transfer fluid comprising cis-1 -chloro-3,3,3-trifluoropropene

Patent published on the 2026-05-28 in WO under Ref WO2026111880 by ILLINOIS TOOL WORKS INC [US] (Blair Paul M [us], Ye Zhihong [us], Dressel Alexander A [us])

Abstract: The present disclosure relates generally to azeotropic and non-azeotropic hydrofluoro olefin formulations, particularly formulations including cis-1-Chloro-3,3,3-trifluoropropene, also known as HFO-1233zd(Z), for cryogenic heat transfer.[...]


Our summary: The document discusses a cryogenic heat transfer fluid containing cis-1-chloro-3,3,3-trifluoropropene. It focuses on azeotropic and non-azeotropic hydrofluoro olefin formulations. The formulation is specifically designed for efficient cryogenic heat transfer applications.

cryogenic, heat transfer, fluid, HFO-1233zd(Z)

Patent

Electrochemical device, electrolytic cells and methods of operating them, and apparatuses comprising such cells

Patent published on the 2026-05-28 in WO under Ref WO2026109888 by CAVALIER MARCUS [GB] (Cavalier Marcus [gb])

Abstract: The present invention provides an electrochemical device (1b) for use in an electrochemical apparatus, such as in an electrolytic cell. The device (1b) comprises an electrode, a conduit and an interface layer. The electrode has a first part for immersion in an electrolyte, a second part for making electrical contact with a current-carrying conductor (30c), and a third part between the first and second parts (12, 14) for making thermal contact with a heat transfer fluid (HTF). The conduit is arra[...]


Our summary: The invention relates to an electrochemical device designed for electrolytic cells, featuring an electrode that optimizes thermal and electrical performance. It includes a conduit for heat transfer fluid, which enhances energy efficiency by reducing internal resistance and heat loss. The device is particularly effective for producing Group 1 and Group 2 metals through electrolysis.

electrochemical device, electrolytic cells, thermal conductivity, energy efficiency

Patent

Systems and methods for enhanced heat transfer loops

Patent published on the 2026-05-28 in US under Ref US20260146769 by SOLVCOR TECH LLC [US] (Novek Ethan [us])

Abstract: [0000] The present application pertains to processes and systems for enhanced heat transfer. In some embodiments a process is described for removing a portion of a chemical from a heat transfer loop comprising a heat transfer fluid. The process may comprise adding a solvent to the heat transfer fluid in the heat transfer loop; removing at least a portion of the heat transfer fluid from the heat transfer loop; separating said removed heat transfer fluid into a permeate and a retentate using a mem[...]


Our summary: The application describes processes for enhanced heat transfer. It involves adding a solvent to a heat transfer fluid and removing a portion of it. The removed fluid is separated into permeate and retentate using a membrane, with some permeate added back to the loop.

heat transfer, chemical removal, membrane separation, solvent addition

Patent

Method for the liquid immersion cooling of an electronic component

Patent published on the 2026-05-21 in WO under Ref WO2026104383 by PERSTORP AB [SE] (Farzaneh Amir [se], Olofsson Martin [se])

Abstract: The invention relates to a new and improved method for the liquid immersion cooling of an electronic component with improved sustainability and longevity of the ester fluids used therein as heat transfer fluids.[...]


Our summary: This invention presents a method for liquid immersion cooling of electronic components. It enhances the sustainability of ester fluids used as heat transfer fluids. The method aims to improve the longevity of these fluids in cooling applications.

liquid immersion cooling, electronic components, heat transfer fluids, sustainability

Patent

Particle-containing thermal barrier materials comprising microglass fibers and/or synthetic fibers

Patent published on the 2026-05-21 in US under Ref US20260139419 by HOLLINGSWORTH & VOSE CO [US] (Jiang Zhiping [us], Basavaraju Girisha [in])

Abstract: [0000] Thermal barrier materials are generally described. The thermal barrier materials described herein can have a number of advantages. For example, in some embodiments, a thermal barrier material has desirable thermal properties, such as low thermal conductivity and/or high thermal stability. As another example, in some embodiments, a thermal barrier material has desirable structural properties, such as having a high porosity, high pore tortuosity, and/or a low air permeability. In some embod[...]


Our summary: The described thermal barrier materials incorporate microglass and/or synthetic fibers. They exhibit low thermal conductivity and high thermal stability. Additionally, these materials possess enhanced structural properties, improving mechanical resiliency and thermal insulation performance.

thermal barrier materials, microglass fibers, thermal conductivity, mechanical resiliency

Patent

Heat transfer plate feature geometry

Patent published on the 2026-05-20 in GB under Ref GB2701900 by JAGUAR LAND ROVER LTD [GB] (Syed Mudhasir [gb], Alvaro Dopazo Cortegoso [gb], Mehaul Goswami [gb], Ellen Axcell [gb], Alan Robertson [gb], Roberto Nigra [gb], Ben Faulkner [gb])

Abstract: A vehicle battery assembly heat transfer plate comprising: two side portions (410, 430) each comprising an opening 416, 436 and at least one first channel 414, 434; a main portion 420 comprising at least one second channel 424, arranged between the two side portions 410, 430 so a heat transfer fluid flows from the first side portion opening to the second side portion opening via the at least one first channel and the second channel; wherein, for each first channel of each side portion, said firs[...]


Our summary: The vehicle battery assembly features a heat transfer plate with two side portions and a main portion. Each side portion includes openings and first channels for fluid flow, designed based on specific geometric parameters. The manufacturing method incorporates these design considerations for optimal performance.

heat transfer, vehicle battery, channel geometry, fluid dynamics

Patent

Development and Evaluation of an Integrated Phase Change Material Oriented Strand Board for Thermal Energy Storage in Building Walls

Published on 2026-02-02 by Layla Muhsan Hasan, Sanjeev Khanna @MDPI

Abstract: In this study, a phase change material (PCM) in the form of technical-grade octadecane and oriented strand boards (OSBs), which are boards made from wood strands, are used to develop a latent heat storage board with the aim of utilizing this material in building construction while lowering energy consumption. The incorporation of PCM into buildings is difficult for several reasons, including the organic phase material&amp;rsquo;s flammability and leakage during phase change. These obstacles [...]


Our summary: This study develops a shape-stabilized phase change material oriented strand board (SSPCM-OSB) for thermal energy storage in building walls. The integration of PCM into OSBs addresses challenges such as flammability and leakage. Extensive testing shows that SSPCM-OSB has lower heat flux and comparable flammability to conventional OSB.

Phase Change Material, Oriented Strand Board, Thermal Energy Storage, Building Construction

Publication

다룬 주제: 열에너지 저장, 현열 저장, 잠열 저장, 상변화 물질, 열화학적 저장, 금속 수소화물, 제올라이트, 칼슘 루핑, 충방전 사이클 효율, 엑서지 보존, 열손실 관리, 집중형 태양열 발전, 지역난방 네트워크, 산업 폐열 회수, 흡수식 냉각, 충전층 재생기, 열층 탱크, 대수층 시스템, 시추공 시스템, ISO 50001, ISO 14040, ASHRAE 901, ASTM E2876 및 IEC 61400-2.

사용된 용어집

Contract Manufacturer (CM): 아웃소싱 업체란 특정 설계 및 품질 사양에 따라 다른 회사를 대신하여 제품을 생산하는 회사를 말합니다. 이러한 방식을 통해 의뢰 기업은 마케팅 및 제품 개발과 같은 핵심 역량에 집중하고 제조 공정은 아웃소싱할 수 있습니다.

Phase Change Material (PCM): 상변화, 특히 고체와 액체 상태 사이의 상변화 과정에서 열에너지를 흡수하거나 방출하는 물질로, 건축 자재, 열 저장 시스템, 온도 감응 포장재 등 다양한 분야에서 온도 조절을 가능하게 합니다.

Thermal Energy Storage (TES): 열에너지를 포착하여 저장해 나중에 사용할 수 있도록 하는 시스템으로, 에너지 공급 및 수요 관리를 가능하게 하고 효율성을 향상시키며 재생 에너지원의 통합을 촉진합니다. 일반적인 방법으로는 현열, 잠열 및 열화학적 저장 방식이 있습니다.

역사적 맥락

2000
2003
2010
2013-09-24
2000
2002
2010
2013

(날짜를 알 수 없거나 관련이 없는 경우, 예를 들어 "유체역학"의 경우, 주목할 만한 등장 시기를 대략적으로 추정하여 제공합니다.)

고화질 이미지 및 다운로드는 등록된 회원에게만 100% 무료로 제공됩니다.

> 로그인 <