東京工業大学 · Engineering
Ammar H. Elsheikh 교수의 연구실은 태양열 기반 탈염 및 에너지 효율 향상 기술에 중점을 두고 있습니다. 주요 연구 분야로는 태양수증기식 증류기의 수율 향상, 에너지 저장 재료의 적용, 나노코팅을 통한 흡수율 향상, 그리고 인공지능 기반 예측 모델 개발이 포함됩니다. 특히, 태양광 패널과 연계된 전기 히터, 유리 구슬, 화강암 등 다양한 에너지 저장 물질을 활용한 실험적 성능 분석이 진행되고 있으며, LSTM 기반 최적화 모델을 통한 수증기 수확 예측도 연구 중입니다. 이는 지속 가능한 물 공급과 재생 가능 에너지 통합 기술의 실현을 목표로 합니다.
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
Tubular solar still is a simple light-weight desalination unit with a large condensing surface compared with other types of solar stills. Regrettably, it suffers from the low water yield like other types of solar stills. In this work, two main research themes are studied. The first is enhancing the water yield and thermal efficiency of tubular solar still by providing the absorber plate with an electrical heater powered by a solar photovoltaic panel. The performance of the modified solar still i
Wood-plastic composites (WPCs) have shown promising domestic and industrial applications. Both virgin and waste materials have been used as matrix and reinforcement materials in WPCs manufacturing which enhances the eco-efficiency of WPCs products. This study presents a comprehensive review on the WPCs manufacturing techniques including pre-processing of the composite ingredients and post-processing of the WPCs products. Three main types of pre-processing techniques have been discussed; chemical
Researchers have attempted different Energy storage materials (ESM) in solar stills (SS) to improve distillate yield. In this experimental work, an attempt was made to increase the distillate yield & efficiency of SS, using good absorbing and heat transfer capacity of ESM. A comparison was made between a conventional solar still (CSS) and a solar still with energy storage materials (SSWESM) in this experiment. Different energy storage materials like black color glass ball (BCGB), black granite (
Bistable morphing composites have shown promising applications in energy harvesting due to their capabilities to change their shape and maintain two different states without any external loading. In this review article, the application of these composites in energy harvesting is discussed. Actuating techniques used to change the shape of a composite structure from one state to another is discussed. Mathematical modeling of the dynamic behavior of these composite structures is explained. Finally,