Zobrazeno 1 - 10
of 76
pro vyhledávání: '"Fletcher Miller"'
Autor:
Daniel S. Codd, Matthew D. Escarra, Brian Riggs, Kazi Islam, Yaping Vera Ji, John Robertson, Christopher Spitler, Jacob Platz, Naman Gupta, Fletcher Miller
Publikováno v:
Cell Reports Physical Science, Vol 1, Iss 8, Pp 100135- (2020)
Summary: Side-by-side installations of flat plate photovoltaics and parabolic trough collectors consume significant space and have high system losses; by using an all-in-one, spectrum-splitting hybrid receiver, electricity and high-temperature heat c
Externí odkaz:
https://doaj.org/article/6be871ef8c7f4c95ab8fcbd2f8a626ba
Publikováno v:
Combustion and Flame. 219:57-69
The Michigan State University Narrow Channel Apparatus (MSU-NCA) was used to investigate opposed flow flame spread over samples of thermally thick Polymethylmethacrylate (PMMA). Three different fuel thicknesses were tested for mean airflow velocities
Autor:
Christopher Spitler, Daniel S. Codd, Naman Gupta, Matthew D. Escarra, Yaping Vera Ji, Dimitri D. Krut, J.H. Ermer, John Robertson, Fletcher Miller, Brian C. Riggs, Kazi Islam
Publikováno v:
Renewable Energy. 139:806-814
Hybrid photovoltaic-thermal systems can decouple IR light from visible light, allowing it to be collected separately by spectrum-optimized mechanisms for increased total efficiency. To demonstrate this, we have designed and prototyped a transmissive
Autor:
Matthew D. Escarra, Christopher Spitler, John Robertson, Kazi Islam, Daniel S. Codd, Brian C. Riggs, Fletcher Miller, Jacob K. Platz, Naman Gupta, Yaping Vera Ji
Publikováno v:
Cell Reports Physical Science, Vol 1, Iss 8, Pp 100135-(2020)
Summary: Side-by-side installations of flat plate photovoltaics and parabolic trough collectors consume significant space and have high system losses; by using an all-in-one, spectrum-splitting hybrid receiver, electricity and high-temperature heat c
Publikováno v:
Combustion and Flame. 193:133-144
This study characterizes thin fuel opposed flow flame spread in simulated microgravity for a range of gap heights and airflow velocities in a Narrow Channel Apparatus (NCA). One objective was to estimate gap heights that suppress buoyancy without pro
Publikováno v:
Proceedings of the Combustion Institute. 36:2963-2969
The three regimes of opposed-flow flame spread – radiative, thermal, and kinetic regimes – are well known. For thermally thin fuels, the spread rate is independent of opposing flow velocity in the thermal regime. It decreases with an increase in
Autor:
Fletcher Miller, James Mohr
Publikováno v:
AIAA Scitech 2019 Forum.
Autor:
DB. Diego Bellavia, CC. Beladan, D. Peluso, A. Jobbe Duval, P. Monney, L. Molina Ferragut, N. Sawada, R. Enache, E. Popa, R. Jurcut, R. Badea, A. Calin, M. Rosca, P. Platon, IM. Coman, BA. Popescu, C. Ginghina, T. Kawata, M. Daimon, K. Kimura, T. Nakao, S. Chiang, K. Mahara, T. Okubo, Y. Yatomi, I. Komuro, D. Uhl, M. Gomez, M. Ble, A. Mas-Stachurska, M. Cladellas, C. Enjuanes, P. Moliner, J. Marti, J. Comin, G. Ehret, V. Crisinel, S. Reverdin, L. Conti, F. Mach, X. Jeanrenaud, M. Bochud, H. Mueller, O. Thebault, M. Poilane, N. Piriou, P. Jaafar, K. Warin-Fresse, JM. Serfaty, C. Cueff, T. Le Tourneau, A. Kovacs, E. Surkova, D. Muraru, M. Perazzolo Marra, S. Iliceto, LP. Badano, L. Predescu, AD. Mateescu, L. Egher, O. Inta, AI. Attilio Iacovoni, SD. Sonia Dell'oglio, GR. Giuseppe Romano, MS. Michele Senni, CM. Chiara Mina', GD. Gabriele Di Gesaro, MP. Michele Pilato, FAM Fletcher Miller, CS. Cesare Scardulla, FC. Francesco Clemenza, JM. Joseph Maalouf, MD. Michael Dandel
Publikováno v:
European Heart Journal – Cardiovascular Imaging. 17:ii161-ii163
Autor:
Claire C. Davis, Naman Gupta, Brian C. Riggs, Vince Romanin, Christopher Spitler, Jacob K. Platz, Matthew D. Escarra, Kazi Islam, James H. Ermer, Yaping Ji, John Robertson, Daniel S. Codd, Dimitri D. Krut, Maxwell Woody, Jacob Tubbs, Fletcher Miller
Publikováno v:
2018 IEEE 7th World Conference on Photovoltaic Energy Conversion (WCPEC) (A Joint Conference of 45th IEEE PVSC, 28th PVSEC & 34th EU PVSEC).
A hybrid solar energy conversion system has been developed for converting sunlight into electricity and thermal energy. The system increases efficiency and reduces cost by utilizing a transmissive, spectrum-splitting concentrator photovoltaic module
Autor:
Pablo Fernandez, Fletcher Miller
Publikováno v:
Solar Energy. 112:458-468
A multidisciplinary design optimization of the 5 MWth, demonstration-scale Small Particle Heat Exchange Receiver (SPHER) developed under the U.S. DOE SunShot Initiative is presented. SPHER is a revolutionary, high-temperature central receiver designe