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Journal articles on the topic 'N-PVT-CPC'

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1

Rohit, Tripathi 1. *. G. N. Tiwari 2. "EXERGY AND CARBON CREDITS FOR SERIES CONNECTED N PHOTOVOLTAIC THERMAL - COMPOUND PARABOLIC CONCENTRATOR (PVT-CPC) COLLECTOR: AT CONSTANT OUTLET TEMPERATURE." INTERNATIONAL JOURNAL OF ENGINEERING SCIENCES & RESEARCH TECHNOLOGY 6, no. 9 (2017): 678–96. https://doi.org/10.5281/zenodo.996054.

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In the present study, overall energy and exergy performance of partially covered N photovoltaic thermal - compound parabolic concentrators (PVT-CPC) (25% covered by glass to glass PV module) collector connected in series have been carried out at constant outlet temperature mode. Further, comparison in performance for partially covered N photovoltaic thermal - compound parabolic concentrators (PVT-CPC) [case (i)] and N compound parabolic concentrators (CPC) collector [case (ii)] connected in series have also been carried out by considering a fluid namely ethylene glycol for high thermal perform
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2

Bansal, Sarthak, and Dharamveer Singh. "A Comparative Study of Active Solo and Dual Inclined Compound Parabolic Concentrator Collector Solar Stills Based on Exergoeconomic and Enviroeconomic." International Journal for Research in Applied Science and Engineering Technology 10, no. 11 (2022): 524–44. http://dx.doi.org/10.22214/ijraset.2022.47297.

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Abstract: The Parabolic Concentrator (CPC) is a uniform photovoltaic thermal (PVT) compound linked to solar photos (N) of water collectors called PVT-CPC Active Solar Filtration System Analysis. New Delhi Analysis is done for a solar filter system for a given particle size under weather conditions. We assess efficiency, system productivity, and life cycle cost analysis. The Thermal Model Life cycle cost efficiency (LCCE), designed for LCCE analysis, is considered the only and double-doubled effective PVT-CPC system for filtering solar energy recovery time. In this work, we need to analyze the
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3

Tiwari, G. N., Md Meraj, M. E. Khan, R. K. Mishra, and Vihang Garg. "Improved Hottel-Whillier-Bliss equation for N-photovoltaic thermal-compound parabolic concentrator (N-PVT-CPC) collector." Solar Energy 166 (May 2018): 203–12. http://dx.doi.org/10.1016/j.solener.2018.02.058.

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4

Kumar, Anil, and Dharamveer Singh. "Effect of Mass Flow Rate on Energy and Exergy of N-PVT-CPC Active Double Slope Solar Distiller." International Journal of Science and Research (IJSR) 11, no. 6 (2022): 1205–8. http://dx.doi.org/10.21275/sr22617160724.

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5

Tripathi, Rohit, G. N. Tiwari, and I. M. Al-Helal. "Thermal modelling of N partially covered photovoltaic thermal (PVT) – Compound parabolic concentrator (CPC) collectors connected in series." Solar Energy 123 (January 2016): 174–84. http://dx.doi.org/10.1016/j.solener.2015.11.014.

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6

Dharamveer, Samsher, and Anil Kumar. "Performance analysis of N identical PVT-CPC collectors with an active single slope solar distiller and helically coiled heat exchanger using CuO nanoparticles." Water Supply 22, no. 2 (2021): 1306–26. http://dx.doi.org/10.2166/ws.2021.348.

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Abstract This paper presents performance analyses based on temperatures, thermal energy (overall), thermal exergy (overall), electrical exergy, and yield of the systems that have been investigated. In the present study, an analytical expression of N identical partly covered photovoltaic compound parabolic concentrator collectors connected in series (N-PVT-CPC-SS-HE) with an active single slope solar distiller unit and helically coiled heat exchanger has been found. The performance analyses of the proposed system have been executed for 0.25% concentration of CuO nanoparticles for collectors (N
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7

Tripathi, Rohit, and G. N. Tiwari. "Energetic and exergetic analysis of N partially covered photovoltaic thermal-compound parabolic concentrator (PVT-CPC) collectors connected in series." Solar Energy 137 (November 2016): 441–51. http://dx.doi.org/10.1016/j.solener.2016.08.048.

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8

Tiwari, G. N., Md Meraj, and M. E. Khan. "Exergy analysis of N-photovoltaic thermal-compound parabolic concentrator (N-PVT-CPC) collector for constant collection temperature for vapor absorption refrigeration (VAR) system." Solar Energy 173 (October 2018): 1032–42. http://dx.doi.org/10.1016/j.solener.2018.08.031.

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9

Singh, D. B., and G. N. Tiwari. "Performance analysis of basin type solar stills integrated with N identical photovoltaic thermal (PVT) compound parabolic concentrator (CPC) collectors: A comparative study." Solar Energy 142 (January 2017): 144–58. http://dx.doi.org/10.1016/j.solener.2016.11.047.

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10

Saini, Vineet, Rohit Tripathi, G. N. Tiwari, and I. M. Al-Helal. "Electrical and thermal energy assessment of series connected N partially covered photovoltaic thermal (PVT)-compound parabolic concentrator (CPC) collector for different solar cell materials." Applied Thermal Engineering 128 (January 2018): 1611–23. http://dx.doi.org/10.1016/j.applthermaleng.2017.09.119.

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11

Das, Supreeti, Pritwish Aggrawal, Lovedeep Sahota, Yogesh Kumar, Manoj Singh, and Baljit Singh Gill. "Economic and performance analysis of modified solar distillation system coupling different integrations using Carbon Quantum Dot (CQD) nanoparticles: Generalized thermal model." Journal of Solar Energy Engineering, February 16, 2024, 1–43. http://dx.doi.org/10.1115/1.4064774.

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Abstract Clean drinking water and electricity production utilizing non-conventional sources of en-ergy is the global demand for the sustainability development. Ultrafast heat transfer fluids have delivered impressive results in photovoltaic integrated solar thermal systems, in recent times. Ef-forts have been made for the productivity and electricity augmentation of solar still equipped with helically coilled heat exchanger and coupled with different integrations viz. (a) partially covered N- photovoltaic thermal compound parabolic concentrator (N-PVT-CPC), (b) partially covered N- photovoltai
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12

Singh, Desh B., Navneet Kumar, Sanjay Kumar, Vijay K. Dwivedi, Jeetendra K. Yadav, and Gopal N. Tiwari. "Enhancement in Exergoeconomic and Enviroeconomic Parameters for Single Slope Solar Still by Incorporating N Identical Partially Covered Photovoltaic Collectors." Journal of Solar Energy Engineering 140, no. 5 (2018). http://dx.doi.org/10.1115/1.4039632.

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This paper deals with the enhancement in exergoeconomic and enviroeconomic parameters for single-slope solar still by incorporating N identical partially covered photovoltaic thermal (PVT) collectors. Three cases: (a) single slope solar still incorporating N identical partially covered PVT flat plate collectors (FPC) (N-PVT-FPC-SS), (b) single slope solar still incorporating N identical partially covered PVT compound parabolic concentrator collectors (N-PVT-CPC-SS), and (c) conventional single slope solar still (CSSSS) have been taken to assess the improvement in various parameters. The variou
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13

Rohit, Tripathi, Tiwari Sumit, and N. Tiwari G. "Performance of Partially Covered N Number of Photovoltaic Thermal (PVT) - Compound Parabolic Concentrator (CPC) Series Connected Water Heating System." January 5, 2016. https://doi.org/10.5281/zenodo.1111657.

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In present study, an approach is adopted where photovoltaic thermal flat plate collector is integrated with compound parabolic concentrator. Analytical expression of temperature dependent electrical efficiency of N number of partially covered Photovoltaic Thermal (PVT) - Compound Parabolic Concentrator (CPC) water collector connected in series has been derived with the help of basic thermal energy balance equations. Analysis has been carried for winter weather condition at Delhi location, India. Energy and exergy performance of N - partially covered Photovoltaic Thermal (PVT) - Compound Parabo
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14

Singh, Desh B., and Gopal N. Tiwari. "Analytical Characteristic Equation of N Identical Evacuated Tubular Collectors Integrated Double Slope Solar Still." Journal of Solar Energy Engineering 139, no. 5 (2017). http://dx.doi.org/10.1115/1.4036855.

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In this paper, analytical expression for characteristic equation of double slope solar still (DS) included with series connected N identical evacuated tubular collectors (N-ETC-DS) has been developed. The derivation is based on fundamental energy balance equations for various components of the proposed system. The analytical result of the proposed N-ETC-DS has been compared with results reported by earlier researchers for the same basin area under similar climatic condition. It has been concluded that daily energy efficiency is higher by 23.90%, 26.45%, and 42.65% for N-ETC-DS than N identical
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15

Wagner, Deborah S., Humaira Nawer, Steven L. Kronick, James A. Cranford, Steven M. Bradley, and Robert W. Neumar. "Abstract 29: Comparison of Amiodarone versus Lidocaine for Treatment of In-Hospital Cardiac Arrest." Circulation 140, Suppl_2 (2019). http://dx.doi.org/10.1161/circ.140.suppl_2.29.

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Introduction: Over 200,000 patients are treated annually in the United States for in-hospital cardiac arrest (IHCA). Patients with an initial rhythm of ventricular fibrillation or pulseless ventricular tachycardia (VF/pVT) have a survival rate of less than 50%. The current American Heart Association (AHA) Advanced Cardiovascular Life Support guidelines suggest amiodarone or lidocaine as first-line agents for shock-refractory VF/pVT based on randomized clinical trials in adults with out-of-hospital cardiac arrest. Based on these results, we hypothesized that amiodarone and lidocaine have equiva
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16

Meraj, Md, M. E. Khan, and G. N. Tiwari. "Annual overall energy and exergy analysis of N-PVT-CPC integrated VAR system: a constant collection temperature mode." International Journal of Ambient Energy, March 18, 2020, 1–13. http://dx.doi.org/10.1080/01430750.2020.1737572.

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17

Kumar, Nandan, Sumit Tiwari, DeshBandhu Singh, Abhishek Saxena, and Harender Sinhmar. "Assessment of Conical Solar Stills Empowered by N-Replicated Partially Shaded PVT-CPC Collectors: Unveiling Exergo-Enviro-Economic Dynamics, Productivity and Cogeneration Efficiency." Journal of Solar Energy Engineering, October 29, 2024, 1–36. http://dx.doi.org/10.1115/1.4067040.

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Abstract The economic and environmental dimensions play a pivotal role in evaluating solar still systems. The aim of this study is to evaluate the performance, efficiency, and viability of conical solar still integrated with multiple identical photovoltaic-thermal compound parabolic collectors (PVT-CPC) through comprehensive analyses of cogeneration efficiency, exergoeconomic and enviroeconomic factors, and productivity metrics. The results of this study were obtained through MATLAB programming, enabling accurate and detailed computations. The model has been validated at N=0 and N=1, showing s
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