Academic literature on the topic 'Solar-powered fan'

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Journal articles on the topic "Solar-powered fan"

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Michael Ibukun Kolawole and Janak Paudel. "Construction of a 12V Standalone Solar Powered DC fan for Solar Energy Utilization." World Journal of Advanced Research and Reviews 18, no. 3 (2023): 1613–17. http://dx.doi.org/10.30574/wjarr.2023.18.3.0428.

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This project was embarked on construction of a 12 volts standalone solar powered DC fan for solar energy utilization using constructed DC fan, solar photovoltaic panel illuminated by solar radiation, 12 volts DC battery and connectors. After construction of DC fan, measurements were carried out using 25 volts adjustable DC regulated power supply system to feed in variable voltage and determine the output voltage and the speed of fan at different distance using hand held anemometer. The rate of blowing air of air determined at different input voltage and distance determines its performance abil
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Adelaja, A. O., B. Y. Ogunmola, and P. O. Akolade. "Development of a Photovoltaic Powered Forced Convection Solar Dryer." Advanced Materials Research 62-64 (February 2009): 543–48. http://dx.doi.org/10.4028/www.scientific.net/amr.62-64.543.

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This solar conversion system incorporates a suction fan powered by a solar PV module. Located at the outlet of the chamber is the d.c suction fan utilised to achieve forced air circulation without the use of external power supply like grid electricity, fossil fuel and battery. Simple thermal energy balance equations and heat transfer equations were employed in the design of the system. The operational efficiency of the collector is 83.2% and mass flow rate 1.58kg/min, the maximum temperature achieved in the chamber was 58oC. The system was used to dry vegetable, hydrophylum. The capital cost i
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Jassim, Esam I. "Improvement of Indoor Air Distribution by Utilizing Small Fans Powered by Solar Energy." International Journal of Computational Physics Series 1, no. 2 (2018): 1–8. http://dx.doi.org/10.29167/a1i2p1-8.

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A pilot-scale HVAC system is constructed to study the performance of air quality inside the comfort-zone when small fans are utilized to perform the air circulation. The research investigates the impact on energy consumption when the fan of the coil is eliminated from the fan coil unit (FCU). This would improve access to separate comfort zone controls and positively affect thermal comfort in those areas. In the study, the comfort room temperature variation is measured during 15 minutes in four cases, namely: all fans ON, all Fans OFF, 1-Fan ON, and 2-Fans ON. Optimization of the fan location t
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Wang, Yi Wang. "Application of Solar Photovoltaic Power Supply System in Cleaning Room Project." Advanced Materials Research 971-973 (June 2014): 2057–60. http://dx.doi.org/10.4028/www.scientific.net/amr.971-973.2057.

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Cleanroom project has gained wide application in electronics and other industries,FFU(Fan Filter Unit) system as a major energy-consuming equipment of cleanroom project,reducing its energy consumption is one of the research hotspots in the industry. Combined with solar power technology, application of solar photovoltaic power supply system in cleaning room project can significantly reduce system energy consumption. Using solar-powered for FFU system in the cleanroom project, a solar-powered FFU system is designed and developed in this paper.System architecture, hardware and software developmen
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Rai, Ashutosh, Pankaj Kumar Yadav, and Awdhesh Gupta. "A Refrigerator without Compressor Powered by Solar Energy." SAMRIDDHI : A Journal of Physical Sciences, Engineering and Technology 8, no. 01 (2016): 06–10. http://dx.doi.org/10.18090/samriddhi.v8i1.11406.

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Thermoelectric refrigerator with an inner volume of 10 litre (approx.) has been designed and tested, whose cold system is composed of a Peltier and a fan (i.e. heat sink).Analysis of a its performance in different conditions has been carried out with this prototype. Thermoelectric devices are capable of converting electrical energy into thermal heat pumping at a very high efficiency.The cooling system is made up of one thermoelectric device, composed of a Peltier module (40 watt) with its hot side in contact with a heat sink and aluminum plate in contact with the cold side.
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Charity, L. Oria. "Drying Performance of Integrating Mesh Wire as Drying Space into the Inflatable Solar Dryer for Drying Coffee." Engineering and Technology Journal 10, no. 02 (2025): 3846–50. https://doi.org/10.5281/zenodo.14887273.

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The drying performance of coffee laid in a mesh wire that serves as a drying space in an inflatable solar dryer (ISD) was evaluated and compared to open sun drying (OSD) and ISD without mesh wire drying space in the Philippines. Condensation was observed in ISD due to the moisture content of the crops and solar radiation, which affected the drying time. Thus, mesh wire was introduced to reduce moisture buildup inside the ISD. The drying time was determined upon reaching the ideal moisture content of 12% for coffee. The dryer was composed of a solar-powered fan, a solar air heater, and an infla
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Ndobe Ebong, Divine, Claude Vidal Aloyem Kaze, and Armand Paiguy Ngouateu. "Design and implementation of solar powered mini refrigerator using thermoelectric cooler module." E3S Web of Conferences 354 (2022): 01007. http://dx.doi.org/10.1051/e3sconf/202235401007.

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Remote areas are known for lack of conventional electrical power supply. But it is a common phenomenon to find health centres in remote areas, where vaccination campaigns are done regularly. Due to small populations, vaccines opened cannot be completely used and some usually get bad. The objective of this project is to design and implement a portable and energy efficient refrigerator for preservation of vaccines in medical centres found in remote areas where electric power supply is absent. The novelty of this work is on the use of planks, which are local materials and cheap for the constructi
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Zhong, Hao, Zhi Min Li, Tong Wu, Ming Jiu Yu, and Run Sheng Tang. "Performance of a Solar Drying System Driven by a Hybrid Power System." Advanced Materials Research 455-456 (January 2012): 139–46. http://dx.doi.org/10.4028/www.scientific.net/amr.455-456.139.

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To increase the production and improve the quality of dried agricultural products, a new drying system with a hybrid driving power system was developed and tested. The system with total collector area of 100m2 is consisted of 10 drying units and each of them is consisted of 5 identical air collectors and a greenhouse-like drying chamber. Each of collectors in the system is equipped with a DC fan, powered by either 120W solar modules or a 300W wind turbine, and an AC fan, directly powered by the electricity from grid. Such drying system can operate in all time of any day and avoid any possible
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G. Poorna, Chandra Rao, and B. Gayathri. "Solar operated automatic seed planting device." i-manager's Journal on Power Systems Engineering 10, no. 1 (2022): 46. http://dx.doi.org/10.26634/jps.10.1.18828.

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In the modern world, all industries are striving for rapid expansion through the introduction of various advanced technologies, including the agricultural sector. The aim of this paper is to design a solar-powered automatic seed sowing mechanism. The main goal of this design is to create a low-cost, solar-powered, seed- sowing device that can be easily used by farmers. This gadget uses a solar panel to absorb solar energy, which is then converted to electrical energy. The entire device can be fully powered by solar energy, eliminating the need for fossil fuels. In the sowing mechanism, seeds a
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Satyam, Ray, Meghwal Kartik, Pandey Vipin, et al. "Solar Powered Air Purifier with Air Quality Monitor." International Journal of Innovative Science and Research Technology 7, no. 12 (2022): 587–90. https://doi.org/10.5281/zenodo.7490810.

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As we know, the world has been shaken by rising pollution levels due to air pollution. We need to control the pollution levels under safe and standard levels. Using air purifiers is the most effective method of reducing air pollution. Here we design an outdoor purifier powered by a solar panel, it does not require any other supply, so it is energy independent. Air purifier’s concept is known for years but not fully explored, so here we are designing an An air purifier that removes PM10 and PM 2.5 pollutants as well as harmful gases uses a exhuast fan to draw air from the base duct of the
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Book chapters on the topic "Solar-powered fan"

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Das, Partha, and Dhruba Shil. "DESIGN AND FIELD VALIDATION OF A SOLAR POWERED SMART HAT FOR HEAT SAFETY AND COMMUNICATION IN AGRICULTURAL AND OUTDOOR ENVIRONMENTS." In Proceedings of International Conference on Engineering Materials and Sustainable Societal Development [ICEMSSD 2024]. Iterative International Publishers (IIP), Selfypage Developers Pvt Ltd., 2025. https://doi.org/10.58532/nbennuricemssd11.

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Increasing global temperatures and ultraviolet (UV) radiation levels pose serious health risks for outdoor workers, particularly in agriculture, construction, and traffic control sectors. This paper presents the design and performance evaluation of a solar-powered smart hat developed using bamboo and biodegradable materials, integrated with functional modules such as dual cooling fans, an LED work light, a GPS tracking system, a walkie-talkie communication device, and an SOS emergency alert feature. The proposed system is powered by a 6V photovoltaic panel connected to a 3.7V lithium-ion recha
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Singh, Bhupinder, Saquib Ahmed, Saurabh Chandra, and Anita Singh. "Scaling Green Hydrogen Production Through AI Innovations." In Advances in Environmental Engineering and Green Technologies. IGI Global, 2025. https://doi.org/10.4018/979-8-3373-0045-0.ch023.

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Green hydrogen, which is produced via water electrolysis powered by renewable energy, has emerged as a favored solution to decarbonize sectors such as transportation, heavy industry and power generation. But things like high production cost, inefficiency, and a difficult operation still pose challenges for its widespread adoption. The transformative potential usually sits with artificial intelligence (AI). The analytics on data through AI algorithms means far better adjusted to live demands with solar and wind inputs for instance. Less energy is wasted and production costs fall. Predictive mai
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Lorbiecki, Marybeth. "The Farmer as Conservationist … and Restorationist." In A Fierce Green Fire. Oxford University Press, 2016. http://dx.doi.org/10.1093/oso/9780199965038.003.0026.

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The farm lies about two hours away from the Shack but only historic inches away in concept. In the Driftless region of southwest Wisconsin, it bears upon it some of the beautiful contoured crop swirls of Coon Valley, telltale marks of Leopold’s influence. New Forest Farm, started by Mark and Jen Shepard, is restoration agriculture in action. The farm asks the land to do what it is tailored by nature to do best and then trains it artfully, holistically, and prodigiously for personal, natural, and commercial use. From the sky, it looks like a child’s fingerpainting in green, with curlycues and w
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Conference papers on the topic "Solar-powered fan"

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Huzayyin, O. A., M. S. El Morsi, M. A. Serag-Eldin, and M. F. El-Bedaiwy. "Prototype for Solar Powered Chip-Ice Production Facility." In ASME 2017 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2017. http://dx.doi.org/10.1115/imece2017-72510.

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Fishermen in highly isolated communities like Shallatin and Halayeb (Southern Egypt) suffer from the fouling of their catch before reaching the markets, due to the prevailing high ambient temperatures. Thus, they resort to block or crushed ice to cool their catch. Since fresh water is unavailable naturally, energy is needed to produce the fresh water from sea water, as well as to operate the chiller for ice production. Hence, employing solar energy as the sole source of energy for manufacturing ice, and producing the ice straight from saline water provides independence from both the electric g
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Abdi, Abdiaziz Hussein, and Hasan Zorlu. "Rural Electrification with Solar Powered Mini-Grids and Stand-Alone Solar System Installations: Case of Somali." In International Students Science Congress. Izmir International Guest Student Association, 2021. http://dx.doi.org/10.52460/issc.2021.026.

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Access to electricity still remains a distant dream in many parts of sub-Saharan Africa. In the energy sector, Somalia is one of the most underdeveloped in the region. Especially in rural areas, the rate of electrification is the lowest with the high cost of power, for electricity generation, Somalia depends on imported petroleum products, and cooking relies on biomass resources, and only a small fraction of the population has safe, reliable, and affordable energy services. Generally, the population in rural areas is composed of a high percentage of poor households and low population density.
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Veeraraghavan, S., M. Kumaravel, Krishna Vasudevan, and Ashok Jhunjhunwala. "Experimental studies and performance evaluation of solar PV powered BLDC motor drive with an integrated MPPT in fan applications." In 2014 IEEE 40th Photovoltaic Specialists Conference (PVSC). IEEE, 2014. http://dx.doi.org/10.1109/pvsc.2014.6924912.

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Hotz, Nico. "Nano-Structured Catalytic Material for Solar-Powered Biofuel Reforming." In ASME 2012 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2012. http://dx.doi.org/10.1115/imece2012-89729.

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The main goal of this project is to combine two renewable energy conversion technologies (low-temperature fuel cells and solarthermal collectors) to achieve synergies in terms of cost and energetic efficiency compared to systems based on a single energy source and energy conversion technology. Direct solar-to-electric energy conversion, such as photovoltaics, is currently not economically competitive with traditional electric power generation. Fuel cell technology using alcoholic fuel possibly generated from biomass (e.g. methanol) is not competitive in terms of costs either. The system propos
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Ireland, Melissa K., Matthew S. Orosz, J. G. Brisson, Adriano Desideri, and Sylvain Quoilin. "Dynamic Modeling and Control System Definition for a Micro-CSP Plant Coupled With Thermal Storage Unit." In ASME Turbo Expo 2014: Turbine Technical Conference and Exposition. American Society of Mechanical Engineers, 2014. http://dx.doi.org/10.1115/gt2014-27132.

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Organic Rankine cycle (ORC) systems are gaining ground as a means of effectively providing sustainable energy. Coupling small-scale ORCs powered by scroll expander-generators with solar thermal collectors and storage can provide combined heat and power to underserved rural communities. Simulation of such systems is instrumental in optimizing their control strategy. However, most models developed so far operate at steady-state or focus either on ORC or on storage dynamics. In this work, a model for the dynamics of the solar ORC system is developed to evaluate the impact of variable heat sources
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Aliuddin, Atif M., AbdulAziz S. Alhamoud, and Samir Mekid. "System Level Design and Simulation of PV/Diesel/Battery Hybrid Power Systems for Portable Classrooms." In ASME 2011 International Mechanical Engineering Congress and Exposition. ASMEDC, 2011. http://dx.doi.org/10.1115/imece2011-62128.

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This paper discusses a system level design and simulation of a portable solar powered classroom for rural areas that are not connected to the national grid. This constitutes a serious handicap to support general public utilities such as lack of proper schools and usual daily utilities. The lack of schools in such areas has lead to a lower level of educational standard as compared to urban schools. These regions are often isolated and far away from any major cities and thus have limited educational resources. Often these areas lack proper teaching facilities, which in turn discourage students f
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Perez-Rosado, Ariel, Hugh A. Bruck, and Satyandra K. Gupta. "Enhancing the Design of Solar-Powered Flapping Wing Air Vehicles Using Multifunctional Structural Components." In ASME 2015 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference. American Society of Mechanical Engineers, 2015. http://dx.doi.org/10.1115/detc2015-47570.

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Flapping wing aerial vehicles (FWAVs) are limited to small batteries due to constraints on the available onboard payload. To increase the energy available for the vehicle, solar cells can be integrated to harvest energy during flight. This addition of available onboard energy increases the flight time of the vehicle and could eventually lead to an infinite flight as long as there is sunlight. However, integration of solar cells is expected to alter flight performance. The changes in performance must be measured and understood. Previously, solar cells have been integrated to the wings of Robo R
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Ghahremani, Amir Hossein, and Hamid Reza Goshayeshi. "Experimental investigation on the effect of a novel finned tube generator on the enhancement of a solar powered refrigerator using NH3-CaCl2 working pair and activated carbon." In Second Thermal and Fluids Engineering Conference. Begellhouse, 2017. http://dx.doi.org/10.1615/tfec2017.fna.017908.

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Zaltash, Abdolreza, Andrei Petrov, Randall Linkous, Edward Vineyard, David Goodnack, and Bakarne Egilegor. "Performance Evaluation of a 4.5 kW (1.3 Refrigeration Tons) Air-Cooled Lithium Bromide/Water Hot-Water-Fired Absorption Unit." In ASME 2007 International Mechanical Engineering Congress and Exposition. ASMEDC, 2007. http://dx.doi.org/10.1115/imece2007-41380.

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During the summer months, air-conditioning (cooling) is the single largest use of electricity in both residential and commercial buildings with the major impact on peak electric demand. Improved air-conditioning technology has by far the greatest potential impact on the electric industry compared to any other technology that uses electricity. Thermally activated absorption air-conditioning (absorption chillers) can provide overall peak load reduction and electric grid relief for summer peak demand. This paper describes an innovative absorption technology based on integrated rotating heat excha
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Locoche, Slim, Rémi Delage, Philippe Leblond, et al. "Cis-Lunar Transfer Vehicle: Mission Analysis for an ESA Transfer Vehicle to the Gateway." In ESA 12th International Conference on Guidance Navigation and Control and 9th International Conference on Astrodynamics Tools and Techniques. ESA, 2023. http://dx.doi.org/10.5270/esa-gnc-icatt-2023-051.

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In 2018, the International Space Exploration Coordination Group proposed international agreements on space exploration: expand human presence into the Solar System, with the surface of Mars as a common driving goal and prepare for space exploration missions beginning with the ISS and continuing to the lunar vicinity, the lunar surface, then on to Mars. The development and deployment of a lunar orbital platform gateway concept, called the Gateway, has been proposed as an intermediate step towards deep space travel. The Gateway would be placed in a Near Rectilinear Halo Orbit (NRHO) which has be
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