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IOT BASEDSOLAR DESALINATION SYSTEM

Simran Gautam, Shital Pandre, Shraddha Gulbake

Abstract


For the sake of performance analysis and management, distant observation of a solar still is an
intriguing step. This article develops and integrates a mechanism for assessing solar still systems.
Internet of Things (IoT) technology is being used, the parameters taken into consideration (such as air
temperatures, relative humidity, etc.) been published on a website. In our project we had incorporated
the different water sensor, DHT sensor, ultrasonic sensor and BH 1750 sensor. All the sensors were
connected using microcontroller NodeMCU and the sensed data was fetched using Blynk software.


Keywords


Solar, Still, sensors, IOT

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References


Abdallaha s. abu-khaderb, m. M. &badranc, o. Desalination;242. 2009 effect of various

absorbing materials on the thermal performance of solar stills:128-137.

Akash BA, Mohsen MS, Nayfeh W. Experimental study of the basin type solar still under

local climate conditions. Energy Convers Manag. 2000;41(9):883-890.

doi:10.1016/S0196-8904(99)00158-2.

Badran OO. Experimental study of the enhancement parameters on a single slope solar

still productivity. Desalination. 2007; 209(1-3):136-143. doi:10.1016/j.desal.2007.04.022.

Badran OO, Abu-Khader MM. Evaluating thermal performance of a single slope solar

still. Heat Mass Transfer. 2007; 43(10):985-995. doi:10.1007/s00231-006-0180-0.

Benghanem M, Joraid AA. A multiple correlation between different solar parameters in

Medina, Saudi Arabia. Renew Energy. 2007a; 32(14):2424-2435.

doi:10.1016/j.renene.2006.12.017.

Benghanem M, Mellit A, Emad M, Aljohani A. Monitoring of Solar Still Desalination

System Using the Internet of Things Technique. Energies. 2021a; 14(21):6892.

doi:10.3390/en14216892.

Benghanem m, Mellit a, Emad m, Aljohani a. Desalin Water Treat. 2021b solar still

desalination systems: a comparative study and proposition of a new design based on the

internet of things technique, 54–67. Https://doi:10.5004/dwt; 2021(239):2021.27768.

Boukar m, Harmin a. 2001 effect of climatic conditions on the performance of a simple

basin solar still: a comparative study. Desalination. Renew Sustain Energy Rev 67. 1308

to 1330; 137:15-22. Chandrashekara, m. &yadav, a. 2017 low-cost solar water purifier for

rural households.

Dimri V, Sarkar B, Singh U, Tiwari GN. Effect of condensing cover material on yield of

an active solar still: an experimental validation. Desalination. 2008; 227(1-3):178-189.

doi:10.1016/j.desal.2007.06.024.

Dsilva d. rufuss, w. &sivakumar, s. 2014 enhancing the performance by increasing the

productivity of water in solar desalination system with roof heating. Int J AdvTechnolEng

Res;4:41-45.

Dwivedi VK, Tiwari GN. Experimental validation of thermal model of a double slope

active solar still under natural circulation mode. Desalination. 2010;250(1):49-55.

doi:10.1016/j.desal.2009.06.060.

Elango T, KalidasaMurugavel K. The effect of the water depth on the productivity for

single and double basin double slope glass solar stills. Desalination. 2015;359:82-91.

doi:10.1016/j.desal.2014.12.036.

El-Bialy E. El-bialy, e. 2014 performance analysis for passive single slope single basin

solar distiller with a floating absorber: an experimental study. Energy. 2014; 68:117-124.

doi:10.1016/j.energy.2014.02.095.

Fang S, Tu W, Zhu L, Sun Z. Sunlight concentration effects analysis of lenses on single-

slope solar still. Water Supply. 2018; 18(6):1888-1896. doi:10.2166/ws.2018.009.

Samuel H. G., nagarajan. Energy Convers Manag;112:125-134, P. K., sathyamurthy, r.,

el-agouz, a. A. &kannan, e. 2016 improving the yield of fresh water in conventional solar

still using low-cost energy storage material.

Kandasamy s, Vellingiri m. sengottain, s. &balasundaram, j. Int J Energy Environ;4,

–6:2013 performance correlation for single-basin double-slope solar still.

Kaushal A, Varun. Solar stills: a review. Renew Sustain Energy Rev. 2010;14(1):446-

doi:10.1016/j.rser.2009.05.011.

KhalifaaJN, Ali mA. 2015 indoor tests on the effect of wind speed on still performance.

Int J Energy Environ; 6(3):299-308.

Mary river catchment coordinating committee. Water quality standards.

https://mrccc.org.au/wp-content/uploads/2013/10/water-quality-salinity-standards.pdf.

JahangiriMamouri S, GholamiDerami H, Ghiasi M, Shafii MB, Shiee Z. Experimental

investigation of the effect of using thermosyphon heat pipes and vacuum glass on the

performance of solar still. Energy. 2014; 75:501-507. doi:10.1016/j.energy.2014.08.005.

Mashaly AF, Alazba AA. Anfismodeling and sensitivity analysis for estimating solar still

productivity using measured operational and meteorological parameters. Water Supply.

; 18(4):1437-1448. doi:10.2166/ws.2017.208.

Nassar YF, Yousif SA, Salem AA. The second generation of the solar desalination

systems. Desalination. The ninth arab international conference on solar energy (aicse-9).

Bahrain. 2007; 209(1-3):177-181. doi:10.1016/j.desal.2007.04.039, S A.

PanchalhN. 2015 enhancement of distillate output of double basin solar still with vacuum

tubes. J king saud university – eng sci. Technol Econ Smart Grids Sustain Energy. 1,

;27:170-175. Panchal, h. N. &patel, s. 2016 effect of various parameters on

augmentation of distillate output of solar still: a review.

Randha, B., Maamar, O., Mourad, B. & Djilali, T. 2021 Thermal efficiency improvement

of a solar desalination process by parabolic trough collector. Water Supply ws2021131.

https://doi.org/10.2166/ws.2021.131.

Tiwari, A. K. & Tiwari, G. N. 2007 Annual performance analysis and thermal modeling

of passive solar still for different inclinations of condensing cover. Int J Energy Res 31,

–1382.

Rajaseenivasan, T. & Kalidasa Murugavel, K. 2013 Theoretical and experimental

investigation on double basin double slope solar still. Desalination 319, 25–32.

Safwat Nafey, A., Abdelkader, M., Abdelmotalip, A. & Mabrouk, A. A. 2000 Parameters

affecting solar still productivity. Energy Convers Manag 41, 1797–1809.

Sun, Z., Tu, W. & Fang, S. 2021 Experimental study of a solar water treatment device

with dome structure cover in winter: performance evaluation and comparative analysis.

Water Supply ws2021223. https://doi.org/10.2166/ws.2021.223.




DOI: https://doi.org/10.37628/ijpe.v8i2.1503

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