Theoretical analysis of inclined solar still with baffle plates for improving the fresh water yield

2016 ◽  
Vol 101 ◽  
pp. 93-107 ◽  
Author(s):  
Ravishankar Sathyamurthy ◽  
D.G. Harris Samuel ◽  
P.K. Nagarajan
2015 ◽  
Vol 8 (6) ◽  
pp. 244-265 ◽  
Author(s):  
Ravishankar Sathyamurt ◽  
D.G. Harris Samuel ◽  
P.K. Nagarajan ◽  
S.A. El-Agouz
Keyword(s):  

2014 ◽  
Vol 14 (1) ◽  
pp. 55-64
Author(s):  
Titis Rosari ◽  
Wahyono Hadi ◽  
Ali Masduqi

Solar still atap kaca merupakan salah satu inovasi renewable energy untuk proses desalinasi. Penambahan reflektor parabolic trough berfungsi untuk meningkatkan suhu dalam sistem. Tujuan penelitian ini adalah menganalisa volume air tawar yang dihasilkan dengan parabolic trough, memisahkan DHL dan TDS dari air olahan, menentukan tinggi air optimum, dan efek warna pada basin. Penelitian menggunakan aliran semi kontinu dengan pengaturan aliran air menggunakan pelampung air. Air baku yang digunakan berasal dari sumur warga Kejawan Putih. Penggunaan parabolic trough pada sistem desalinasi dapat meningkatkan volume produksi hingga 66% dibandingkan tanpa menggunakan parabolic trough. Efisiensi destilasi ekperimen mencapai 18,12%.  Volume yang dihasilkan sebesar 2,494 L/m2 dalam satu hari dengan laju destilasi 0,312 L/m2. Kemampuan penyisihan TDS dan DHL sebesar 99,9%. Pada eksperimen ini variabel warna bak dan ketinggian air tidak berpengaruh signifikan terhadap hasil kondensat. Solar still is one of the inovations of renewable energy for desalination process. The function of using parabolic trough reflector is to increase temperature on the system. The purposes of this study was to analyze fresh water yield by using of parabolic trough, removing DHL and TDS from brackish water’s samples, and effect of color on the basin. This research using semi-continuous flow with water flow setting by water buoy. Raw water used was came from wells at Kejawan Putih subdistrict.. The using of the parabolic trough desalination system can increase production volume by 66% when compared without parabolic trough. Experimental distillation efficiency reached 18.12%. Condensate yield has been found to be 2,494 L/m2 in one day and distillation rate of 0.312 L/m2.  These process can allowance 99.9% of the TDS and DHL. In this experiment the variable of basin color and depth water did not significantly influence to condensate yield.


2017 ◽  
Vol 13 (10) ◽  
pp. 5892-5898
Author(s):  
Sella Muthu ◽  
C Manoharan ◽  
R Senthilkumar

A cooling tower is a heat rejection device which rejects waste heat to the atmosphere through the cooling of a water stream to a lower temperature. The stream of saturated exhaust air leaving the cooling tower called the plume is visible when water vapor it contains condenses in contact with cooler ambient air, like the saturated air in one's breath fogs on a cold day. Under certain conditions, the cooling tower plume may present fogging or icing hazards to its surroundings and gives some environmental problems. To find the solution for this problem a cooling tower has been analysed based on air flow rate through the tower and the cooling load to obtain fresh water yield by utilising plume from cooling tower top. The theoretical analysis gives the values of important parameters Theoretical analysis has been done on wet cooling tower by varying the water flow rate through which affect the performance of a cooling tower such as the cooling range, effectiveness, approach, fresh water yield etc. Then with the conditions of a trials from the analysis, the mass flow rate of water in the cooling tower was scaled up to match the mass flow rate of water in an industrial cooling tower. This helps in obtaining the mass flow rate of the air and fresh water yield through the industrial cooling tower.


2014 ◽  
Vol 592-594 ◽  
pp. 2409-2415 ◽  
Author(s):  
S. Naga Sarada ◽  
Banoth Hima Bindu ◽  
Sri Rama R. Devi ◽  
Ravi Gugulothu

In recent years with the exacerbation of energy shortage, water crisis increases around the world. With the continuous increase in the level of greenhouse gas emissions, the use of various sources of renewable energy is increasingly becoming important for sustainable development. Due to the rising oil price and environmental regulations, the demand of utilizing alternative power sources increased dramatically. Alternative energy and its applications have been heavily studied for the last decade. Energy and water are essential for mankind that influences the socioeconomic development of any nation. Pure water resources become more and more scarce every day as rivers, lakes wells and even seawater pollution rapidly increases. Solar energy is one promising solution to secure power and potable water to future generation. The process of distillation can be used to obtain fresh water from salty, brackish or contaminated water. Water is available in different forms such as sea water, underground water, surface water and atmospheric water. Clean water is essential for good health. The search for sustainable energy resources has emerged as one of the most significant and universal concerns in the 21st century. Solar energy conversion offers a cost effective alternative to our traditional usages. Solar energy is a promising candidate in many applications. Among the alternative energy sources used for electricity production, wind and solar energy systems have become more attractive in recent years. For areas where electricity was not available, stand alone wind and solar systems have been increasingly used. The shortage of drinking water in many countries throughout the world is a serious problem. Humankind has depended for ages on river, sea water and underground water reservoirs for its fresh water needs. But these sources do not always prove to be useful due to the presence of excessive salinity in the water. To resolve this crisis, different methods of solar desalination have been used in many countries. Distillation is a well known thermal process for water purification, most importantly, water desalination. Most of the conventional water distillation processes are highly energy consuming and require fossil fuels as well as electric power for their operation. Single basin solar still is a popular solar device used for converting available brackish or waste water into potable water. Because of its lower productivity, it is not popularly used. Numbers of works are under taken to improve the productivity and efficiency of the solar still. There are large numbers of PCMs that melt and solidify at wide range of temperatures, making them attractive in a number of applications. PCMs have been widely used in latent heat thermal storage systems for heat pumps, solar engineering and spacecraft thermal control applications. The use of PCMs for heating and cooling applications for buildings has been investigated within the past decade. The experimental results computed in the field of water distillation process using solar energy in the presence of energy storage materials sodium sulphate and sodium acetate are discussed in this paper. Keywords: solar energy, saline water, distillation, phase change material.


2020 ◽  
Vol 28 ◽  
pp. 101204 ◽  
Author(s):  
A.E. Kabeel ◽  
Ravishankar Sathyamurthy ◽  
A. Muthu Manokar ◽  
Swellam W. Sharshir ◽  
F.A. Essa ◽  
...  

2018 ◽  
Vol 21 (2) ◽  
pp. 24-36
Author(s):  
Truong Cam Trang ◽  
Dinh Huy Pham ◽  
Phuoc Tri Phan

Water is one of the most important resources on Earth because of its vital role for human beings and other living creatures. During the devastating drought in the Mekong Delta in 2016, millions of people had no access to the secure source of fresh water. This issue cautioned and influenced the Vietnamese government to find an effective desalination process for the coastal areas impacted heavily by salinization. However, desalination processes require large amounts of energy which can be a problem for the coastal areas due to the lack of energy and high cost. The main purpose of the study herein was to find an alternative solution for desalination by designing a desalination system using solar energy. The design was expected to provide a small size desalination system for households. The average output of the system was about 854 ml/day with the productivity at 2223.54 ml/day/m2. The average water capture efficiency was 80.5%, the salt elimination efficiency of the system was about 99.99%, and the salinity of the output water was below 2 ppm. The results are still far from ideal but they indicate a potential solution for coping with the shortage of fresh water in coastal areas.


2012 ◽  
Vol 2012 ◽  
pp. 1-7 ◽  
Author(s):  
Z. S. Abdel-Rehim ◽  
A. Lashine

A study of solar desalination still combined with air-conditioning system is presented in this work. Combining the solar still with the air-conditioning system can increase the condensate output from the solar still while meeting the cooling load needs. The operation of the combined solar distillation and air-conditioning system, that utilized the heat rejected by the condenser and the heat sink of the evaporator, has been tested to obtain the distillate output from the solar still during the air-conditioning of a space application. Experimental work of the present system is carried out in June 2009 (summer month), in Cairo, Egypt. The present problem is tested to use the integrated system operation for already utilizing air-conditioning energy consumption; that is, meeting the hourly air-conditioning load and the daily fresh water production. The system is tested for day and nighttimes of operation of the combined system for the summer month: June 2009, Cairo, Egypt. Economic study evaluation is presented. The results show that the maximum fresh water productivity through June is 29 Liters in daytime of June 5 2009 and 37 liters in nighttime (nocturnal time) of June 3 2009. The present system more efficient in day time (8:00 AM–8:00 PM) and night time (8:00 PM–8:00 AM). Therefore, the maximum efficiency is recorded 40% for the present system in daytime, 36% in nighttime, and 25% for conventional solar still. COP increases with inside temperature (Ti), however it decreases with outside temperature (Tamb). The average cost of one liter of distillate water from the present combined system = 0.021441 (LE).


Energies ◽  
2020 ◽  
Vol 13 (21) ◽  
pp. 5734
Author(s):  
Mahmoud S. El-Sebaey ◽  
Asko Ellman ◽  
Ahmed Hegazy ◽  
Tarek Ghonim

With the rising population, environmental pollution, and social development, potable water is reducing and being contaminated day by day continually. Thus, several researchers have focused their studies on seas and oceans in order to get potable fresh water by desalination of their saltwater. Solar still of basin type is one of the available technologies to purify water because of free solar energy. The computational fluid dynamic CFD model of the solar still can significantly improve means for optimization of the solar still structure because it reduces the need for conducting large amount of experiments. Therefore, the main purpose of this study is presenting a multi-phase, three-dimensional CFD model, which predicts the performance of the solar still without using any experimental measurements, depending on the CFD solar radiation model. Simulated results are compared with experimental values of water and glass cover temperatures and yield of fresh water in climate conditions of Sheben El-Kom, Egypt (latitude 30.5° N and longitude 31.01° E). The simulation results were found to be in acceptable agreement with the experimental measured data. The results indicated that the daily simulated and experimental accumulated productivities of the single-slope solar still were found to be 1.982 and 1.785 L/m2 at a water depth of 2 cm. In addition, the simulated and experimental daily efficiency were around 16.79% and 15.5%, respectively, for the tested water depth.


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