scispace - formally typeset
Journal ArticleDOI

Effect of energy storage medium (black granite gravel) on the performance of a solar still

Reads0
Chats0
TLDR
In this paper, a detailed experiment has been conducted on a single-basin solar still which is modified with energy storage medium of black granite gravel for absorbing the excess heat energy from solar radiation during the noon hours.
Abstract
In this study, a detailed experiment has been conducted on a single-basin solar still which is modified with energy storage medium of black granite gravel. An attempt has been made to utilize the maximum amount of solar energy and to reduce the heat loss from the sides and bottom of the still. The conventional still is modified with an energy storage medium of black granite gravel of 6 mm size which is provided in the basin for different (quantity) depths. The black granite gravel functions as energy storage medium and also as an insulation layer to reduce the bottom and side loss coefficients. The black gravel is used for absorbing the excess heat energy from solar radiation during the noon hours. Due to this, the heat accumulated in the space between the water and glass surface is reduced and hence the temperature difference between the water and glass surfaces increases. The depth (quantity) of the gravel layer in the basin will influence the performance of the still and some of the parameters like basin temperature, water temperature, glass temperature and still productivity. This study deals with the effect of aforesaid parameters on the performance of the still. An attempt has been made to optimize the still performance for the above-mentioned parameters. A mathematical model is developed to estimate the water, gravel, and inside glass temperatures theoretically and to estimate the hourly and daily yield. To show the effectiveness of the modification, its performance is compared with the conventional still under the same climatic condition. It is found that the still yield is increased by 17-20% with almost no cost for this modification as black granite gravel is very cheap. Error analysis was done by comparing the theoretical and experimental results to show the validity of the mathematical model. It is found that the maximum percentage of discrepancy for all the parameters is about ±18%. Theoretical value of yield per day has 8% discrepancy over experimental value.

read more

Citations
More filters
Journal ArticleDOI

Finest concentration of phosphate grains as energy storage medium to improve hemispherical solar distillate: An experimental study

TL;DR: In this article , the authors used phosphate grains at different concentrations to improve the performance of solar hemispherical distillation and found that the concentration of 30 g/L represents the optimum concentration of energy storage materials to achieve the highest performance.
Journal ArticleDOI

Finest concentration of phosphate grains as energy storage medium to improve hemispherical solar distillate: An experimental study

TL;DR: In this article, the authors used phosphate grains at different concentrations to improve the performance of solar hemispherical distillation and found that the concentration of 30g/L represents the optimum concentration of energy storage materials to achieve the highest performance.
Journal Article

Design and Fabrication of Modified Single Slope Solar Still with Solar Pond

TL;DR: In this paper, a single basin solar still with the area of 90 cm x 70 cm and slope 110 was fabricated and tested at (119310° N, 797852° E) Villianur, Pondicherry, India The inner surface was coated with black paint, fins were added to the basin and reflecting mirror was placed at the bottom surface in order to increase the heat transfer rate.
Journal ArticleDOI

Optimization of production in single basin solar still using Taguchi method - Experimental and theoretical approach

TL;DR: In this paper, a robust design single basin solar still was taken to enhance the distillate production, and four operational parameters were identified as performance enhancing and they were: basin glass cover thickness, basin water depth, wick material used to wrap the fins and size of heat storage material (blue metal).
Journal ArticleDOI

Exergy and thermo-economic analyses of various tubular solar still configurations for improved performance

TL;DR: In this article, the authors demonstrate the comprehensive experimental investigation of various heat transfer enhancement arrangments for the purpose of water distillation using solar energy and demonstrate the results of their experiments.
References
More filters
Journal ArticleDOI

Experimental study of a solar still with sponge cubes in basin

TL;DR: In this paper, the performance of a solar still with different size sponge cubes placed in the basin was studied experimentally, and the results showed that the daily production of such a still can be greatly enhanced using sponge cubes.
Journal ArticleDOI

Solar still productivity enhancement

TL;DR: Using black rubber or black gravel materials within a single sloped solar still as a storage medium is examined in this article, and the experimental results showed that using black gravel of 20-30 mm size improves the productivity by 19% at the conditions of 20 l/m2 brine volume and 15° of glass cover angle.
Journal ArticleDOI

Modelling and performance analysis of a regenerative solar desalination unit

TL;DR: In this paper, a regenerative solar desalination unit is modeled and its performance evaluated, and the results of the simulations show that the productivity of the regenerative still is 20% higher compared to the conventional still.
Journal ArticleDOI

Experimental evaluation of a single-basin solar still using different absorbing materials

TL;DR: In this article, the effect of using different absorbing materials in a solar still, and thus enhancing the productivity of water, was studied, and it was shown that using an absorbing black rubber mat increased the daily water productivity by 38%. Using black ink increased it by 45%.
Journal ArticleDOI

Parameters affecting solar still productivity

TL;DR: In this paper, the main parameters affecting solar still performance under the weather conditions of the Suez Gulf area are investigated and a general equation is developed to predict the daily productivity of a single sloped solar still.
Related Papers (5)