El-Batouti Mervette, Naim Mona M, Al Harby Nouf F, Elewa Mahmoud M
Chemistry Department, Faculty of Science, Alexandria University, Alexandria 21526, Egypt.
Chemical Engineering Department, Faculty of Engineering, Alexandria University, Alexandria 21526, Egypt.
Materials (Basel). 2022 Aug 29;15(17):5974. doi: 10.3390/ma15175974.
A simple, miniature saltless Solar Pond (SP) was designed and constructed in the present work. It consisted of a Plexiglas container with a square cross-section, within which cruciform baffles were suspended in the upper half of the pond, and copper coil tubing was fitted in the middle of the lower zone to function as a heat exchanger without disturbing the pond's inertia. Different variables' effect on the water's temperature rise at various vertical locations within the pond were investigated. These variables included the presence of the cruciform baffles, the inclination of a mirror fixed to the top rim of the pond, a glass transparent cover (GC), and the presence or absence of a gel thickening material to increase the water viscosity inside the SP, the climatic conditions, and the presence of glass wool (GW) in the lower section of the SP. For an experiment, an estimated energy balance was performed, and the thermal storage efficiency was calculated. The best obtained thermal storage efficiency was 32.58% in the presence of the cruciform baffles, a 45° inclination of a mirror fixed to the top rim of the SP, at an ambient temperature of 30 °C on a calm, sunny day with a wind speed of 7 km/h.
在本研究中,设计并构建了一个简单的微型无盐太阳能池(SP)。它由一个横截面为正方形的有机玻璃容器组成,在该容器内,十字形挡板悬挂在太阳能池的上半部分,铜盘管安装在下部区域的中间,用作热交换器,且不会干扰太阳能池的惯性。研究了不同变量对太阳能池内不同垂直位置水温升高的影响。这些变量包括十字形挡板的存在、固定在太阳能池顶部边缘的镜子的倾斜度、玻璃透明盖(GC)、为增加太阳能池内水的粘度而添加或不添加凝胶增稠材料、气候条件以及太阳能池下部是否存在玻璃棉(GW)。对于一次实验,进行了估计的能量平衡计算,并计算了蓄热效率。在存在十字形挡板、固定在太阳能池顶部边缘的镜子倾斜45°、环境温度为30°C、平静晴朗且风速为7 km/h的日子里,获得的最佳蓄热效率为32.58%。