生乳固态冷却模块的设计与开发

IF 0.2 Q4 AGRICULTURE, DAIRY & ANIMAL SCIENCE
M. Patil, C. Ramachandra, Mahesh Kumar, Girisha Kb, Prasanna Kuma
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引用次数: 0

摘要

全球制冷和储存领域对制冷的需求不断增加,导致世界各地使用了更多的电力,并释放出消耗臭氧层的气体,这是全球变暖的一个促成因素。热电冷却是一种产生冷却和加热效果的新技术。因此,设计并开发了一种用于原料奶冷却的固态冷却模块。牛奶冷却室的设计尺寸为直径260毫米、高度140毫米和厚度2毫米。牛奶和水冷却室的体积分别为5L和4L。在冷却模块中使用了三个尺寸分别为40毫米长、3.6毫米厚和40毫米宽的TEC1-121715珀耳帖模块、冷侧翅片(36个翅片)、热侧翅片(100个翅片)和排气扇(3个)。三个模块和排气扇的12V、10A直流电源来自并联的SMPS。热电冷却模块能够将生乳从37°C冷却到9°C。60分钟时获得的最高冷却负载为229.74 kJ。记录的最小和最大功耗分别为0.375 kWh和1.125 kWh。模块的COP在0.036到0.259之间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and development of solid state cooling module for rawmilk cooling
The global increasing demand for refrigeration in field of cooling and storage led to usage of more electricity and release of ozone depleting gases over the world which is a contributing factor of global warming. Thermoelectric cooling is a novel technique for producing cooling and heating effect. Hence, a solid state cooling module for cooling of raw milk was designed and developed. The milk cooling chamber was designed with the dimensions of 260 mm in diameter, 140 mm in height and 2 mm in thickness. The volume of the milk and water cooling chamber was 5 and 4 L, respectively. Three numbers of TEC1-12715 Peltier module, with the dimensions of 40 mm in length, 3.6 mm in thickness and 40 mm in width, cold side fins (36 fins), hot side fins (100 fins) and exhaust fans (3 Nos.) were used in the cooling module. The 12 V, 10A DC power supply for three module and exhaust fans was drawn from SMPS in parallel connection. The thermoelectric cooling module was able to cool raw milk from 37 to 9 °C. The highest cooling load obtained was 229.74 kJ at 60 min. The minimum and maximum power consumption recorded was 0.375 kWh and 1.125 kWh, respectively. The COP of the module was ranged from 0.036 to 0.259.
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来源期刊
INDIAN JOURNAL OF DAIRY SCIENCE
INDIAN JOURNAL OF DAIRY SCIENCE AGRICULTURE, DAIRY & ANIMAL SCIENCE-
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