Advances in Solar Energy Technology: Volume 2: Industrial by H.P. Garg

By H.P. Garg

The goal of penning this 3 quantity 'Advances in solar power expertise' is to supply the entire suitable most modern info to be had within the box of solar power (Applied in addition to Theoretical) to function the easiest resource fabric at one position. makes an attempt are made to debate issues intensive to aid either the scholars (i.e. undergraduate, postgraduate, learn students etc.) and the pros (i.e. Consultancy, layout, and contracting firms). bankruptcy 1 starts off with a quick background of sunlight homes (active heating), one of many oldest and nonetheless the commonly used program of solar power. a number of tools of construct­ ing heating and different normal elements equivalent to development shape and features also are defined. numerous parts of energetic sunlight heating of establishing like sunlight collector, garage approach, keep watch over unit, auxiliary warmth resource, and so on. are mentioned very in short. 3 forms of sunlight energetic heating of constructions like sun air platforms, sunlight liquid platforms, and sunlight assisted warmth pump platforms are mentioned intimately during this bankruptcy. layout info and function of 9 usual sunlight homes that are in use in numerous weather conditions and utilizing a few more moderen options also are mentioned intensive during this chapter.

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Extra resources for Advances in Solar Energy Technology: Volume 2: Industrial Applications of Solar Energy

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43 Collection efficiency (Percent) 50 27 50 43 Computed Outlet temperature( ~) 63 59 57 52 CHAPTER 1 18 There are several other practical advantage of air collectors over liquid collectors such as freezing, corrosion problems and superheating are almost absent and durability is better and maintenance and repair is easier . For handling large amount of air, a large air duct work is required compared to a liquid heating system. Similarly the size of the rock bed storage system in case of air heating systems is 3 times more compared to a water storage system for storing the same amount of heat.

Using extra water in the salt hydrate. D. 15cm wall thickness were conducted in the laboratory[83]. No observable change or deterioration in the material is reported even after 1000 cycles. 5. It is seen from this table that so far as volume is concerned the water storage system and rock bed storage system (no voidage) occupies 5-times and 12-times spaces compared to phase change storage system. Based on these facts increased attention is diverted towards the use of latent heat storage system. but it is still an open question.

The same liquid can also be used to supply the heat to the space which required heating. Alternatively different liquids can be used in the collector loop and storage system. If hot water is used as storage material then the same may be used to dissipate the heat through radiators, or radiant floor or ceiling panels, baseboard heating strips, etc. Sometimes liquid to air heat exchanger is used and hot air is distributed in the occupied space. If air is used as a working fluid in the collector than this hot air can directly be supplied to the space or through a rockbed storage system.

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