Heat Interchanges
There are a variety of heat transfer solutions used by the chemical and pharmaceutical industries. Liquids, gases, and solids can all be heated. Condensed steam or heated fluids are used to heat these materials. Operations that involve heat transfer in pharmacy include granulating, crystallizing, evaporating, and distilling starch paste. Industrial processes involve transfer of heat energy in various ways. Through metal walls, heat exchangers are used to transfer heat between one fluid (hot gas or steam) and another fluid (liquid). Using heat exchangers, heat can be transferred from one liquid or gas to another through a metal wall.Baffles
A baffle is a metal disc with one side removed. The perforations in these discs are used to fit tubes through them. The clearance between the baffles, shell, and tubes is kept small to prevent or at least minimize leakage. Metal rods support the baffles and set screws fasten them between the tube sheets. The heat transfer coefficient of the shell side is increased by modifying the flow pattern in parallel or cross flow with the tube bundles. It also has the function of supporting the tube all the way along its length to prevent it from bending. This type of baffle may be segmented horizontally (horizontal baffle) or vertically (vertical baffle) as shown in Figure below.Baffle windows are cut portions of baffles. It allows fluid to flow through. From 15% to 50% is the baffle window area. At a 20% cut segmental baffle, the portion of the baffle that is cut out corresponds to 20% of the whole baffle. The distance between baffles affects the pressure drop and heat transfer coefficients.
Heat Exchangers
Many manufactures prefer heat exchangers for cooling control panels and electrical enclosures because they are more efficient than alternative methods. Pharmaceutical production and packaging have also been affected by heat exchanger technology in many of the same ways. Managed electrical waste heat management is key to the pharmaceutical industry, which includes processes such as fine chemistry necessary to create pharmaceutical drugs and products. Manufacturers have benefitted immensely from heat exchangers because they have been able to reliably and consistently cool their technologies without expending excessive energy. The enclosure and cooling of electrical circuits are crucial to prevent overheating. Heat exchangers are much more energy efficient and require much less maintenance than air conditioners. The cost-effectiveness of these machines compares favorably with air compressors.
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