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controlled bypass loop around each component where a specified low temperature must be met. This will prevent energy from being transferred from the process into the thermal fluid, the opposite of the desired effect, and also allow for adequate temperature and flow of hot air or water to be delivered. For the end-uses, the controls should be programmed to read the temperature of the incoming fluid and compare that with the required temperature for the process, which depends heavily on the process demand at the specified time. For example, the amount of energy required for heating the glue baths depend heavily on the ambient conditions. This control strategy should be developed to continuously measure the temperature of the glue and to ensure it is maintained at the appropriate temperature by adjusting the flow rate with an automated control valve. This control valve should be designed to open or close depending on the supplied hot fluid temperature to maintain the required heat flow. This system should also be able to turn off the heating fluid flow if appropriate temperatures are not available, in which case the backup system must be used to supply the required energy to the system. Insulation of Hot Surfaces To ensure the system maintains as much energy as possible, all exposed hot surfaces should be well insulated. This includes piping, valves, fittings, thermal storage tanks, and heat exchangers and processes when applicable. The insulation thickness should be determined to adequately maintain the energy for whatever purpose it is being used for in the process and for the system components. For most situations, normal, high temperature insulation can be used. This includes calcium silicate, mineral wool and cellular glass types to name a few. However special care should be taken to prevent leaks of the heating oil in the system, not only to conserve as much energy as possible and to reduce the need to purchase additional fluid, but fluid-saturated insulation can become a potential fire hazard when the fluid is operated at a high temperature. 109PDF Image | TUDY OF LOW-GRADE WASTE HEAT RECOVERY
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