Document ZkQVYmxgeVZqzbbrNkOkwLw8

804 CHAPTER 37 . 1950 Guide Fia. 6. Pebfobmance Data fob Ttpical Commebcial Solid Adsobbent Dehomidifieb Then a = 1.1078.56 ggrraa;i--innss-pp-e-e-rr--m-p-o-i-nu-u-n-tdre = 61.6 lb ai.r per mi.nut.e min. im. um that. m' ust b, e supplied to the room to maintain 30 F dew-point. Note that this figure represents the' minimum requirement for the arbitrary condi tions set forth and that in practiee, safety, margins should be added to the outside air percentage figure and to the calculated internal moisture gain. VAPOR TRANSFER TO DEHUMIDIFIED SPACE The walls enclosing a dehumidified space are subjected to a vapor pressure differential. The pressure of the vapor outside the walls tends to force moisture through the walls into the dehumidified zone of relatively low.' vapor pressure. As this process can be an . unnecessary load on the. dehumidifying equipment, provisions should be made for keeping the vapor transfer to a minimum.' Also; if the space is cooled below the ambient dew point, there is a possibility that condensation may occur within the walls,' unless vapor transfer is controlled. For these reasons a-vapor barrier should be located within the' wall construction as near- to the high vapor pressure side as feasible. To be effective, a barrier must be continuous and should be so located within the structure that it will be protected from' rupture. (See section on WaterWapor and Condensation, Chapter 9.) CHAPTER 38 AUTOMATIC CONTROL Basic Types of Control, Types of Controllers, Actuating Devices, Actuated Controls, Residential Control Systems, Zone Control, Automatic Control Application, Control for Central Fan Systems, District Heating Control, Panel Heating Control, Indicating and Recording Equipment THE function of auiomatic control, as applied to the heating, ventilat ing and air conditioning industry, may be broadly subdivided into the maintenance of temperature, humidity, and pressure, within pre-determined ranges. It automatically coordinates the operation of the various con trolled devices in proper sequence to produce the desired result. BASIC TYPES OF CONTROL Available automatic control equipment may be divided into four main groups depending on the primary source of power and can be classed as: 1. A self-actuated regulator is one in which all the energy necessary to operate a valve or damper motor is supplied by the responsive element or bulb. Temperature changes at the bulb result in pressure changes of an enclosed fluid which are trans mitted directly to the valve or damper motor. Instruments of this type are available either with a rigid bulb or with flexible tubing from the bulb to the operating motor. The flexible tubing may be furnished in varying lengths and is generally protected by a flexible metal armor. 2. Electrically operated equipment utilizes electric current as a primary source of energy, its flow being regulated as required to operate motors, relays, or other con trolled items. 3. In pneumatically operated equipment the primary source of energy is compressed air usually at a pressure of 15 to 25 psig. The flow of this air is proportioned as re quired to operate valves, dampers, relays, or other controlled devices. 4. In hydraulically operated equipment the primary source of power is a suitable liquid at a pressure of 15 to 25 psig or higher wfuch is handled in the same manner as compressed air. TYPES OF CONTROLLERS . The basic types of controllers which are available may be classed as: . 1. Two-position or on-off controllers are the simplest, type and are clearly described by the name: With controllers of this type the valve or.damper motor can assume only two positions, either open or:shut. 2. Proportional or gradual acting controllers function to re-position the controlled device by small increments of travel to regulate the flow as the controller senses a slight change in the controller condition. . 3. Floating controllers act to produce valve or damper movement whenever there is a deviation from the control point. Whenever the condition, to be controlled is above the.control point, the valve closes at a constant rate, and continues to close until the temperature returns to the control point. Below the control point the valve reverses its action and moves in the other direction until the control point is again reached. , 4. Automatic reset (or proportional plus reset) controllers function to reposition a valve or damper by small increments of travel as in a proportioning controller. In addition, a mechanical device in the controller automatically and constantly resets the instrument to offset the normal drift (inherent in a proportional controller) be tween maximum and,minimum load. The rate of reset is manually adjustable and must be set to meet the load requirements of the individual system. Controllers may also be designated by types as: a non-indicaling con troller, when it does not indicate the controlled condition and performs 805