Manuel d'utilisation / d'entretien du produit CVGF du fabricant Trane
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CTV -PRC0 0 1 -GB September 2004 Centrifugal W at er Chillers Model CVGF W at er -Cooled Her metic Centr ifugal Refrigeration Capacities From 40 0 to 1 00 0 T ons (1400 kW -351 0 kW) 50 and 60 Hz.
CTV -PRC0 01 -GB © 2004 American Standard Inc. All rights reserved. Introduction Intr oducing T r ane’ s Model CV GF Centr ifugal W ater Chiller Introduction The basic gear driven centrifugal water chiller design was introduced in 1976 and has been proven in thousands of installations.
3 CTV -PRC0 0 1 -GB Introduction Features and Benefits Application Considerations General Data Jobsite Connections Controls Physical Dimensions Mechanical Specifications Con version T able Contents 2 .
CTV -PRC0 01 -GB 4 Environmental Features and Benefits Improved Efficiency: • High Ef ficiency: 0.55 kW/T on at ARI conditions • Motor cooling vented to economizer cycle, efficiency advantage • .
5 CTV -PRC0 0 1 -GB Features and Benefits Microprocessor Controls with CH530 DynaV iew Operat or Interf ace DynaVi ew ™ is the unit-mounted control panel and also serves as the main processor and operator interface. It has a touch-sensitive overlay on a 1/4 V GA display .
CTV -PRC0 01 -GB 6 Features and Benefits Serviceability Previous T rane c hiller controller s included a user interface that presented all chiller data necessary for both daily tasks and service or maintenance tasks. The amount of information presented on a limited display made a number of tasks dif ficult.
7 CTV -PRC0 0 1 -GB Features and Benefits Feedf orwar d A daptive Control The T racer c hiller controller allows the system designer to explore energy saving strategies and allows the centrifugal chiller to be used in ways that were never thought possible.
CTV -PRC0 01 -GB 8 • Communication capabilities: several communication levels are provided: — local, through a PC workstation keyboard. Summit can be programmed to send messages to local or remote workstations and or a pager in the following cases: — Analog parameter exceeding a programmed value.
9 CTV -PRC0 0 1 -GB T w o-Stage Compr essor Widens the Application Range Why Centrifugal Compressors Surge Centrifugal compressors produce their pressure differential (head) by converting the kinetic energy of the gas leaving the impeller into static pressure.
CTV -PRC0 01 -GB 10 Condenser W at er Limitations Te m p e r a t u r e T rane centrifugal c hiller s star t and operate over a range of load conditions with controlled water temperatures. Reducing the condenser water temperature is an effective method of lowering the chiller power input.
11 CTV -PRC0 0 1 -GB General Data T able GD-1 – Model CV GF Descr iption Model CVGF Nominal Cooling Capacity NTON 400 500 500 650 800 1000 Heat Exchanger Size Evaporator EVSZ 500 500 7 00 700 1000 1.
CTV -PRC0 01 -GB 12 T able GD-3 – Evaporator and Condenser Flow rates (Minimum and Maximum, liters per second, gallons per minute) High Efficiency Shells - 0.
13 CTV -PRC0 0 1 -GB Jobsite Connections Supply and Motor Lead Wiring and Connections Copper conductors only should be connected to the compressor motor due to the possibility of galvanic corrosion as a result of moisture if aluminum conductors are used.
CTV -PRC0 01 -GB 14 Controls Standard Features Field Connection The field-connected elements are involved in physically turning the chiller on or off. This involves ensuring that the chiller is not in an emergency or external stop condition, starting the pumps, and verifying that flow has been established.
15 CTV -PRC0 0 1 -GB Extended Operation Package Select the extended-operation package for chillers that require external , hot water control, and/or base-loading capabilities. This package also includes a 4-20 mA or 0-10 Vdc analog input for a refrigerant monitor .
CTV -PRC0 01 -GB 16 Controls Standard Protections T r acer ™ Chiller Contr oller The chiller controller uses proportional- integral-derivative (PID) control for all limits—there is no dead band. This removes oscillation above and below setpoints and extends the capabilities of the c hiller .
17 CTV -PRC0 0 1 -GB Controls Standard Protections Momentary Power Loss and Distribution Fault Protection Three-phase momentary power loss (MPL) detection gives the chiller improved performance through many different power anomalies. MPLs of 2.5 cycles or longer will be detected and cause the unit to shut down.
CTV -PRC0 01 -GB 18 Figure PD-2 – Model CVGF Cooling Only Without Unit Mounted Start er (for Remote Mount ed Starter) Figure PD-1 – Model CVGF Cooling Only With Unit Mounted Star ter Physical Dime.
19 CTV -PRC0 0 1 -GB Physical Dimensions Ev aporator Wa ter Bo x Length — SI (English) Length No. mm (in) Shell Pressure Evap. Passes Supply Return 500 10 bar (150 psig) NMAR 2 371 (14.61) 156 (6.14) 10 bar (150 psig) NMAR 3 371 (14.61) 371 (14.61) 700 10 bar (150 psig) NMAR 2 489 (19.
CTV -PRC0 01 -GB 20 The T rane CVGF pac k aged centrifugal water chillers using HFC-134a refrigerant consist of a hermetic two stage, gear -dri ve centrifugal compressor , evaporator, condenser , interstage economizer , unit-mounted microprocessor based control panel and compressor motor star ter .
21 CTV -PRC0 0 1 -GB W elded steel two pass water boxes are bolted to the tube sheets. W ater connections are steel pipe stubs grooved for V ictaulic couplings; flanged connections are optionally available. Maximum waterside working pressure of 10.5 bars (150 psi) is standard.
CTV -PRC0 01 -GB 22 Unit-mounted or remote-mounted starters for Europe (CE mark) will be star -delta, solid-state, across-the-line, primary reactor , and auto transformer only in a IP 20 enclosure. A steel panel door with optional mechanical interlock disconnects the system when the door is opened (required for CE listing).
23 CTV -PRC0 0 1 -GB Conversion T able T o Convert Fr om: T o: Mulgpiy By: Length Feet (ft) meters (m) 0.30481 Inches (In) millimeters (mm) 25.4 Arca Square Feet (ft 2 ) square meters (m 2 ) 0.093 Square Inches (In 2 ) square millimeters (mm 2 ) 645.2 V olume Cubic Feet (ft 3 ) Cubic meters (m 2 ) 0.
www .trane.com For more information, contact your local district office or e-mail us at comfort@trane.com T rane has a policy of continuous product and product data improvement and reserves the right to c hange design and specifications without notice.
Un point important après l'achat de l'appareil (ou même avant l'achat) est de lire le manuel d'utilisation. Nous devons le faire pour quelques raisons simples:
Si vous n'avez pas encore acheté Trane CVGF c'est un bon moment pour vous familiariser avec les données de base sur le produit. Consulter d'abord les pages initiales du manuel d'utilisation, que vous trouverez ci-dessus. Vous devriez y trouver les données techniques les plus importants du Trane CVGF - de cette manière, vous pouvez vérifier si l'équipement répond à vos besoins. Explorant les pages suivantes du manuel d'utilisation Trane CVGF, vous apprendrez toutes les caractéristiques du produit et des informations sur son fonctionnement. Les informations sur le Trane CVGF va certainement vous aider à prendre une décision concernant l'achat.
Dans une situation où vous avez déjà le Trane CVGF, mais vous avez pas encore lu le manuel d'utilisation, vous devez le faire pour les raisons décrites ci-dessus,. Vous saurez alors si vous avez correctement utilisé les fonctions disponibles, et si vous avez commis des erreurs qui peuvent réduire la durée de vie du Trane CVGF.
Cependant, l'un des rôles les plus importants pour l'utilisateur joués par les manuels d'utilisateur est d'aider à résoudre les problèmes concernant le Trane CVGF. Presque toujours, vous y trouverez Troubleshooting, soit les pannes et les défaillances les plus fréquentes de l'apparei Trane CVGF ainsi que les instructions sur la façon de les résoudre. Même si vous ne parvenez pas à résoudre le problème, le manuel d‘utilisation va vous montrer le chemin d'une nouvelle procédure – le contact avec le centre de service à la clientèle ou le service le plus proche.