Normal process design conditions [5]
properties characterizing the normal range of process conditions for which a device shall be designed and operate within its specifications
Hierarchy#
Ancestors (top) → ABG476 (highlighted) → subclasses and powertype instances. Capped at 12 each; see the full lists in the sections below.
Higher level classes3#
Declared properties25#
highest dynamic viscosity for which a device is or should be designed to operate within its specified limits
highest fluid velocity for which a device is or should be designed to operate within its specified limits
dynamic viscosity on the basis of which a pressure drop statement is valid
states of the process material that the device is or should be designed to
highest rate of change of process temperature for which a device is or should be designed to operate within its specified limits
lowest process temperature for which a device is or should be designed to operate within its specified limits
highest process temperature for which a device is or should be designed to operate within its specified limits
lowest absolute pressure of a process for which a device is or should be designed to operate within its specified limits
highest absolute pressure of a process for which a device is or should be designed to operate within its specified limits
lowest actual density for which a device is or should be designed to operate within its specified limits
highest actual density for which a device is or should be designed to operate within its specified limits
highest gas volume fraction for which a device is or should be designed to operate within its specified limits
lowest gauge pressure of a process for which a device is or should be designed to operate within its specified limits
highest gauge pressure of a process for which a device is or should be designed to operate within its specified limits
lowest velocity of sound for which a device is or should be designed to operate within its specified limits
highest velocity of sound for which a device is or should be designed to operate within its specified limits
highest mass flow rate for which a device is or should be designed to operate within its specified limits
highest actual volume flow rate for which a device is or should be designed to operate within its specified limits
highest normalized flow rate for which a device is or should be designed to operate within its specified limits
highest permanent loss of pressure over the primary element at upper range-limit of flow rate
lowest gas volume fraction for which a device is or should be designed to operate within its specified limits
lowest solids content expressed as mass fraction for which a device is or should be designed to operate within its specified limits
highest solids content expressed as mass fraction for which a device is or should be designed to operate within its specified limits
smallest particle size for which a device is or should be designed to operate within its specified limits
greatest particle size for which a device is or should be designed to operate within its specified limits
Subclasses#
No subclasses
This class is a leaf — no other classes inherit from it.
Metadata#
- Version
- 1
- Revision
- 1
- Status
- Standard
- Publisher
- IEC
- Published in
- IEC 61987
- Responsible committee
- SC65E – IEC 61987
- Change request
C00019- Dates
- Original: 2014-12-17
- Current version: 2018-03-20
- Current revision: 2018-03-20
Full source data#
Every key from the original .xls export, including multilingual variants, status, publisher, committee, and workbook-specific codes.
Raw properties (27 keys from source .xls) — click to expand
- C002
- C00019
- C011
- IEC
- C012
- IEC 61987
- C016
- Standard
- C017.de
- 0
- C017.fr
- 0
- C018.de
- 2015-01-14
- C018.fr
- 2015-01-14
- C019.de
- Mr. W. Hartmann
- C019.fr
- UTE
- MDC_P001_5
- 0112/2///61987#ABG476
- MDC_P002_1
- 1
- MDC_P002_2
- 1
- MDC_P003_0
- 2018-03-28
- MDC_P003_1
- 2014-12-17
- MDC_P003_2
- 2018-03-20
- MDC_P003_3
- 2018-03-20
- MDC_P004.de
- Prozessauslegungsbedingungen (Normalbedingungen)
- MDC_P004.en
- Normal process design conditions [5]
- MDC_P004.fr
- Conditions de conception de processus normales
- MDC_P006.de
- Merkmale, die den Normalbereich der Prozessbedingungen kennzeichnen, für die ein Gerät auszulegen ist und innerhalb deren Spezifikationen es betrieben wird
- MDC_P006.en
- properties characterizing the normal range of process conditions for which a device shall be designed and operate within its specifications
- MDC_P006.fr
- propriétés caractérisant l’étendue normale de conditions de processus pour lesquelles un appareil doit être conçu et fonctionner dans ses spécifications
- MDC_P010
- 0112/2///61987#ABV501
- MDC_P011
- ITEM_CLASS
- MDC_P012
- SC65E – IEC 61987
- MDC_P014
- {0112/2///61987#ABA954,0112/2///61987#ABB184,0112/2///61987#ABA955,0112/2///61987#ABB185,0112/2///61987#ABA918,0112/2///61987#ABA919,0112/2///61987#ABA598,0112/2///61987#ABB329,0112/2///61987#ABB330,0112/2///61987#ABB331,0112/2///61987#ABB055,0112/2///61987#ABB056,0112/2///61987#ABA110,0112/2///61987#ABA114,0112/2///61987#ABB231,0112/2///61987#ABB232,0112/2///61987#ABB433,0112/2///61987#ABB059,0112/2///61987#ABB434,0112/2///61987#ABB435,0112/2///61987#ABD426,0112/2///61987#ABD427,0112/2///61987#ABB332,0112/2///61987#ABA116,0112/2///61987#ABA297}
Version history1#
IEC CDD records every published revision of each entity — version number, status, timestamp, and the change request that introduced it. OpenCDD captures the full chain of custody from cdd.iec.ch; the entry marked Current is the one rendered on this page.