Attention is drawn to the following places, which may be of interest for search:

Similar documents
F02C. Definition statement. References. Special rules of classification. Limiting references CPC - F02C

Turbo Machines Pumps and Turbines ME 268

2. In terms of operating as a machine, a sail boat energy from the air. A. Extracts B. Adds

MANUFACTURE OF IRON OR STEEL (preliminary treatment of ferrous ores or scrap C22B 1/00; electric heating H05B)

B63J AUXILIARIES ON VESSELS. Definition statement. Relationships with other classification places. References. Limiting references

Alpha College of Engineering

- Sawing trunks or logs, saws specially adapted therefor: B27B 1/00, B27B 3/00, B27B 7/00, B27B 15/00

Hydraulic Machines, K. Subramanya

SUMMER 15 EXAMINATION

This place covers: all treatments of molten iron or steel, including the apparatuses specifically related thereto, e.g. converter, electric furnace.

Download From:

RRB TECHNICAL EXAM QUESTIONS

Module 9 : Sewage And Storm water Pumping Stations. Lecture 11 : Sewage And Storm water Pumping Stations

Training Title PUMPS AND COMPRESSORS: DESIGN, OPERATION, MAINTENANCE AND TROUBLESHOOTING

Training Title PUMPS AND COMPRESSORS: DESIGN, OPERATION, MAINTENANCE AND TROUBLESHOOTING

A NOVEL APPLICATION OF A SCREW ROTOR ENGINE AS AN EXPANSION DEVICE IN AN ORGANIC RANKINE CYCLE

Turbomachinery. Overview

Overview of Machinery Condition Monitoring and Diagnostics with Case Study. Roengchai Chumai Technical Leader, GE Oil & Gas

Lecture on. Code : MMC 16101

Lubrication-installation of screw engine applied in an Organic Rankine Cycle

T.E. (Mech., Mech. S/W) (Semester II) Examination, 2011 TURBOMACHINES (New) (2008 Pattern)

PUMPS/ COMPRESSORS. Mounting, Levelling and Vibration Control of: Pumps. Compressors POWER GENERATION - PUMPS & COMPRESSORS

Principles of. Turbomachinery. Seppo A. Korpela. The Ohio State University WILEY A JOHN WILEY & SONS, INC., PUBLICATION

Model EVMS Vertical Multistage Pumps for the Global Market

THERMAL AND HYDRAULIC MACHINES UNIT 2

INCOMPRESSIBLE FLOW TURBOMACHINES Design, Selection, Applications,

[4163] T.E. (Mechanical) TURBO MACHINES (2008 Pattern) (Common to Mech. S/W) (Sem. - II)

MECHANICAL FIELD/ DOMAINE DE LA MÉCANIQUE

This document is a preview generated by EVS

Percussion drilling (drives used in the borehole E21B 4/00; rotary drilling machines in general B23B)

Current from currents

Preface to the First Edition Preface to the Second Edition. Acknowledgment

CLEANING OR DEGREASING OF METALLIC MATERIAL BY CHEMICAL METHODS OTHER THAN ELECTROLYSIS (polishing compositions C09G; detergents in general C11D)

Contents. Part I Design: Theory and Practice 1

National Maritime Center

PUMPS/ COMPRESSORS. Mounting, Levelling and Vibration Control of: Pumps. Compressors POWER GENERATION - PUMPS & COMPRESSORS

Manufacture of composite layers, workpieces, or articles, comprising metallic powder, by sintering the powder, with or without compacting;

The Steam Machine Energy Recovery from The Most Powerful Machine in the World (1) Prepared by: Langson Energy, Inc. March 2013

Mechanical Seals for. Ramesh Krishnappan AESSEAL ICEPIM 2015

Applied Thermodynamics - II

CENTRIFUGAL COMPRESSORS MAINTENANCE & FAILURE ANALYSIS

FLUID FLOW - PUMPS. Discharge Section. Section. Two main types of pumps: Positive Displacement pumps Centrifugal pumps.

Appendix B. Glossary of Steam Turbine Terms

-Fundamentals of Fluid Mechanics- Bruce Munson, Donald Young, Theodore Okiishi, Wade Huebsch

PUMP SELECTION CONTROLS. Winfred RONO, June 27, 2018

Application of Exergy Analysis. Value and Limitations

Low Emissions gas turbine solutions

Turbomachinery Aerodynamics

Design and Fatigue Analysis of Turbine Rotor Blade by Using F.E.M

Programme area 4. Fluid Mechanics

Applied Thermodynamics - II

ALERT. Vibration Diagnostic Software. Proven Technology for Machinery Condition Assessment

Production of synthesis gas from liquid or gaseous hydrocarbons, and the synthesis gas per se, are covered by group C01B 3/00.

NOTICE CONCERNING COPYRIGHT RESTRICTIONS

CPC field-specific training

S.Y. Diploma : Sem. III [PG/PT/ME] Thermal Engineering

UNIT I: UNIFORM FLOW PART B

D_Series. D_200 Dry rotary screw vacuum pumps

National Maritime Center

GAS-FIRED COMBINED-CYCLE POWER PLANTS HOW DO THEY WORK? A company of

12D SERIES THREE SCREW PUMPS ROTARY SCREW PUMPS

Moulds for making units for prefabricated buildings or prefabricated stair units Forms or shutterings of the construction, permanent or lost forms.

EXPERIMENTAL INVESTIGATION OF A SUPERSONIC MICRO TURBINE RUNNING WITH HEXAMETHYLDISILOXANE

MEC-MOS-E-2004 Gas Turbine Maintenance Engineer PERSONAL DATA EDUCATION LANGUAGES COMPUTER SKILLS TRAINING COURSES AND CERTIFICATIONS

PEMP M.S. Ramaiah School of Advanced Studies, Bengaluru 1

Thermodynamics of. Turbomachinery. Fluid Mechanics and. Sixth Edition. S. L. Dixon, B. Eng., Ph.D. University of Liverpool, C. A. Hall, Ph.D.

(2) Where LHSV in third angle projection method (a) On Right hand side (b) On Left hand side (c) Below the Elevation (d) Below the Plan

Introduction to the mechanical design of aircraft engines

R.A. Chaplin Chemical Engineering, University of New Brunswick, Canada

Trial Operation Results of Steam Cooled M501H Type Gas Turbine

GUJARAT TECHNOLOGICAL UNIVERSITY (Established under Gujarat Act No. 20 of 2007) ગ જર ત ટ કન લ જ કલ ય નનવનસ ટ

Pumps, Turbines, and Pipe Networks, part 2. Ch 11 Young

Organic Rankine Cycle System for Waste Heat Recovery from Twin Cylinder Diesel Engine Exhaust

AN ASSESSMENT OF ELECTRICAL POWER RATING AND SHAFT SPEED (RPM) OF GAS TURBINE MODEL PRODUCTION

Multiple screw pumps on FPSO vessels

Fabrication and Study of the Parameters Affecting the Efficiency of a Bladeless Turbine

Dynamically Oscillated Biopsy Needle

1. The Energy Content of Fuels

Multistage Centrifugal

DESIGN OF EXPERIMENTAL SETUP OF 1KW WIND TURBINE BLADE TESTING

Industrial Mechanic (Millwright) Level 3

PUMPING TECHNOLOGY TRAINING COURSES GUIDE

Experience and Examples of Optimization of Axial Turbines Flow Paths

BCE Program March-2017 Electrical Power Systems Time: min Quiz 1 Model A رقم المجموعة:

Thermo-fluid Dynamics, Design and Performance

Products II 1 VERTICAL LINE SHAFT PRODUCT AND OIL LUBRICATED PUMPS II 2 SUBMERSIBLE PUMPS II 3 MIX FLOW PRODUCT AND OIL LUBRICATED PUMPS

PUMPS & PUMPING SYSTEMS

PEMP RMD & Cycle Performance. M.S.Ramaiah School of Advanced Studies

Fuji Electric s Medium-capacity Steam Turbines FET Series

4th Class Power Engineering (PEN) Curriculum Mapping

PEMP RMD M.S.Ramaiah School of Advanced Studies

Fluid Engineering, Inc.

Quick Reference Guide An Overview of Pharmaceutical Pump Types, Capabilities and Differentiators

C10B 53/02 C10L 5/40, 9/ Vegetable oils C10L 1/02, 1/19 C10L 1/02, 1/19 C07C 67/00, 69/00 C10G C10L 1/02, 1/19 C11C 3/10 C12P 7/64

Design and Structural Analysis of Gas-Turbine Blade

National Maritime Center

CATALOG VIBRATION ISOLATORS CIRCULAR CUSHYFOOT CUP MOUNT SANDWICH MOUNTS BOBBINS & BUFFERS

r e p o r t Turbocor Compressor Wests Leagues Club, Newcastle Energy Performance June 2003 Building Controls Management P/L

Proceedings of the ASME th Joint US-European Fluids Engineering Division Summer Meeting FEDSM2014 August 3-7, 2014, Chicago, Illinois, USA

University Curriculum Development for Decentralized Wastewater Management

Transcription:

CPC - F04D - 2017.05 F04D NON-POSITIVE DISPLACEMENT PUMPS Non positive displacement pumps for liquids, for elastic fluids, or for liquids and elastic fluids, whether rotary or not having pure rotation. Aeroplane propellers B64C 11/00 Non positive displacement machines or engines Machines or engines for liquids Wind motors Combinations of non-positive displacement pumps with other pumps; Positive displacement machines for fluids Pumps Rotary-piston, or oscillating piston, positive displacement machines for fluids F01D F03B F03D F04B F04C Blood pumps A61M 1/00 Obtaining oil, gas, water from deep wells E21B Pumping cooling air or liquid coolants F01P 5/00 Bearings F16C Sealings F16J 15/00 Central heating systems Air conditioning, Ventilation F24D F24F As a general rule a complete classification will contain at least one class out of the 2 first main parts which would specify the type of pump concerned, combined with at least one class out of the main group F04D 29/00. In cases were a "Details, component, parts, or accessories" has to be classified which can be used in a number of different types of pumps which would be covered by different sub groups, only the relevant F04D 29/00 sub group class should be given. Care should be taken when classifying compressors used in combination with gas turbines. Classification in F04D when compressor details are predominant. Classification in F01D when the integration or the fluid connection to the turbine or its combustion chamber are involved This subclass is generally subdivided in 3 main parts: Non-positive displacement pumps for non-elastic fluids: F04D 1/00 - F04D 15/029 1

F04D (continued) CPC - F04D - 2017.05 Non positive displacement pumps for elastic fluids: F04D 17/00-F04D 27/0292 Details, component, parts, or accessories: F04D 29/00 - F04D 29/708 In the part related to "Details, component, parts, or accessories" i.e. main group F04D 29/00 each sub group is subdivided in two further subgroups, one for elastic fluids and another on for non elastic fluids. By way of example: F04D 29/02 has a subgroup F04D 29/023 covering the elastic fluids, and another subgroup F04D 29/026 covering the non elastic fluids. Glossary of terms In this place, the following terms or expressions are used with the meaning indicated: Engine Pump Machine Positive displacement Non-positive displacement Rotary-piston machine means a device for continuously converting fluid energy into mechanical power. Thus, this term includes, for example, steam piston engines or steam turbines, per se, or internal-combustion piston engines, but it excludes single-stroke devices means a device for continuously raising, forcing, compressing, or exhausting fluid by mechanical or other means. Thus, this term includes fans or blowers means a device which could equally be an engine and a pump, and not a device which is restricted to an engine or one which is restricted to a pump means the way the energy of a working fluid is transformed into mechanical energy, in which variations of volume created by the working fluid in a working chamber produce equivalent displacements of the mechanical member transmitting the energy means the way the energy of a working fluid is transformed into mechanical energy, by transformation of the energy of the working fluid into kinetic energy, and vice versa means a positive-displacement machine in which a fluid-engaging work-transmitting member rotates about a fixed axis or about an axis moving along a circular or similar orbit. This definition applies also to engines and pumps F04D 1/00 Radial-flow pumps, e.g. centrifugal pumps; Helico-centrifugal pumps (adapted for pumping specific fluids F04D 7/00; priming or boosting F04D 9/00) Radial and mixed flow type pumps for non elastic fluids Shear force pumps F04D 5/001 Adaptation to specific liquids F04D 7/00 Priming of pumps F04D 9/00 2

F04D 1/00 (continued) CPC - F04D - 2017.05 Synonyms and Keywords In patent documents the following expressions/words "helico centrifugal flow", "mixed flow" and "diagonal flow" are often used. F04D 3/00 Axial-flow pumps (priming or boosting F04D 9/00) Axial flow type pumps for non elastic fluids. Adaptation to specific liquids F04D 7/00 Priming of pumps F04D 9/00 Conveyors B65G 33/00 Archimedes screw pumps F04B 19/12 F04D 5/00 Pumps with circumferential or transverse flow {(control thereof F04D 15/005)} Shear force pumps and pumps with circumferential or transverse flow, also shear force pumps, although they are generally of radial type. Glossary of terms In this place, the following terms or expressions are used with the meaning indicated: Shear force pump a pump where the energy is transferred to the liquid by friction forces Synonyms and Keywords In patent documents the following expressions/words "circumferential flow pump", "side channel pump", "regenerative pump", "peripheral flow pump" and "vortex flow pump" are often used. 3

CPC - F04D - 2017.05 F04D 7/00 Pumps adapted for handling specific fluids, e.g. by selection of specific materials for pumps or pump parts (F04D 11/005, F04D 29/22 take precedence) Adaptations which make a pump suitable for a specific liquid. Pumping specific fluids in general F04B 15/00 In general classification is combined with a sub group in the F04D 29/00 group F04D 9/00 Priming; Preventing vapour lock All adaptations of a pump in order to prime the pump, to avoid vapor lock or to avoid loss of prime F04D 11/00 Other rotary non-positive-displacement pumps (pumping installations or systems F04D 13/00) Any rotary non-positive displacement which does not have radial, axial or helico centrifugal flow. F04D 13/00 Pumping installations or systems (controlling F04D 15/00) The combination of a pump with its drive system or its integration into a system either comprising several pumps or comprising storage systems Control of pumps F04D 15/00 4

F04D 13/00 (continued) CPC - F04D - 2017.05 Electrical machines H02K Magnetic couplings H02K 49/102 F04D 15/00 Control, e.g. regulation, of pumps, pumping installations or systems Systems and schemes for controlling a pump, either matching the pump to the requirements of the system or avoiding harmful conditions for the pump Actuators for control action F04D 29/00 F04D 17/00 Radial-flow pumps, e.g. centrifugal pumps; Helico-centrifugal pumps (F04D 21/00 takes precedence) Radial and mixed-flow type pumps for elastic fluids. The centrifugal pumps for elastic fluids are subdivided into 2 main parts; in the "compressing or evacuating" sub group F04D 17/10 the compression ratio should be significant, while in the "for displacing without appreciable compression" sub group F04D 17/16 the generation of flow is predominant Synonyms and Keywords In patent documents the following expressions/words "helico centrifugal flow", "mixed flow" and "diagonal flow" are often used. F04D 19/00 Axial-flow pumps (F04D 21/00 takes precedence; {pump comprising axial flow and radial flow stages F04D 17/025}) Axial flow type pumps for elastic fluids. 5

F04D 19/00 (continued) CPC - F04D - 2017.05 Combined axial-flow and radial-flow stages F04D 17/025 Pumps involving supersonic speeds in the pumped fluid F04D 21/00 The axial pumps for elastic fluids are subdivided into 2 main parts; in the "multistage pumps" sub group F04D 19/02 the compression ratio should be significant, while in the "fan" sub groups F04D 19/002 and F04D 19/007 the generation of flow is predominant F04D 21/00 Pump involving supersonic speed of pumped fluids All pump for elastic fluids involving supersonic speed of pumped fluids. F04D 23/00 Other rotary non-positive-displacement pumps (pumping installations or systems F04D 25/00) Any rotary non positive displacement which does not have radial, axial or helico centrifugal flow, pumps adapted for conveying or for handling specific elastic fluid, and pumps with circumferential or transverse flow. F04D 25/00 Pumping installations or systems (controlling F04D 27/00) The combination of a pump for elastic fluids with its drive system or its integration into a system either comprising several pumps or comprising storage systems. Pump installation control F04D 27/00 6

F04D 25/00 (continued) CPC - F04D - 2017.05 Hand held fans A45B F04D 25/06 and F04D 25/08 are both used in parallel. F04D 25/06 focusses on the motor design, or the combination of motor and pump. F04D 25/08 focusses on specific design for special purposes. Both subgroups can be used in combination (e.g. a computer fan with an inside out motor and details on how the motor is cooled will get both F04D 25/0613 and F04D 25/082 classification F04D 27/00 Control, e.g. regulation, of pumps, pumping installations or systems Systems and schemes for controlling a pump for elastic fluids, either matching the pump to the requirements of the system or avoiding harmful conditions for the pump, e.g. surge or stall conditions. Control of flow G05D 7/00 Control of pressure G05D 16/00 F04D 27/02 subgroup is used for ANY type of control and is thus not limited to surge or stall control F04D 27/001 is used when the detection of pump condition is predominant (e.g. determining of surge margin, without immediate control action; mapping of pump characteristics for later use) F04D 29/00 Details, component parts, or accessories (machine elements in general F16) Details, component parts, or accessories of any type of pump for elastic or non elastic fluids. Making blades for propellers or turbines B21D 53/78 Making specific metal objects B23P 15/00 Machine elements in general F16 7

F04D 29/00 (continued) CPC - F04D - 2017.05 In main group F04D 29/00 each sub group is subdivided in two further subgroups, one for elastic fluids and another on for non elastic fluids. By way of example: F04D 29/02 has a subgroup F04D 29/023 covering the elastic fluids, and another subgroup F04D 29/026 covering the non elastic fluids. However for the subgroups relating to bearing and shafts (F04D 29/04 and F04D 29/05) and rotors (F04D 29/18 and F04D 29/26) specific subgroups are provided for elastic fluids and non-elastic fluids. F04D 31/00 Pumping liquids and elastic fluids at the same time Pumping liquids and elastic fluids at the same time, i.e. one pump handles both elastic and non elastic fluids together. Obtaining oil, gas, water from deep wells E21B F04D 33/00 Non-positive-displacement pumps with other than pure rotation, e.g. of oscillating type (F04D 35/00 takes precedence; hand-held fans A45B) Non-positive-displacement pumps with other than pure rotation. Some examples are mechanisms imitating the movement of a bird wing or a fish tale, or the movement produced by humans when using a hand fan. Wave generators F04D 35/00 F04D 35/00 Pumps producing waves in liquids, i.e. wave-producers (for bath tubs A47K 3/10) Non-positive-displacement pumps for the generation of waves. 8

F04D 35/00 (continued) CPC - F04D - 2017.05 Wave generators for baths and tubs A47K 3/10 Swimming pools E04H 4/00 9