PUMPMAN Ibrahim Hussein EGYPTIAN Born in 1953 Graduated in 1979 Faculty of Engineering: Mechanical DPT Aviation & Aero-Space Project (missiles)

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PUMPMAN Ibrahim Hussein EGYPTIAN Born in 1953 Graduated in 1979 Faculty of Engineering: Mechanical DPT Aviation & Aero-Space Project (missiles) Working in Pumps since 1980 GOULDS Application ENG. : 80-84 GORMAN RUPP: Area Manager in Arab Gulf Countries: 85-89 TECH. Support Manager, ORASCOM:1997-2004 Pump Business expert, since 2005 Now : SEDRA vice president

ASHRAE CAIRO CHAPTER PUMPMAN LECTURE 21 st of June, 2009 PUMPS-YSTEMS INTERACTION 3

بسم االله الرحمن الحيم اللذين قال لهم الناس إن الناس قد جمعوا لكم فاخشوهم فزادهم إيمانا و قالوا حسبنا االله و نعم الوآيل فانقلبوا بنعمة من االله و فضل لم يمسسهم سوء صدق االله العظيم ONE MAN CAN MAKE A DIFFERENCE 4

ASHRAE CAIRO CHAPTER How you can contact PUMPMAN By Phone: 3386 8812 By Mobile: 012 04 12 538 By e-mail: 5

ASHRAE CAIRO CHAPTER Pumpman is about to close his 30th year at work in pumps 6

PUMPMAN LECTURE: IMPELLERS 33868812-0120412538 Questions System Design Sales Support Marketing Support Spares & After-sales Support Problem analysis Fairs & Forums Training & Coaching JUST ASK YOU The most economical SOLUTION In the market of PUMPS ME Value ONE MAN CAN MAKE A DIFFERENCE 7

PUMPMAN LECTURE: PUMPS SYSTEMS INTERACTION 33868812-0120412538 PUMPS CONTINUOUS FLOW PUMPS INTERMITTENT FLOW PUMPS STANDARD IMPELLER PUMPS MODIFIED IMPELLER PUMPS ROTAING RECIPROCATING PUMPS PUMPS SWASH PLATE PUMPS PERIPHERAL PUMPS AXIAL FLOW PUMPS MIXED FLOW PUMPS RADIAL FLOW PUMPS Regenerative Rotating Jet NON IMPELLER PUMP Bubble Maxwell Ejector GEAR PISTON SCREW PLUNGER LOBE puppet DIAPHRAGM SCROLL VANE PROGRESSIVE CAVITY CENTRIFUGAL PUMPS ANCIENT EGYPTIAN PUMP Archimedian Pump 8

PUMPS SYSTEMS INTERACTION CENTRIFUGAL PUMPS Classification, w.r.t: IMPELLER w.r.t BEARINGS Over Hung - In Between ORIENTATION of ROTATING AXIS Horizontal Vertical - Inclined ORIENTATION of VOLUTE SPLITTING Horizontal Vertical - Inclined NUMBER of IMPELLERS (Stages) Single Double - Multi INPELLER FACING SUCTION SPLITTING VOLUTE SPLITTING N E X T Single Face Impeller Double Face Impeller Single Suction Double Suction Single Volute Double Volute 9

PUMPS SYSTEMS INTERACTION CENTRIFUGAL PUMPS Construction Materials: ALL METAL PUMP ALL IRON PUMP Ferrous Alloys NON METALLIC PUMP Chemical Pump Cast Iron Cast Steel Special Steel Alloy ALL BRONZE PUMP BRONZE FITTED PUMP ALL St.St PUMP HOW WE SHOULD SPECIFY HVAC PUMP 10

PUMPMAN LECTURE: PUMPS SYTEM INTERACTION System Impact on Impeller WHAT MAKES PUMP PUMPING? * Suitable suction conditions * Correct direction of Rotation * Enough Energy to overcome flow resistances 11

PUMPMAN LECTURE: PUMPS SYTEM INTERACTION System Impact on Pump A tip for my Jr. Engineers: Butterfly Style Don t use it BE WARE Of PAINFUL Fingers Spider Style Preferred 12

PUMPMAN LECTURE: 33868812-0120412538 System Impact on a Pump -Suitable Suction Conditions -Proper Direction of Rotation Usually Counter Clockwise - Enough Energy: P= Q x H x f x constant Eta One Man Can Make a Difference 13

Pumps Systems Interaction What is bringing together these apparently different pumps? Pipe Line Booster Pump Hi P Pump, Barleif Buster Aquarium Circulating Pump Rocket Liquid Fuel Turbo Pump 14

PUMPMAN LECTURE: PUMPS SYTEM INTERACTION PUMPS SYSTEMS INTERACTION The Shown Performance Curve is a general NON OPERATIVE pump curve This CURVE: 15

PUMPMAN LECTURE: PUMPS SYTEM INTERACTION PUMPS SYSTEMS INTERACTION Pump Performance curve becomes OPERATIVE when it is superimposed by the System Head Curve 16

System Impact on Impeller PERFORMANCE CURVE Pump Type Pump Size Fixed Diameter Type Fixed Speed Type Enclosed Impeller Shrouded Impeller Rotating Speed Maximum Diameter Less than Cutwater D Minimum Diameter Larger than Hub D DUTY POINT: Location: - Over / Under Sizing - Sh. Off / Min. Flow / CAV - B.HP: working / duty - Eta: working / duty - NPSHr $ $ 17

SYSTEM HEAD CURVE SHC consists of two components: The Static Loses: Which is a vertical component on the H axis and equals: The static lift of the fluid from its drawn level to its pumped level The Dynamic Loses: Which is a parabolic part of the curve starts where the Hs ends and equals: the sum of all dynamic loses due to: -The intake velocity -Friction with internal pip walls 18

SYSTEM HEAD CURVE Dialoging With Audience 19

SYSTEM HEAD CURVE With constant speed pumps: Use Flat curve and multipumps in duty according to the demand 20

SYSTEM HEAD CURVE With Milti-fixed speed pumps The multi pump fixed speed systems prefer A steeper curve When the pumps add in parallel the summation curve becomes flatter = better performance One pump curve Two pumps curve 21

SYSTEM HEAD CURVE The multi pump fixed speed systems prefer A steeper curve When the pumps add in parallel the summation curve becomes flatter = better performance one pump curve two pumps curve Adding makes flatter curve 22

SYSTEM HEAD CURVE with VSD pump The VSD pump may prefer a flatter curve, yet not so much flat The VSD margin is about 30% of maximum speed The generated curves are not forming parallel twins at different speeds The lower the speed the flatter the curve becomes When the pump perform at lower speed the curve becomes flatter yet with lower performance characteristics 23

SYSTEM HEAD CURVE With constant speed pumps: Use Flat curve and a single o r two pumps in duty according to the demand FLATTER or STEEPER Only Rate of change of H w.r.t Q Will tell: H0.5 = H at 0.5 Q BEP H1.5 = H at 1.5 Q BEP H 5 = H0.5 / H1.5 H 5 = 0.35 or lesser, FLAT H 5 = 0.65 or more, STEEP 0.35 < H5 < 0.65 QUASI-CIRVE The Best for multiple systems 24

SYSTEM HEAD CURVE With constant speed pumps: Use Flat curve and a single o r two pumps in duty according to the demand 25

WHAT is a PROPER SUCTION? 26

SYSTEM HEAD CURVE What makes a curve,,,, A Steeper curve OR A Flatter curve The H-Q gradient: dh/dq The Pumpman QUASI CURVE formula is a good measure of dh/dq 27

PUMPMAN LECTURE: IMPELLERS 33868812-0120412538 How to get Actual Duty Point? Evaluate the process Flow Rate as a figure in GMP Get its 50% and 150%, at least Use the 3 values to obtain the The TDH per each from tables or formula : by adding the static head to losses of both suction and discharge The obtained 3 values allow you to draw the curve in RED Which is the SHC System Head Curve 28

Have YOU Gotten SOMETHING NEW? Break 29

Have YOU Gotten SOMETHING NEW? WORK is... Torture Punishment Routine Mission Pleasure next 30

Have YOU Gotten SOMETHING NEW? WORK Is Pleasure To make like that: Keep working with, The Passion of a BEGINNER The Commitment of a Expert And The Seriousness of a PRO Before END 31

Have REMEMBER ME YOU Gotten SOMETHI NG NEW? Pumpman 33868812 0120412538 Epumpman21@ yahoo.com END 32