ITT BPHV manual Volumetric Capacity, Pressure and Head, Length

Page 49

VOLUMETRIC CAPACITY

Litres

Cubic metres

Cubic feet

Cubic feet

Imp. gal.

US gal.

per minute

per hour

per hour

per minute

per minute

per minute

l/min

m3/h

ft3/h

ft3/min

Imp. gal/min

Us gal./min

1,0000

0,0600

2,1189

0,0353

0,2200

0,2640

16,6670

1,0000

35,3147

0,5886

3,6660

4,4030

0,4720

0,0283

1,0000

0,0167

0,1040

0,1250

28,3170

1,6990

60,0000

1,0000

6,2290

7,4800

4,5460

0,2728

9,6326

0,1605

1,0000

1,2010

3,7850

0,2271

8,0209

0,1337

0,8330

1,0000

0,1100

0,0066

0,2339

0,0039

0,0240

0,0290

PRESSURE AND HEAD

Newtons per

kilopascal

bar

Pound force

metre

millimetre

square metre

 

 

per square inch

of water

of mercury

N/m2

kPa

bar

psi

m H2O

mm Hg

1,0000

0,0010

1 x 105

1,45 x 10-4

1,02 x 10-4

0,0075

1000,0000

1,0000

0,0100

0,1450

0,1020

7,5000

100000,0000

100,0000

1,0000

14,5000

10,2000

750,1000

98067,0000

98,0700

0,9810

14,2200

10,0000

735,6000

6895,0000

6,8950

0,0690

1,0000

0,7030

51,7200

2984,0000

2,9840

0,0300

0,4330

0,3050

22,4200

9789,0000

9,7890

0,0980

1,4200

1,0000

73,4200

133,3000

0,1330

0,0013

0,0190

0,0140

1,0000

3386,0000

3,3860

0,0338

0,4910

0,3450

25,4000

LENGTH

millimetre

centimetre

metre

inch

foot

yard

mm

cm

m

in

ft

yd

1,0000

0,1000

0,0010

0,0394

0,0033

0,0011

10,0000

1,0000

0,0100

0,3937

0,0328

0,0109

1000,0000

100,0000

1,0000

39,3701

3,2808

1,0936

25,4000

2,5400

0,0254

1,0000

0,0833

0,0278

304,8000

30,4800

0,3048

12,0000

1,0000

0,3333

914,4000

91,4400

0,9144

36,0000

3,0000

1,0000

VOLUME

cubic metre

litre

millilitre

imp. gallon

US gallon

cubic foot

m3

litre

ml

imp. gal.

US gal.

ft3

1,0000

1000,0000

1 x 106

220,0000

264,2000

35,3147

0,0010

1,0000

1000,0000

0,2200

0,2642

0,0353

1 x 10-6

0,0010

1,0000

2,2 x 10-4

2,642 x 10-4

3,53 x 10-5

0,0045

4,5460

4546,0000

1,0000

1,2010

0,1605

0,0038

3,7850

3785,0000

0,8327

1,0000

0,1337

0,0283

28,3170

28317,0000

6,2288

7,4805

1,0000

49

Image 49
Contents Goulds Pumps Goulds Pumps ContentsSSV Flow PHV Series constant pressure variable speed system Main ComponentsHV M 3 4 Part Numbering / Identification Codes PHV SeriesMarkets and Applications SpecificationsMarkets Served MUNICIPAL, COMMERCIAL, IndustrialIrrigation and Agriculture Applications Further information is available in the Hydrovar manual Reference Standards SV33 and 46 MULTI-STAGE PumpsANSI/NSF 61 certified by CSA for potable drinking water Hydrovar Versions Standard Optional Features VersionsIntroduction Application Example MULTI-PUMP Cascade Operation Description Operating Characteristics and LimitsNoise Emission Levels 60 Hz 3500 RPM LpA dB ±4Calculating the Flow Rate Selecting a SETCustomer Supplied Fused Disconnect BOXHydrovar VFD Motor Install Power Supply3500 RPM, 60 Hz Motor DataSizing the Diaphragm Tank in Systems with Speed Variation Performance with Varying Speed for Centrifugal PumpsMake the following calculation 1SV Variable Speed Curve Ssvb 304SS Variable Speed Performance CurvesModel 1SVB 6 Stage Hydraulic DataNpsh R Model 1SVB 9 StageModel 1SVB 15 Stage Model 2SVB 5 Stage 2SV Variable Speed Curve Ssvb 304SSModel 2SVB 8 Stage Model 2SVB 13 Stage Model 3SVB 7 Stage 3SV Variable Speed Curve Ssvb 304SSModel 3SVB 9 Stage Model 3SVB 13 Stage US GPM Feet Model 4SVB 2 StageModel 4SVB 4 Stage 4SV Variable Speed Curve Ssvb 304SSModel 4SVB 7 Stage Model 33SVB 1/1 Stage 33SV Variable Speed Curve SVB CI/316SSModel 33SVB 1 Stage Model 33SVB 2/1 Stage Model 33SVB 3/1 Stage Model 46SVB 1/1 Stage 46SV Variable Speed Curve SVB CI/316SSModel 46SVB 1 Stage 1SV 3500 RPM Technical Data Pump Hydraulics / Motor Sizing2SV 3500 RPM 3SV 3500 RPM33SV 3500 RPM 4SV 3500 RPM66SV 3500 RPM 46SV 3500 RPMMaximum Inlet Pressure Technical DataTefc PHV Packaged Hydrovar Series 1SVBPHV Packaged Hydrovar Series 2SVB PHV Packaged Hydrovar Series 3SVB PHV Packaged Hydrovar Series 4SVB PHV Packaged Hydrovar Series 33SVB PHV Packaged Hydrovar Series 46SVB Npsh Cubic ft/lb @ 39.2ºF @ 60ºF @ 68ºF Lb/cubic ft Psi Abs Technical Data Water Property ChartVolume Volumetric CapacityPressure and Head LengthGoulds Pumps Page Engineered for life

BPHV specifications

ITT BPHV, short for ITT's Bacterial Purified Water and High Purity Valves, represents a breakthrough in the field of fluid control technology, particularly designed for applications requiring the highest standards of cleanliness and reliability. These valves are typically utilized in industries where the quality of fluid handling is crucial, such as pharmaceuticals, biotechnology, and food and beverage manufacturing.

One of the standout features of the ITT BPHV is its ability to handle both high purity and aggressive fluids without compromising system integrity or cleanliness. The design focus on valve components ensures that they are free from contaminants, which is essential for processes where even minute impurities can lead to significant quality issues.

The materials used in the construction of ITT BPHV valves are particularly noteworthy. They feature advanced polymers, stainless steel, and other corrosion-resistant materials that withstand the rigors of high-purity applications. These materials not only ensure durability and longevity but also meet stringent industry standards for safety and compliance.

Innovative technologies integrated into ITT BPHV valves enhance their performance. These include advanced actuation systems that allow for precise control and responsiveness, ensuring that the flow of fluids can be managed effectively, even in highly dynamic environments. Additionally, the valves are designed to facilitate easy maintenance, with features that allow for quick disassembly and cleaning without the need for specialized tools.

Another vital characteristic of ITT BPHV valves is their compact design, which maximizes space efficiency within installations. This is particularly beneficial in industries where real estate is at a premium and where large equipment can impede operational efficiency. The modularity of the valve design also means that it can be adapted easily to different system configurations.

Furthermore, ITT BPHV valves are engineered with safety in mind. They incorporate features such as fail-safe functionality and pressure regulation, providing operators with peace of mind during critical operations. The seamless integration of these valves into automated systems enhances productivity by enabling consistent and reliable fluid movement.

Overall, ITT BPHV stands as a pioneer in high purity fluid handling, offering cutting-edge technology and robust engineering to meet the demands of modern industries. With their focus on cleanliness, reliability, and operational efficiency, these valves are an essential component for any facility striving for excellence in fluid management.