Geotech 1.66 Auto-Reclaimer Installation and Operation

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Transcription:

Geotech 1.66 Auto-Reclaimer Installation and Operation Rev 10/19/12 Part # 16600165

TABLE OF CONTENTS CHAPTER 1: SYSTEM DESCRIPTION... 3 FUNCTION AND THEORY... 3 SYSTEM COMPONENTS... 4 CHAPTER 2: SYSTEM INSTALLATION... 5 TOP FILL... 5 BOTTOM FILL... 5 DUAL FILL... 7 CHAPTER 3: SYSTEM OPERATION... 8 TOP FILL... 8 BOTTOM FILL... 8 DUAL FILL... 9 CHAPTER 4: SYSTEM MAINTENANCE... 12 CHAPTER 5: SYSTEM TROUBLESHOOTING... 13 CHAPTER 6: SYSTEM SPECIFICATIONS... 14 CHAPTER 7: REPLACEMENT PARTS LIST... 19 THE WARRANTY... 20 EQUIPMENT RETURN POLICY... 20 EQUIPMENT DECONTAMINATION... 20 1

DOCUMENTATION CONVENTIONS This manual uses the following conventions to present information: WARNING An exclamation point icon indicates a WARNING of a situation or condition that could lead to personal injury or death. You should not proceed until you read and thoroughly understand the WARNING message. CAUTION A raised hand icon indicates CAUTION information that relates to a situation or condition that could lead to equipment malfunction or damage. You should not proceed until you read and thoroughly understand the CAUTION message. NOTES A note icon indicates NOTE information. Notes provide additional or supplementary information about an activity or concept. 2

Chapter 1: System Description Function and Theory The GEOTECH 1.66" Auto-Reclaimer top fill, bottom fill, or top/bottom fill system is a fixed intake, automatic total fluids recovery pump. The 1.66" Auto-Reclaimer will recover fluids from depths of up to 250 ft. The GEOTECH Auto-Reclaimer is an automatic and controllerless, positive air-displacement pump. The Auto-Reclaimer works without the use of any external controls, relays, bleeder tubes or bubblers. The Auto- Reclaimer requires only a regulated compressed air source to operate. The Auto-Reclaimer requires an operating pressure of only 1 PSI above static head. The Auto-Reclaimer does not require clean, dry air to function properly, and can operate on contaminated or industrial air. The GEOTECH Auto-Reclaimer can operate under both positive and *negative (vacuum) pressure environments. The Auto-Reclaimer selfadjusts the discharge flow rate automatically to match individual well recharge rates (up to the pumps maximum capacity). The Auto-Reclaimer will pump large particulates up to 1/16" in diameter without problems. The unique single self-cleaning valve mechanism will pass high viscosity gear oils without fouling. * Vacuum conditions may require a Vacuum Equalizer if venting out of the recovery well. Contact your technical sales representative for more information. 3

System Components The GEOTECH Auto-Reclaimer system components consist of an Upper Head Valve Assembly, Internal Float Assembly, Bottom Intake Assembly (for Bottom Fill, Top/Bottom Fill), and a Top Fill Intake Screen Assembly (for Top and Dual Fill Models) Upper Screened Intake Assembly (Top / Dual Fill Models) Fluid Discharge Assembly Upper Head Valve Assembly Pump Housing Internal Float Assembly Figure 1 Control Rod Center Pipe Bottom Plug (Top Fill Model) Bottom Intake (Bottom / Dual Fill Models) 4

Chapter 2: System Installation Top Fill Attach the hoses to the proper barbed fittings (see figure 2, page 7). Ensure that all hoses are installed securely and completely (Fluid intake assembly not shown). Ensure the eyebolt is threaded all the way to the fixed jam nut, and is securely tightened. Attach the pump hanging cable to the eyebolt; ensuring attachment method is secure and tight. The Auto-Reclaimer can now be lowered into the recovery well. The top fill Auto-Reclaimer is initially lowered into the well where the top inlet is submerged below static groundwater conditions. This allows floating product to enter through the top inlet to fill the housing and be pumped to the surface (see figure 3, page 11). Bottom Fill Attach the air inlet, product discharge, and the air exhaust hoses to the proper barbed fittings (see figure 2, page 7). Ensure the eyebolt is threaded all the way to the fixed jam nut, and is securely tightened. Attach the pump hanging cable to the eyebolt; ensuring attachment method is secure and tight. The Auto-Reclaimer can now be lowered into the recovery well. The bottom fill Auto-Reclaimer is initially lowered into the well where the bottom inlet is submerged well below static groundwater conditions (see figure 4, page 12. 5

Fluid Discharge Hanger Eyebolt Air Supply Air Exhaust (Vent) Figure 2 6

Dual Fill Attach the hoses to the proper barbed fittings (see figure 2, page 7). Ensure that all hoses are installed securely and completely. Ensure the eyebolt is threaded all the way to the fixed jam nut, and securely tightened. Attach the pump hanging cable to the eyebolt; ensuring attachment method is secure and tight. The Auto-Reclaimer can now be lowered into the recovery well. The Dual (top / bottom) fill Auto-Reclaimer is initially lowered into the well where the top inlet is submerged below static groundwater conditions. This allows floating product to enter through both the top and bottom inlets to fill the housing and be pumped to the surface. 7

Chapter 3: System Operation Compressed air is utilized in this system as an on demand supply. Typically,.5 cubic foot of air is necessary per gallon of liquid pumped. Top Fill The Auto-Reclaimer is placed in a recovery well with the top inlet submerged below static groundwater. Provided with a regulated air supply, the Auto-Reclaimer cyclically fills and empties. As the pump fills, the internal float assembly rises until it comes in contact with an upper stop that is connected to a mechanical rocker assembly. The rocker assembly shifts and simultaneously opens the air supply valve. The resulting effect is air pressure builds within the pump housing and displaces the fluids up and out of the pump through the discharge ball check valve. As the pump discharge cycle progresses, the float assembly falls. The float assembly contacts the lower stop, which triggers the rocker assembly, again shifting, thus closing the air supply valve and opening the air exhaust valve. The pressurized air exits out of the air exhaust tube, allowing the pump to refill and begin a new cycle. This cyclic operation continues automatically as fluid is drawn into the well. Bottom Fill The Bottom Fill Auto-Reclaimer is placed in a recovery well with the bottom intake submerged below static groundwater. Provided with a regulated air supply, the Auto-Reclaimer cyclically fills and empties. As the pump fills, the internal float assembly rises until it comes in contact with an upper stop that is connected to a mechanical rocker assembly. The rocker assembly shifts and simultaneously opens the air supply valve. The resulting effect is air pressure builds within the pump housing and displaces the fluids up and out of the pump through the discharge ball check valve. As the pump discharge cycle progresses, the float assembly falls. The float assembly contacts the lower stop, which 8

triggers the rocker assembly, again shifting, thus closing the air supply valve and opening the air exhaust valve. The pressurized air exits out of the air exhaust tube, allowing the pump to refill and begin a new cycle. This cyclic operation continues automatically as fluid is drawn into the well. The Auto-Reclaimer will ultimately catch up to the recharge rate of the well, (see specifications section, maximum flow rate). The fluid level will be maintained at the minimum activation level (see specifications), and the Auto-Reclaimer will pump at the rate equal to the recharge rate of the well. Dual Fill The Top/Bottom fill Auto-Reclaimer is placed in a recovery well with the top inlet submerged below static groundwater. Provided with a regulated air supply, the Auto-Reclaimer cyclically fills and empties. As the pump fills, the internal float assembly rises until it comes in contact with an upper stop that is connected to a mechanical rocker assembly. The rocker assembly shifts and simultaneously opens the air supply valve. The resulting effect is air pressure builds within the pump housing and displaces the fluids up and out of the pump through the discharge ball check valve. As the pump discharge cycle progresses, the float assembly falls. The float assembly contacts the lower stop, which triggers the rocker assembly, again shifting, thus closing the air supply valve and opening the air exhaust valve. The pressurized air exits out of the air exhaust tube, allowing the pump to refill and begin a new cycle. This cyclic operation continues automatically as fluid is drawn into the well. 9

Figure 3 10

Figure 4 11

Chapter 4: System Maintenance Maintenance Procedures Every 3-4 months or when deemed necessary, depending on fluids being pumped, the Auto-Reclaimer should be removed from the well and cleaned inside and out. This may be accomplished using an industrial cleaner, such as phosphate free detergent or Simple Green. The following areas should be examined: Float Assembly - Check for loose screws on float plates. Compression Springs - Check for proper spring geometry. Air Pressure Valve - Verify gap, adjust if necessary. Exhaust Valve - Verify gap, adjust if necessary. O-Rings - Visually inspect for damage. Stop Collar - Verify location distance from female spring guide (see figure below). Figure 5 Pump does not require clean dry air to operate. However, using dirty particulate filled air will increase maintenance frequency. 12

Chapter 5: System Troubleshooting Problem: Solutions: Pump does not discharge fluid to the surface. 1) Ensure air pressure is adequate enough. (See specifications section, min operating pressure example:.43 psi per ft. of static head pressure) 2) Inlet screen is clogged Clean screen 3) Inlet pipe plug is clogged Clear, Clean plug 4) Air exhaust vent hose is clogged Clear vent hose 5) Hoses are kinked or cut Replace hoses 13

48 GEOTECH 1.66 AUTO-RECLAIMER CONSTRUCTION MATERIALS HOUSING MATERIAL CONFIGURATION PUMP TYPE OUTSIDE DIAMETER LENGTH WEIGHT MAX. RATED DEPTH MIN. WELL ID OPERATING PRESSURE RANGE MIN. OPERATING PRESSURE AIR CONSUMPTION MIN. LIQUID DENSITY VOLUME / CYCLE MAXIMUM FLOW RATE MINIMUM ACTIVATION LEVEL FITTINGS HOSE SIZES FLUID DISCHARGE AIR SUPPLY AIR EXHAUST TEMPERATURE SPECIFICATIONS 48 DUAL (TOP / BOTTOM LOADING FIXED INTAKE CONTROLLERLESS POSITIVE AIR DISPLACEMENT 1.66 in. (4.22cm.) 56.3 in. (143.0cm.) 10 lbs. (4.5kg.) 250 ft. (152.4 m.) 2.0 in. (5.08cm.) STAINLESS STEEL, PTFE, Acetal, VITON STAINLESS STEEL 48 BOTTOM LOADING FIXED INTAKE CONTROLLERLESS POSITIVE AIR DISPLACEMENT 1.66 in. (4.22cm.) 54.7 in. (139.0cm.) 9.5 lbs. (4.3kg.) 250 ft. (152.4 m.) 2.0 in. (5.08cm.) 5-275 psi. (.3-18.9 bar) 1 psi. (.07 bar) above static head.4-1.3 scf / gal (3.0 / 9.7 liters air/liters (fluid) (see air consumption curve).7 SpG (gr/cc).11 gal. (.42 liters) 3.00 gpm. (11.36 lpm.) @ 20 ft. 2.75 gpm. (10.41 lpm.) @ 20 ft. submergence @ 100 psi submergence @ 100 psi 38.0 in. (96.5cm.) 38.0 in. (96.5cm.) STAINLESS STEEL (BARB TYPE) 1/2" X 3/8 MPT 1/4 X 1/8 MPT 1/4 X 1/8 MPT 220 F TOP TEMPERATURE FOR HDPE Chapter 6: System Specifications Figure 6 14

GPM 1.60 1.40 1.20 1.00 0.80 0.60 0.40 0.20 0.00 GEOTECH 1.66 AUTO-RECLAIMER 48" Top Loading Fixed Intake (1/2" ID Fluid Discharge Hose) 70 PSI 100 PSI 0 25 50 75 100 125 150 175 200 225 250 PUMP DEPTH (FT) 48 GEOTECH 1.66 AUTO-RECLAIMER ALL CALCULATIONS BASED ON MODEL GEO 1.66 W / MINIMUM 10 SUBMERGENCE OF PUMP HEAD 48 TOP LOADING FIXED INTAKE (1/2 ID Fluid Discharge Hose) 45 PSI NOTE: SPECIFIC GRAVITY AND VISCOSITY WILL ALTER LISTED SPECIFICATIONS Figure 7 15

2.50 2.00 1.50 1.00 0.50 0.00 0 25 50 75 100 125 150 175 200 225 250 PUMP DEPTH (FT) 48 GEOTECH 1.66 AUTO-RECLAIMER ALL CALCULATIONS BASED ON MODEL GEO 1.66 W / MINIMUM 10 SUBMERGENCE OF PUMP HEAD 48 BOTTOM LOADING FIXED INTAKE (1/2 ID Fluid Discharge Hose) GPM 45 PSI 70 PSI 100 PSI NOTE: SPECIFIC GRAVITY AND VISCOSITY WILL ALTER LISTED SPECIFICATIONS Figure 8 16

3.00 2.50 2.00 1.50 1.00 0.50 0.00 GEOTECH 1.66 AUTO-RECLAIMER 48" Dual Loading Fixed Intake (1/2" ID Fluid Discharge Hose) 0 25 50 75 100 125 150 175 200 225 250 depth 48 GEOTECH 1.66 AUTO-RECLAIMER ALL CALCULATIONS BASED ON MODEL GEO 1.66 W / MINIMUM 10 SUBMERGENCE OF PUMP HEAD 48 DUAL LOADING FIXED INTAKE (1/2 ID Fluid Discharge Hose) GPM 45 PSI 70 PSI NOTE: SPECIFIC GRAVITY AND VISCOSITY WILL ALTER LISTED SPECIFICATIONS 100 PSI Figure 9 17

SCF/gal 1.400 1.200 1.000 0.800 0.600 0.400 0.200 0.000 48"GEOTECH 1.66 AUTO-RECLAIMER AIR CONSUMPTION CURVES 1/2" ID FLUID DISCHARGE HOSE 100 psi 70 psi 45 psi 0 25 50 75 100 125 150 175 200 225 250 DEPTH OF PUMP IN WELL MAXIMUM AIR USE IN STANDARD CUBIC FEET (SCF) PER GALLON PUMPED 48 GEOTECH 1.66 AUTO-RECLAIMER AIR CONSUMPTION CURVES 1/2 ID FLUID DISCHARGE HOSE 45 PSI 70 PSI DEPTH OF PUMP IN WELL MAXIMUM AIR USE IN STANDARD CUBIC FEET (SCF) PER GALLON PUMPED 100 PSI Figure 10 18

Chapter 7: Replacement Parts List Parts List Parts Description 11150019 Ball, SS6 16600110 Spring, Compression, SS6 16600133 F, Bolt, Eye, SS4 16600160 Set Screw, Dog PT. 17200072 F, Hosebarb, SS6 (Air) 17200072 F, Hosebarb, SS6 (Vent) 17500082 Ball, SS6 17500084 Ball, TFE 26600036 Lower Stop 26600061 Housing, Outer, SS, 1.66 Auto 26600071 Head, Bottom Inlet, 1.66B Auto 26600072 Cap, Bottom Inlet, 1.66B Auto 26600078 Seat, Pres Valve, SS, 1.66 Auto 26600079 Seat, Vent Valve, SS, 1.66 Auto 26600083 Screen, Inlet, SS, 1.66 Auto 26600084 Hosebarb, SS, 1/2 x 3/8 MPT (Discharge) 26600086 Rod, Control, SS4, 1.66 Auto 48 26600130 Stop Collar 56600025 Assy, Float, 1.66 Auto 16600165 Manual 19

The Warranty For a period of one (1) year from date of first sale, product is warranted to be free from defects in materials and workmanship. Geotech agrees to repair or replace, at Geotech s option, the portion proving defective, or at Geotech s option to refund the purchase price thereof. Geotech will have no warranty obligation if the product is subjected to abnormal operating conditions, accident, abuse, misuse, unauthorized modification, alteration, repair, or replacement of wear parts. User assumes all other risk, if any, including the risk of injury, loss, or damage, direct or consequential, arising out of the use, misuse, or inability to use this product. User agrees to use, maintain and install product in accordance with recommendations and instructions. User is responsible for transportation charges connected to the repair or replacement of product under this warranty. Equipment Return Policy A Return Material Authorization number (RMA #) is required prior to return of any equipment to our facilities, please call 800 number for appropriate location. An RMA # will be issued upon receipt of your request to return equipment, which should include reasons for the return. Your return shipment to us must have this RMA # clearly marked on the outside of the package. Proof of date of purchase is required for processing of all warranty requests. This policy applies to both equipment sales and repair orders. FOR A RETURN MATERIAL AUTHORIZATION, PLEASE CALL OUR SERVICE DEPARTMENT AT 1-800-833-7958 Model Number: Serial Number: Date: Equipment Decontamination Prior to return, all equipment must be thoroughly cleaned and decontaminated. Please make note on RMA form, the use of equipment, contaminants equipment was exposed to, and decontamination solutions/methods used. Geotech reserves the right to refuse any equipment not properly decontaminated. Geotech may also choose to decontaminate equipment for a fee, which will be applied to the repair order invoice. 20

Geotech Environmental Equipment, Inc 2650 East 40 th Avenue Denver, Colorado 80205 (303) 320-4764 (800) 833-7958 FAX (303) 322-7242 email: sales@geotechenv.com website: www.geotechenv.com