- 電動(dòng)試壓泵系列
- 電動(dòng)試壓泵2D-SY
- 電動(dòng)試壓泵3D-SY
- 電動(dòng)試壓泵4D-SY
- 集成式電動(dòng)試壓泵
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- 電動(dòng)試壓泵2DSY型
- 電動(dòng)試壓泵2D-SY
- 電動(dòng)試壓泵3DSY型
- 試壓泵3D-SY小型
- 電動(dòng)試壓泵3D-SY型
- 電動(dòng)試壓泵4DSY型
- 電動(dòng)試壓泵4D-SY
- 電動(dòng)試壓泵4D-SY立式
- 大流量電動(dòng)試壓泵
- 大流量電動(dòng)試壓泵
- 超高壓電動(dòng)試壓泵
- 超高壓電動(dòng)試壓泵
- 氣動(dòng)試壓泵QY140
- 氣動(dòng)試壓泵單缸
- 氣動(dòng)試壓泵QY140
- 氣動(dòng)試壓泵QY140A
- 老式QY氣動(dòng)試壓泵
- 氣動(dòng)試壓泵QST型
- 氣動(dòng)試壓泵QST系列
- 氣動(dòng)試壓臺(tái)QST系列
- 氣動(dòng)試壓泵超高壓
- 液壓閥門試驗(yàn)臺(tái)
- 防噴器遠(yuǎn)程控制裝置
- 試壓泵曲線記錄儀
- 試壓泵數(shù)顯表式
- 試壓泵數(shù)顯記錄儀
- 計(jì)算機(jī)控制試壓泵
- 計(jì)算機(jī)控制試壓泵
- 便攜式計(jì)算機(jī)試壓泵
- 壓力自控試壓泵遙控
- 試壓泵壓力自控遙控
- 變頻變流量試壓泵
- 試壓泵柴油機(jī)汽油機(jī)
- 柴油機(jī)汽油機(jī)試壓泵
- 電動(dòng)試壓泵裝備綜合
- 防噴器遠(yuǎn)程控制裝置
- 試壓泵控制系統(tǒng)配件
- 試壓系統(tǒng)控制軟件
- 試壓泵壓力集成閥
- 電氣控制系統(tǒng)
- 智能顯示儀表
- 試壓泵控制器
- 手動(dòng)試壓泵單缸雙缸
- 手動(dòng)試壓泵雙缸
- 手動(dòng)試壓泵單缸
太陽能電動(dòng)試壓泵國(guó)外客戶技術(shù)要求
來源:本站 添加時(shí)間:2015/12/15 17:28:18
太陽能電動(dòng)試壓泵國(guó)外客戶技術(shù)要求
太陽能電動(dòng)試壓泵是由一個(gè)12V直流電機(jī)供電,而不需要外部電源。通過利用太陽能,AGM高速密封鉛酸電池連續(xù)充電,使電池全天候提供能量的化學(xué)注射泵¬Tor。設(shè)計(jì)的系統(tǒng)能夠可靠運(yùn)行在最大音量上每天*少3.6的“太陽時(shí)間可以長(zhǎng)達(dá)5天的電池電源僅**。太陽能電動(dòng)試壓泵的可靠使用注射器頭,標(biāo)準(zhǔn)的3 / 8“直徑的不銹鋼柱塞。可在單或雙頭結(jié)構(gòu)鋼(標(biāo)準(zhǔn))或316不銹鋼封頭的腐蝕保護(hù)。抽水量,由XXX的自定義定時(shí)器控制,可以從1到5加侖每天有單頭和10加侖/日雙頭范圍。抽油量均勻地分散在24小時(shí)內(nèi)。3 / 8“柱塞允許泵壓力高達(dá)1200磅(磅每平方英寸)。柱塞最大不¬充氣壓力最大抽水量單頭雙頭3 / 8“1200磅5 GPD 10gpd
XXX Solar Powered Chemical Injection Pump Ø The xxx-xxx Solar Powered Chemical Injection Pump is powered by a 12VDC motor, but requires no external power source. Through use of solar energy, an AGM high-rate sealed lead acid battery is continuously recharged, allowing the battery to provide around-the-clock energy to the chemical injector pump. Ø The system has been designed to reliably operate at maximum volume on as little as 3.6 ‘Sun-hours per day’* and can operate up to 5 days on battery power alone.** Ø The XXX-xxx uses XXX’s reliable injector heads, standard with 3/8" diameter stainless steel plunger. Ø Available in either single or double head configurations with steel (standard) or 316 stainless steel heads for corrosion protection. Ø The pumping volume, controlled by XXX’s custom timer, can range from 1 to 5 gallons per day with a single head and up to 10 gallons per day with dual heads. The pumping volume is dispersed evenly over a 24 hour period. The 3/8" plunger allows for pumping pressures up to 1200 psi (lbf per square inch). PLUNGER MAXIMUM DISCHARGE PRESSURE MAXIMUM PUMPING VOLUME SINGLE HEAD DOUBLE HEAD 3/8" 1200 PSI 5 GPD 10GPD ELECTRICAL SYSTEMS The electrical panel contains two female quick-connectors (XXX-1294). One will be joined to the solar panel wires and comes directly out of the SunSaver Solar Controller “Solar” terminals, marked “4” and “3”. The other one will be joined to the motor wires and has an inline fuse placed in its positive wire. The electrical panel also contains three ring terminals that will connect to the positive (+) terminal of the battery and two ring terminals that will connect to the negative (-) terminal of the battery. ELECTRICAL CONTROL PANEL OPERATION PUMPING VOLUME Pumping Volume is controlled by XXX’s XXX‑1240 Timer and Switch Bank. The timer is pre-programmed for a range of pumping volumes from 1 gallon per day (GPD) up to 10 gallons per day. Two undefined program slots are available, should you require a daily pumping volume not pre-programmed into the unit. (This will need to be done by XXX Engine Company prior to shipping of the unit.) Pumping volumes are selected by using the bank of four switches and setting them in a combination of ‘UP’ (1) and ‘DOWN’ (0) positions. The table shows pumping volumes for either single head pump or dual head pump configurations, along with the appropriate combination of switch selections. The timer operates on a preset ON/OFF cycle, programmed to inject the selected volume evenly over a 24 hour period. The ON time is divided evenly every minute to provide the selected GPD of volume. For example, for a double head unit with the switch bank set to 0000 (all switches down), the pumping volume will be 10 gallons injected over a 24 hour period, and the pump will operate ON for 5.62 seconds, then OFF for 54.38 seconds every minute. VOLTAGE The XXX timer also has a built-in function to monitor battery voltage and adjust the pump run time should the voltage begin to decrease (i.e. in the rare case that there is a prolonged period with low amounts of sunlight). This prevents the battery from fully discharging (prolonging battery life), and allows for the battery to have longer recover times in between motor operations. This allows pumping to continue at decreased volumes without complete shut-down. There is, however, a complete shutoff setting should the battery voltage. drop below 9.8 volts. This is to prevent the motor from overheating. Normal operation will resume once the battery voltage recovers to a safe level for motor operation. There are four (4) modes of operation: Full Volume, ¾ Volume, ½ Volume, and Off. The Voltage Transitions Hysteresis Diagram shows the timing and battery voltage operation with the transition points. Hysteresis is provided to prevent oscillation around the transition points while changing from mode to mode. Orientation Your solar panel should be oriented directionally so that it faces True South. These orientation guidelines are intended for installations located in the Northern Hemisphere. If your installation is in the Southern Hemisphere, the directional positioning and season adjustment should be reversed. GENERAL ORIENTATION The general convention, and an efficient orientation, is to set the angle of tilt of your solar panel equal to the degree of latitude from horizontal of your installation during the Spring and Autumn months, adding 15° of angle (from horizontal) in the Winter, and subtracting 15° of angle (from horizontal) in the Summer. OPTIMIZED ORIENTATION An additional 3-5% of solar efficiency can by achieved by using the following orientation method. 1. The Spring and Autumn orientation angle from horizontal is equal to the degree of latitude of your location minus (-) 2.5°. 2. Calculate the Winter orientation angle from horizontal using the formula: Solar Panel Angle = (Latitude * 0.9) + 29° 3. The Summer orientation angle is 52.5° less than the Winter angle. Maintenance GENERAL The Solar Panel should only require minimal maintenance. Adjust the angle of orientation according to the time of year. Keep the panel free of snow and other debris, periodically wiping the surface to keep it clean. This will maximize the energy transferred from the panel to the battery. ADJUSTING AND REPLACING HEAD, PLUNGER, & PACKING Although the pump and motor unit comes completely assembled, periodic adjustment may be necessary. After time, it may be necessary to replace some of the internal components. Additionally, head, plunger, and packing replacement will be necessary, as these components are in contact with harsh chemicals.