CN204789428U - A device that is used for multi -functional solar energy gravity heat pipe power detection - Google Patents
A device that is used for multi -functional solar energy gravity heat pipe power detection Download PDFInfo
- Publication number
- CN204789428U CN204789428U CN201520503548.8U CN201520503548U CN204789428U CN 204789428 U CN204789428 U CN 204789428U CN 201520503548 U CN201520503548 U CN 201520503548U CN 204789428 U CN204789428 U CN 204789428U
- Authority
- CN
- China
- Prior art keywords
- cooling
- way connection
- heat pipe
- water tank
- case
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Withdrawn - After Issue
Links
Landscapes
- Investigating Or Analyzing Materials Using Thermal Means (AREA)
Abstract
The utility model provides a device that is used for multi -functional solar energy gravity heat pipe power detection, includes support, electric heating box, waters heating cabinet, coolant tank and flat board, the articulated installation on the support in dull and stereotyped middle part both sides, the coaxial coupling has the rotation motor on the dull and stereotyped rotation axis, and the rotation motor passes through the control line and connects the computer, and electric heating box, waters heating cabinet and coolant tank are installed to dull and stereotyped top surface, electric heating box and the installation of waters heating cabinet parallel arrangement, coolant tank installs on the slide rail of electric heating box and waters heating cabinet one side and follows the slide rail and remove, the installation direction of solar energy gravity heat pipe in parallel electric heating box of slide rail direction perpendicular to and the waters heating cabinet. The utility model discloses a design two kinds no the heating box, satisfy the measuring demand of the solar energy gravity heat pipe in different fields. The utility model discloses an electric heating box of design open -close type, multilayer even heating has further improved solar energy gravity heat pipe heat transfer power detection precision, the utility model discloses a design single coolant tank, the power detection's that has guaranteed to conduct heat under two kinds of different heating phase the degree of accuracy.
Description
Technical field
The utility model relates to the device that a kind of solar pipe detects, and especially relate to a kind of device for multifuctional solar gravity assisted heat pipe power detection.
Background technology
Gravity assisted heat pipe is a kind of device that fast heat energy can be reached another point from a bit, and because it has extraordinary thermal conduction capability, and almost do not have thermal losses, therefore it is referred to as heat transfer superconductor, and its coefficient of heat conductivity is thousands of times of copper.When one end of heat pipe is heated, the liquid carburation by evaporation in capillary wick, steam flows to other end releasing heat and condenses into liquid under small pressure reduction.Liquid flows back to evaporator section along porosint by the effect of capillary wick again, and so endlessly, heat reaches the other end from one end of heat pipe in circulation.When heat pipe tilts or when vertically placing, its working medium circulate by the impact of gravity, evaporator section can be placed in below, then the liquid working substance of condensation up can be back to evaporator section by gravity, therefore can not adopt liquid-sucking core, Here it is gravity assisted heat pipe.Gravity assisted heat pipe, work refluxes in heat pipe by gravity, without the need to adopting liquid-sucking core, this reduces the difficulty of processing of heat pipe, reducing manufacturing cost, be widely used in each field.
Sun power gravity assisted heat pipe heat transfer property directly has influence on thermal-arrest (hot water) device overall thermal performance, and GB GB/T24767-2009 " sun power gravity assisted heat pipe " directly defines sun power gravity assisted heat pipe heat power test method and requirement especially.
In the important indicator that middle sun power gravity assisted heat pipe heat power is sun power gravity assisted heat pipe quality, it embodies the heat-transfer capability of sun power gravity assisted heat pipe, and it is guarantee to solar water heater product quality that sun power gravity assisted heat pipe carries out that heat power detects.Because sun power gravity assisted heat pipe is before substantially in pot-type boiler, serviceability temperature is lower than 100 DEG C, therefore Heating Water method is all adopted to detect heat power at present, but due to the continuous expansion of new energy field, sun power gravity assisted heat pipe is also large-scale at present to be used with commercial production, its environment for use needed is far longer than 100 DEG C, and the highest environment for use of sun power gravity assisted heat pipe produced at present is also much larger than 100 DEG C, therefore need to develop new detection platform to detect the heat power of sun power gravity assisted heat pipe, and realize the detection of maximal heat transfer power accurately.
Utility model content
Few in order to solve the existing sun power sun energy gravity assisted heat pipe heat power checkout equipment scope of application, the maximal heat transfer power of current new type solar energy gravity assisted heat pipe product cannot be detected, and the problem such as pick-up unit automaticity is not high, the utility model object provides a kind of device for multifuctional solar gravity assisted heat pipe power detection.
The technical solution adopted in the utility model comprises:
The utility model comprises support, electrical heating case, Heating Water case, cooling water tank and flat board; Both sides, dull and stereotyped middle part are hingedly mounted on support, dull and stereotyped turning axle is coaxially connected with rotary electric machine, rotary electric machine connects computer by control line, dull and stereotyped end face is provided with electrical heating case, Heating Water case and cooling water tank, electrical heating case and Heating Water case parallel to the layout and installation, the slide rail that cooling water tank is arranged on electrical heating case and Heating Water case side moves along slide rail, and slide rail direction is perpendicular to the installation direction of sun power gravity assisted heat pipe in parallel electrical heating case and Heating Water case.
The cooling iron pipe for installing sun power gravity assisted heat pipe condensation segment is provided with in described cooling water tank, cooling iron pipe is cooling opening towards one end of Heating Water case and electrical heating case, the other end is closed, the both sides of cooling water tank are connected to the first cooling three-way connection and the second cooling three-way connection, first cooling three-way connection is connected cryogenic thermostat water tank with the second cooling three-way connection and it is built with temperature sensor, is filled with insulation asbestos between cooling iron pipe and cooling water tank inwall.
One end of the first described cooling three-way connection connects the close cooling opening part of cooling iron pipe through internal pipeline, one end of the second cooling three-way connection connects the blind end of cooling iron pipe through internal pipeline; All temperature sensor is equipped with in the other end of the first cooling three-way connection and the second cooling three-way connection, temperature sensor connects computer, the middle ends of the first cooling three-way connection and the second cooling three-way connection is all communicated to cryogenic thermostat water tank through attemperater, and the attemperater between the second cooling three-way connection and cryogenic thermostat water tank is provided with electromagnetic flowmeter.
The Heating Water iron pipe for installing sun power gravity assisted heat pipe evaporator section is provided with in described Heating Water case, Heating Water iron pipe is Heating Water opening towards one end of cooling water tank, the other end is closed, the side of Heating Water case is connected to the first waters three-way connection and the second waters three-way connection, first waters three-way connection is connected high temperature constant temperature water tank with the second waters three-way connection and it is built with temperature sensor, is filled with insulation asbestos between Heating Water iron pipe and Heating Water chamber interior wall.
One end of the first described waters three-way connection connects the blind end of Heating Water iron pipe through internal pipeline, one end of the second waters three-way connection connects the close Heating Water opening part of Heating Water iron pipe through internal pipeline; All be equipped with temperature sensor in the other end of the first waters three-way connection and the second waters three-way connection, temperature sensor connects computer, and the middle ends of the first waters three-way connection and the second waters three-way connection is all communicated to high temperature constant temperature water tank through attemperater.
Upper box and lower box is comprised in described electrical heating case, hinged by metal hinge between upper box and the side of lower box, metal buckle for folding being installed between opposite side, in upper box and lower box, being provided with the copper pipeline of spill, filling with being incubated asbestos in upper box and lower box; The copper duct bottom of spill is placed with heat tape, and the copper pipeline of spill is electrical heating opening towards one end of cooling water tank, and the other end is closed, and be provided with porcelain block and SMD temperature sensor in the copper pipeline of spill, SMD temperature sensor is connected with computer.
Described porcelain block is fixedly mounted on 1/3,2/3 place of the copper pipeline of spill, and SMD temperature sensor is placed on the centre of the copper pipeline of spill.
In described Heating Water case, between Heating Water iron pipe and inwall, be filled with insulation asbestos.
The beneficial effect that the utility model has is:
The utility model, by design two kinds of no heating compartment, meets the detection demand of the sun power gravity assisted heat pipe of different field.The utility model, by the electrical heating case of design open-close type, multilayer homogeneous heating, further increases sun power gravity assisted heat pipe heat power accuracy of detection; The utility model, by the single cooling water tank of design, ensure that the accuracy that heat power detects under two kinds of different heating states.
It is single that the utility model well solves the current pick-up unit of current change, cannot the situation of the sun power gravity assisted heat pipe maximal heat transfer power of testing environment more than 100 DEG C, provide a kind of brand-new checkout equipment, facilitate the development of sun power gravity assisted heat pipe industry.
Accompanying drawing explanation
Accompanying drawing 1 is the structural representation of the utility model device.
Accompanying drawing 2 is structural representations of the utility model Heating Water case.
Accompanying drawing 3 is Fig. 2 cross section A-A schematic diagram and structural representation.
Accompanying drawing 4 is structural representations of the utility model electrical heating case.
Accompanying drawing 5 is Fig. 4 section B-B schematic diagram and structural representation.
Accompanying drawing 6 is structural representations of the utility model cooling water tank.
Accompanying drawing 7 is Fig. 6 section C-C schematic diagram and structural representation.
In figure: 1, Heating Water case, 2, dull and stereotyped, 3, slide rail, 4, cooling water tank, 5, electrical heating case, 6, rotary electric machine, 7, computer, 8, bearing, 9, support, 10, first waters three-way connection, 11, second waters three-way connection, 12, control line, 13, high temperature constant temperature water tank, 14, attemperater, 16, Heating Water iron pipe, 17, insulation asbestos, 18, temperature sensor, 20, Heating Water opening, 21, the copper pipeline of spill, 22, SMD temperature sensor, 24, electrical heating opening, 25, upper box, 26, lower box, 27, metal buckle, 28, porcelain block, 29, heat tape, 30, cryogenic thermostat water tank, 33, first cooling three-way connection, 34, second cooling three-way connection, 35, cooling opening, 36, electromagnetic flowmeter, 37, cooling iron pipe, 40, metal hinge.
Embodiment:
The utility model is set forth further below in conjunction with accompanying drawing.
As shown in Figure 1, the utility model comprises support 9, electrical heating case 5, Heating Water case 1, cooling water tank 4, dull and stereotyped 2, in the middle part of in the of dull and stereotyped 2, both sides are hingedly mounted on support 9, the turning axle of dull and stereotyped 2 is hinged by bearing 8 and support 9, the turning axle of dull and stereotyped 2 is coaxially connected with rotary electric machine 6, rotary electric machine 6 connects computer 7 by control line 12, dull and stereotyped 2 end faces are provided with electrical heating case 5, Heating Water case 1 and cooling water tank 4, electrical heating case 5 and Heating Water case 1 parallel to the layout and installation, the slide rail 3 that cooling water tank 4 is arranged on electrical heating case 5 and Heating Water case 1 side moves along slide rail 3, slide rail 3 direction is perpendicular to the installation direction of sun power gravity assisted heat pipe in parallel electrical heating case 5 and Heating Water case 1.
As shown in Figure 4, the cooling iron pipe 37 for installing sun power gravity assisted heat pipe condensation segment is provided with in cooling water tank 4 of the present utility model, cooling iron pipe 37 is cooling opening 35 towards one end of Heating Water case 1 and electrical heating case 5, the other end is closed, sun power gravity assisted heat pipe condensation end stretches into from the cooling opening 35 of cooling iron pipe 37, the both sides of cooling water tank 4 are connected to the first cooling three-way connection 33 and the second cooling three-way connection 34, first cooling three-way connection 33 is connected constant temperature water tank 13 with the second cooling three-way connection 34 and it is built with temperature sensor 18, be filled with between cooling iron pipe 37 and cooling water tank 4 inwall and be incubated asbestos 17.The middle ends of the first cooling three-way connection 33 and the second cooling three-way connection 34 is all communicated to cryogenic thermostat water tank 30 through attemperater 14 and electromagnetic flowmeter 36.
As shown in Figure 5, one end of the first cooling three-way connection 33 connects close cooling opening 35 place of cooling iron pipe 37 through internal pipeline, one end of the second cooling three-way connection 34 connects the blind end of cooling iron pipe 37 through internal pipeline; Temperature sensor 18 is all equipped with in the other end of the first cooling three-way connection 33 and the second cooling three-way connection 34, this end end face of laying temperature sensor 18 does Seal treatment, temperature sensor 18 connects computer 7, and the middle ends of the first cooling three-way connection 33 and the second cooling three-way connection 34 is all communicated to cryogenic thermostat water tank 30 through attemperater 14.
As shown in Figure 2, the Heating Water iron pipe 16 for installing sun power gravity assisted heat pipe evaporator section is provided with in Heating Water case 1, Heating Water iron pipe 16 is Heating Water opening 20 towards one end of cooling water tank 4, the other end is closed, sun power gravity assisted heat pipe condensation end stretches into from the Heating Water opening 20 of Heating Water iron pipe 16, the side of Heating Water case 1 is connected to the first waters three-way connection 10 and the second waters three-way connection 11, first waters three-way connection 10 is connected high temperature constant temperature water tank 13 with the second waters three-way connection 11 and it is built with temperature sensor 18, be filled with between Heating Water iron pipe 16 and Heating Water case 1 inwall and be incubated asbestos 17.
Shown in Fig. 3, one end of the first waters three-way connection 10 connects the blind end of Heating Water iron pipe 16 through internal pipeline, and one end of the second waters three-way connection 11 connects close Heating Water opening 20 place of Heating Water iron pipe 16 through internal pipeline; Temperature sensor 18 is all equipped with in the other end of the first waters three-way connection 10 and the second waters three-way connection 11, this end end face of laying temperature sensor 18 does Seal treatment, temperature sensor 18 connects computer 7, and the middle ends of the first waters three-way connection 10 and the second waters three-way connection 11 is all communicated to high temperature constant temperature water tank 13 through attemperater 14.
As shown in Figure 6, upper box 25 and lower box 26 is comprised in electrical heating case 5, hinged by metal hinge 40 between the side of upper box 25 and lower box 26, metal buckle 27 for folding is installed between opposite side, the copper pipeline 21 of spill is provided with in upper box 25 and lower box 26, fill with being incubated asbestos 17 in upper box 25 and lower box 26, insulation asbestos 17 are filled between the copper pipeline 21 of spill and the inwall of upper box 25 and lower box 26; Heat tape 29 is placed with bottom the copper pipeline 21 of spill, the copper pipeline 21 of spill is electrical heating opening 24 towards one end of cooling water tank 4, the other end is closed, and be provided with porcelain block 28 and SMD temperature sensor 22 in the copper pipeline of spill 21, SMD temperature sensor 22 is connected with computer 7.
As shown in Figure 7, porcelain block 28 is fixedly mounted on 1/3,2/3 place of the copper pipeline 21 of spill, and SMD temperature sensor 22 is placed on the centre of the copper pipeline 21 of spill.
As shown in Figure 3, in Heating Water case 1, be filled with between Heating Water iron pipe 16 and inwall and be incubated asbestos 17.
The utility model moves the conversion realizing two kinds of solar heat pipe detection modes on a device between mobile electrical heating case 5, Heating Water case 1 along slide rail by cooling water tank 4.When cooling water tank 4 is positioned at electrical heating case 5 opposite position, the condensation segment of sun power gravity assisted heat pipe is positioned at cooling water tank 4, and the evaporator section of sun power gravity assisted heat pipe is positioned at electrical heating case 5, carries out electrical heating; When cooling water tank 4 is positioned at Heating Water case 1 opposite position, the condensation segment of sun power gravity assisted heat pipe is positioned at cooling water tank 4, and the evaporator section of sun power gravity assisted heat pipe is positioned at Heating Water case 1, carries out water heating.
The utility model major design sun power gravity assisted heat pipe detection platform, realizes the detection of gravity assisted heat pipe heat power test, all adopts isothermal holding for heating cabinet and aqueous medium pipeline, reduces and carries out heat interchange with environment, ensures the degree of accuracy of heat power test.Realized the detection of multiple different size sun power gravity assisted heat pipe heat power by described device, and obtain the accurate maximal heat transfer power obtaining sun power gravity assisted heat pipe.
Embodiment of the present utility model and implementation process as follows:
In the present embodiment, device device is mainly divided into 3 parts making: equipment Inspection platform, high/low temperature water tank, switch board.Wherein equipment Inspection platform is main.
Detection platform adopts the aluminium alloy extrusions of 40*40 (mm) to make support, and the dull and stereotyped solid wood board of 2400*600*15 (mm) that uses sprays paint making; In the middle of flat plate bottom, fixed installation irony major axis, is interconnected by bearing and support, bearing connection of rotating motor, and by the dull and stereotyped angle of inclination of Electric Machine Control, motor is furnished with speed regulator, by switch board conputer controlled.
On flat board, installation 3 chests, comprise Heating Water case, electrical heating case and cooling water tank.Heating Water case is of a size of 1900*220*220 (mm), shell adopts aluminium alloy gold material to make, inner to place with the closed iron pipe in one end of 1800 (mm) long diameter 50 (mm) as adding thermal domain, pipeline tapping end welds with casing open top, and opening part sealing-plug does Seal treatment; Heating Water case apart from top and bottom 5 (mm) place opening, opening part with add thermal domain iron pipe and adopt internal diameter to be that the irony pipe of 15 (mm) is connected, external irony 4 points of threeway heads, in casing, use is incubated asbestos filling; External threeway termination opening, a termination external water pipe, the other end places 100 (mm) long platinum thermal resistance sensor.
Electrical heating case adopts open-close type design, is divided into lower box (1900*220*110) to use industrial chain connection, uses industrial snap close opening-closing case body; Upper lower box all uses heat insulation asbestos to fill, and at the copper pipeline of semicircle (50mm) the long 1800mm of surperficial centre position fixed installation, when lower box is closed, copper pipeline also can close; Upper and lower copper duct bottom installs heating tape, adopts scale copper fixedly to make heating tape be close to copper pipe; The rectangle porcelain block of long 20*5*5 (mm) is fixed by 1/3 and 2/3 place's screw of upper and lower copper pipe, an end opening is opened at 1/2 place of lower copper pipe, for placing high-temp resistant type paster platinum resistance thermometer sensor, 15*15 (mm) aperture is respectively opened in the bottom of upper lower box, for the cabling of heat tape power supply and sensor.
Cooling water tank is of a size of 300*220*220 (mm) shell and adopts aluminium alloy gold material to make, inner to place with the closed iron pipe in one end of 260 (mm) long diameter 50 (mm) as adding thermal domain, pipeline tapping end welds with bottom half opening, opening part sealing-plug does Seal treatment; Heating Water case apart from top and bottom 5 (mm) place opening, opening part with add thermal domain iron pipe and adopt internal diameter to be that the irony pipe of 15 (mm) is connected, external irony 4 points of threeway heads, in casing, use is incubated asbestos filling; External threeway termination opening, a termination external water pipe, the other end places 100 (mm) long platinum thermal resistance sensor.
After above-mentioned designing requirement design casing, cooling water tank is installed and dull and stereotyped top, adopts Damping sliding rail to connect, realize horizontally slipping of cooling water tank; After Heating Water case and electrical heating case are installed on the dull and stereotyped left and right sides, two tanks upper opening and cooling water tank lower openings distance be 80mm; Whole test platform completes.
This apparatus design also comprises high/low temperature constant temperature water tank and computer, and high/low temperature constant temperature water tank volume is 30L, and inner installation heater strip, adopts temperature controller to control constant temperature water tank temperature.The attemperater that two threeway heads of Heating Water case are 4 points by diameter connects high temperature constant temperature water tank, and the top threeway head of cooling water tank is that the attemperater of 4 points is connected to cryogenic thermostat water tank through electromagnetic flowmeter by diameter.Electromagnetic flowmeter selects liner to be the specification of DN15, and minimum range is 20L/h.
By designing the device obtained above, the sun power gravity assisted heat pipe heat power that can carry out various ways detects:
When carrying out electrical heating, by cooling water tank by rail moving, alignd in its hole with the hole of electrical heating case; Open electrical heating case, put into by sun power gravity assisted heat pipe, use porcelain block to support, condensation end of heat pipe is stretched out by the hole of electrical heating case, and bringing-up section in electrical heating case, then enters cooling water tank inside by the hole of cooling water tank, and perforate waterproof plug carries out water-proofing treatment; SMD temperature sensor in electrical heating case is fixed on heat pipe centre position, closes casing, buckle hasp, complete the installation of test heat pipe; Regulate the motor on support simultaneously, make platform become 60 ° with level.
After heat pipe places, arranging the constant temperature water tank temperature connecting cooling water tank is 30 DEG C, and water adjusting valve controls flow, and the numerical stability that electromagnetic flowmeter is shown, between 30L/h ~ 60L/h, makes the water of constant temperature water tank by refluxing after cooling water tank, forms loop; According to testing requirements, electrical heating temperature is set, 120 DEG C are set in testing experiment, detect when in 5 minutes, it is 120 DEG C (± 0.3 DEG C) that SMD temperature sensor records temperature, when the temperature fluctuation that temperature sensor in cooling water tank import threeway records is not more than 0.2 DEG C, detecting outlet temperature by the temperature sensor be arranged in cooling water tank outlet threeway is 32.2 DEG C, now electromagnetic flowmeter display flow is 46.2L/h, according to the formula Q=G*C (T in sun power gravity assisted heat pipe maximal heat transfer power detecting method in GB GB/T24767-2009
2-T
1), wherein Q is power, and G is the discharge of cooling water tank, and C is the specific heat flowing through cooling water tank medium, T
2for cooling water tank outlet temperature, T
1for cooling water tank outlet temperature; The maximal heat transfer power of sun power gravity assisted heat pipe under the condition of 120 DEG C is calculated for being 118.58W according to the data obtained.
When carrying out water heating, by cooling water tank by rail moving, alignd in its hole with the hole of Heating Water case; Sun power gravity assisted heat pipe bringing-up section is put into casing by the hole of Heating Water case, and condensation end of heat pipe puts into cooling water tank box house by the hole of cooling water tank, and two perforates all carry out water-proofing treatment with waterproof plug, completes the installation of test heat pipe; Regulate the motor on support simultaneously, make platform become 60 ° with level.
After heat pipe places, arranging the constant temperature water tank temperature connecting cooling water tank is 30 DEG C, and water adjusting valve controls flow, and the numerical stability that electromagnetic flowmeter is shown, between 30L/h ~ 60L/h, makes the water of constant temperature water tank by refluxing after cooling water tank, forms loop; Arranging the constant temperature water tank temperature connecting Heating Water case is 60 DEG C, and opens water valve, makes the water of constant temperature water tank by refluxing after Heating Water case, forms loop; Detect when in 5 minutes, the temperature fluctuation that temperature sensor in cooling water tank import threeway records is not more than 0.2 DEG C, when the temperature fluctuation that temperature sensor in Heating Water case import threeway records is not more than 0.1 DEG C, detecting outlet temperature by the temperature sensor be arranged in cooling water tank outlet threeway is 31.2 DEG C, now electromagnetic flowmeter display flow is 49.2L/h, according to the formula Q=G*C (T in sun power gravity assisted heat pipe maximal heat transfer power detecting method in GB GB/T24767-2009
2-T
1), wherein Q is power, and G is the discharge of cooling water tank, and C is the specific heat flowing through cooling water tank medium, T
2for cooling water tank outlet temperature, T
1for cooling water tank outlet temperature; The maximal heat transfer power of sun power gravity assisted heat pipe under the condition of 60 DEG C is calculated for being 68.88W according to the data obtained.
Especially adopt electrical heating case can be heated to the high temperature of 700 degrees Celsius, the sun power gravity assisted heat pipe thermal power meeting different size detects demand; The heat power of sun power gravity assisted heat pipe is by gravity assisted heat pipe condensation end is put into cooling water tank, import and export water temperature difference by cooling water tank and calculate heat-transfer pipe rate, therefore the utility model patent adopts unified cooling water tank under different detection mode, improve detection accuracy and reduce equipment do not spend degree of certainty.
The utility model is fine must be solved above-mentioned current sun power gravity assisted heat pipe power and only have employing Heating Water, heating-up temperature is low, the technical matters of maximal heat transfer power cannot be detected, propose brand-new checkout equipment and detection approach, meet multiple detection demand, bring the development that technique effect also can promote the art industry.
Claims (8)
1. for a device for multifuctional solar gravity assisted heat pipe power detection, it is characterized in that: comprise support (9), electrical heating case (5), Heating Water case (1), cooling water tank (4) and flat board (2), both sides, dull and stereotyped (2) middle part are hingedly mounted on support (9), the turning axle of dull and stereotyped (2) is coaxially connected with rotary electric machine (6), rotary electric machine (6) connects computer (7) by control line (12), dull and stereotyped (2) end face is provided with electrical heating case (5), Heating Water case (1) and cooling water tank (4), electrical heating case (5) and Heating Water case (1) parallel to the layout and installation, the slide rail (3) that cooling water tank (4) is arranged on electrical heating case (5) and Heating Water case (1) side is upper and mobile along slide rail (3), slide rail (3) direction is perpendicular to the installation direction of sun power gravity assisted heat pipe in parallel electrical heating case (5) and Heating Water case (1).
2. a kind of device for multifuctional solar gravity assisted heat pipe power detection according to claim 1, it is characterized in that: in described cooling water tank (4), be provided with the cooling iron pipe (37) for installing sun power gravity assisted heat pipe condensation segment, cooling iron pipe (37) is cooling opening (35) towards one end of Heating Water case (1) and electrical heating case (5), the other end is closed, the both sides of cooling water tank (4) are connected to the first cooling three-way connection (33) and the second cooling three-way connection (34), first cooling three-way connection (33) is connected cryogenic thermostat water tank (30) with the second cooling three-way connection (34) and it is built with temperature sensor (18), be filled with between cooling iron pipe (37) and cooling water tank (4) inwall and be incubated asbestos (17).
3. a kind of device for multifuctional solar gravity assisted heat pipe power detection according to claim 2, it is characterized in that: one end of the first described cooling three-way connection (33) connects close cooling opening (35) place of cooling iron pipe (37) through internal pipeline, one end of the second cooling three-way connection (34) connects the blind end of cooling iron pipe (37) through internal pipeline; Temperature sensor (18) is all equipped with in the other end of the first cooling three-way connection (33) and the second cooling three-way connection (34), temperature sensor (18) connects computer (7), the middle ends of the first cooling three-way connection (33) and the second cooling three-way connection (34) is all communicated to cryogenic thermostat water tank (30) through attemperater (14), and the attemperater (14) between the second cooling three-way connection (34) and cryogenic thermostat water tank (30) is provided with electromagnetic flowmeter (36).
4. a kind of device for multifuctional solar gravity assisted heat pipe power detection according to claim 1, it is characterized in that: in described Heating Water case (1), be provided with the Heating Water iron pipe (16) for installing sun power gravity assisted heat pipe evaporator section, Heating Water iron pipe (16) is Heating Water opening (20) towards one end of cooling water tank (4), the other end is closed, the side of Heating Water case (1) is connected to the first waters three-way connection (10) and the second waters three-way connection (11), first waters three-way connection (10) is connected high temperature constant temperature water tank (13) with the second waters three-way connection (11) and it is built with temperature sensor (18), be filled with between Heating Water iron pipe (16) and Heating Water case (1) inwall and be incubated asbestos (17).
5. a kind of device for multifuctional solar gravity assisted heat pipe power detection according to claim 4, it is characterized in that: one end of the first described waters three-way connection (10) connects the blind end of Heating Water iron pipe (16) through internal pipeline, one end of the second waters three-way connection (11) connects close Heating Water opening (20) place of Heating Water iron pipe (16) through internal pipeline; Temperature sensor (18) is all equipped with in the other end of the first waters three-way connection (10) and the second waters three-way connection (11), temperature sensor (18) connects computer (7), and the middle ends of the first waters three-way connection (10) and the second waters three-way connection (11) is all communicated to high temperature constant temperature water tank (13) through attemperater (14).
6. a kind of device for multifuctional solar gravity assisted heat pipe power detection according to claim 1, it is characterized in that: in described electrical heating case (5), comprise upper box (25) and lower box (26), hinged by metal hinge (40) between the side of upper box (25) and lower box (26), metal buckle (27) for folding is installed between opposite side, being provided with the copper pipeline of spill (21) in upper box (25) and lower box (26), filling with being incubated asbestos (17) in upper box (25) and lower box (26); The copper pipeline of spill (21) bottom is placed with heat tape (29), the copper pipeline of spill (21) is electrical heating opening (24) towards one end of cooling water tank (4), the other end is closed, be provided with porcelain block (28) and SMD temperature sensor (22) in the copper pipeline of spill (21), SMD temperature sensor (22) is connected with computer (7).
7. a kind of device for multifuctional solar gravity assisted heat pipe power detection according to claim 6, it is characterized in that: described porcelain block (28) is fixedly mounted on 1/3,2/3 place of the copper pipeline of spill (21), and SMD temperature sensor (22) is placed on the centre of the copper pipeline of spill (21).
8. a kind of device for multifuctional solar gravity assisted heat pipe power detection according to claim 6, is characterized in that: in described Heating Water case (1), is filled with and is incubated asbestos (17) between Heating Water iron pipe (16) and inwall.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201520503548.8U CN204789428U (en) | 2015-07-10 | 2015-07-10 | A device that is used for multi -functional solar energy gravity heat pipe power detection |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201520503548.8U CN204789428U (en) | 2015-07-10 | 2015-07-10 | A device that is used for multi -functional solar energy gravity heat pipe power detection |
Publications (1)
Publication Number | Publication Date |
---|---|
CN204789428U true CN204789428U (en) | 2015-11-18 |
Family
ID=54529446
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201520503548.8U Withdrawn - After Issue CN204789428U (en) | 2015-07-10 | 2015-07-10 | A device that is used for multi -functional solar energy gravity heat pipe power detection |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN204789428U (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105044148A (en) * | 2015-07-10 | 2015-11-11 | 中国计量学院 | Device for multifunctional solar gravity heat pipe power detection |
-
2015
- 2015-07-10 CN CN201520503548.8U patent/CN204789428U/en not_active Withdrawn - After Issue
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105044148A (en) * | 2015-07-10 | 2015-11-11 | 中国计量学院 | Device for multifunctional solar gravity heat pipe power detection |
CN105044148B (en) * | 2015-07-10 | 2017-12-15 | 中国计量学院 | Device for multifuctional solar gravity assisted heat pipe power detection |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Jian-you | Numerical and experimental investigation for heat transfer in triplex concentric tube with phase change material for thermal energy storage | |
Yu-ting et al. | Convective heat transfer in the laminar–turbulent transition region with molten salt in a circular tube | |
CN105372082B (en) | A kind of energy-efficient environment-friendly multifunctional intellectuality heat exchanger performance test system | |
CN104966536A (en) | High-temperature working medium heat exchange test system using heat conducting oil as hot fluid and test method | |
CN104237305A (en) | Testing device and testing system for rock-mass thermal conductivity | |
CN201281694Y (en) | Device for measuring material thermal coefficient | |
CN101915776A (en) | Measuring method for thermal diffusivity of concrete and testing device | |
CN102840930B (en) | Pipeline internal temperature measuring device | |
CN105044148A (en) | Device for multifunctional solar gravity heat pipe power detection | |
CN204789428U (en) | A device that is used for multi -functional solar energy gravity heat pipe power detection | |
CN201289467Y (en) | Device for testing heat dispersion of radiator surface | |
CN203443908U (en) | Nanofluid heat conductivity measuring device | |
CN206953264U (en) | A kind of energy-efficient storage concrete curing system of engineering | |
CN103472323B (en) | A kind of rapid heat-exchange device through crack flow of fluid medium | |
CN111272807A (en) | Experimental system and method for measuring convective mass transfer coefficient | |
CN203672806U (en) | Heat insulation effect evaluation device for mineral powder material | |
CN204495694U (en) | Flue gas in power station boiler low temperature acid dew piont corrosion experimental provision | |
CN106401427A (en) | Seal structure for ultralow temperature environment simulation equipment door | |
CN212301210U (en) | Device for measuring liquid viscosity coefficient by capillary method | |
CN203519523U (en) | Water bath device for freezing point tester | |
CN206638245U (en) | A kind of instrument tracing system | |
CN110988022B (en) | Sleeve type cooling water jacket structure and gravity assisted heat pipe detection device and detection method | |
CN205620338U (en) | Production performance detection device for superconductive heat radiator | |
CN208090958U (en) | A kind of electric heating water bath heat exchanger | |
CN204129039U (en) | The analogue means of soil body one dimension heat-moisture transfer |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
AV01 | Patent right actively abandoned |
Granted publication date: 20151118 Effective date of abandoning: 20171215 |
|
AV01 | Patent right actively abandoned |