CN207148019U - Live thermal property tester caliberating device - Google Patents

Live thermal property tester caliberating device Download PDF

Info

Publication number
CN207148019U
CN207148019U CN201721248889.0U CN201721248889U CN207148019U CN 207148019 U CN207148019 U CN 207148019U CN 201721248889 U CN201721248889 U CN 201721248889U CN 207148019 U CN207148019 U CN 207148019U
Authority
CN
China
Prior art keywords
sandbox
thermal property
triple valve
property tester
water tank
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.)
Active
Application number
CN201721248889.0U
Other languages
Chinese (zh)
Inventor
刘桂义
邵琦
胡小辉
冯宁
张雷雷
刘晓飞
方亮
魏建平
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
SHANDONG GEO-MINERAL GORPORATION
Shandong Jianzhu University
Original Assignee
SHANDONG GEO-MINERAL GORPORATION
Shandong Jianzhu University
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by SHANDONG GEO-MINERAL GORPORATION, Shandong Jianzhu University filed Critical SHANDONG GEO-MINERAL GORPORATION
Priority to CN201721248889.0U priority Critical patent/CN207148019U/en
Application granted granted Critical
Publication of CN207148019U publication Critical patent/CN207148019U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Investigating Or Analyzing Materials Using Thermal Means (AREA)

Abstract

The utility model discloses a kind of live thermal property tester caliberating device, described device includes the buried tubing loop of sandbox and exterior line;The buried tubing loop of sandbox includes sandbox, and uniform fine sand is filled up in the sandbox, and sandbox central horizontal places drilling, and single U-shaped underground pipe is inserted in drilling;Exterior line includes:The outlet of water circulating pump and the import of water tank are connected, and the triple valve of outlet second of water tank is connected with the import of single U-shaped underground pipe;The triple valve of outlet first of single U-shaped underground pipe and the entrance of water circulating pump connect;First temperature sensor and flowmeter are between the outlet of the U-shaped underground pipe of the list and the first triple valve, and second temperature sensor is between the import of the second triple valve and single U-shaped underground pipe;First temperature sensor, flowmeter and second temperature sensor are connected with data acquisition device;Thermal property tester to be calibrated is incorporated to outside major loop by the first and second triple valves.The utility model can be demarcated exactly to tester.

Description

Live thermal property tester caliberating device
Technical field
It the utility model is related to technical field of ground source heat pump, more particularly to a kind of live thermal property tester caliberating device.
Background technology
Shallow layer geothermal energy has the characteristics of reserves are huge, regeneration is rapid, widely distributed, the temperature four seasons are moderate, utilization Shallow layer geothermal energy, the raising to energy supply, the optimization of energy resource structure, and preserve the ecological environment significant.
Earth source heat pump is the main utilization ways of shallow layer geothermal energy resource, because China's underground heat water shortage, water resource are serious Shortage, therefore ground source heat pump technology is in widespread attention.When carrying out ground heat exchanger design to earth-source hot-pump system, if The quantitative design of pipe laying is on the low side, the heating refrigerating capacity deficiency of system, makes source pump fluctuation of service, influences system and use the longevity Life;If design is on the high side, the loss for the increase and soil resource tentatively invested is caused.Therefore, ground heat exchanger is ground source The emphasis of heat pump system designs.The design of ground heat exchanger need to obtain ground thermal property parameter, and its accuracy is directly connected to The investment of system and performance.
It is the most accurate and universal with live geo-thermal response test method in existing ground thermal property parameter determination method.Live heat Response test is realized by live thermal property tester, error caused by can thus avoiding On-the-spot factor from influenceing, makes survey It is more accurate to measure the result calculated.So the measurement accuracy of live thermal property tester and the degree of accuracy have very big shadow to test result Ring.
Therefore, the demarcation to live thermal property tester is realized, ensures the measurement accuracy and standard of live thermal property tester Exactness, it is the current technical issues that need to address of those skilled in the art.
Utility model content
To achieve these goals, the utility model provides a kind of live thermal property tester caliberating device, to scene The measuring accuracy of thermal property tester and the degree of accuracy are detected and demarcated, and live thermal property tester is reached code requirement, So as to improve the accuracy of ground heat exchanger design, the energy-conservation and Effec-tive Function of earth-source hot-pump system are realized.
The utility model adopts the following technical scheme that:
A kind of live thermal property tester caliberating device, including the buried tubing loop of sandbox and exterior line;
The buried tubing loop of sandbox includes sandbox (1), and uniform fine sand is filled up in the sandbox (1), and sandbox central horizontal is placed Drilling, single U-shaped underground pipe is embedded in drilling;Wherein, known to the thermal physical property parameter of the fine sand and the backfilling material in drilling;
Exterior line includes the first temperature sensor (2), flowmeter (3), the first triple valve (5), water circulating pump (6), water Case (7), the second triple valve (9), second temperature sensor (10), data acquisition device (11), wherein, water circulating pump (6) go out Mouth is connected with the import of water tank (7), and the import of the triple valve of outlet second (9) of the water tank (7) and single U-shaped underground pipe connects Connect;The triple valve of outlet first (5) of the U-shaped underground pipe of list is connected with the entrance of the water circulating pump (6);First temperature passes Sensor (2) and flowmeter (3) are between the outlet of the U-shaped underground pipe of the list and the first triple valve (5), second temperature sensor (10) between the import of second triple valve (9) and single U-shaped underground pipe;First temperature sensor (2), flowmeter (3) it is connected with second temperature sensor (10) with data acquisition device (11);
Thermal property tester (4) inlet and outlet to be calibrated passes through the 3rd interface with the first triple valve (5) respectively Connected with the 3rd interface of the second triple valve (9) and be incorporated to exterior line.
Further, the open top of sandbox 1, certain distance sets spray equipment (12) above sandbox;Sandbox (1) bottom has constant slope, is tilted towards water tank side, and sandbox is towards being additionally provided with discharge outlet, water tank below water tank side It is externally provided with gutter.
Further, the spray equipment (12) is a drainpipe, and spray apertures, the drainpipe and earth's surface are beaten on drainpipe On water pipe be connected.
Further, it is additionally provided with the three-temperature sensor being connected with data acquisition device (11) in the sandbox 1.
Further, heater is set in the water tank (7).
Further, it is additionally provided with water supply tank (8) between the water circulating pump (6) and water tank (7).
Further, drawing and pulling type maintenance door is left in sandbox (1) side, facilitates back-up sand and the sediment outflow in later stage.
Further, sandbox (1) external wall is made using insulation foam plate and cement mortar.
The beneficial effects of the utility model:
1st, caliberating device of the present utility model is made up of the buried tubing loop of sandbox and exterior line, and wherein exterior line is provided with Water tank, and the data acquisition device of the multiple sensors of connection, to obtain the normal data of demarcation institute foundation;Hot physical property to be calibrated Tester is connected in caliberating device by triple valve, to obtain actual test data, is carried out based on difference therebetween Tester is demarcated, and ensure that the precision of thermal property tester.
2nd, the utility model is simulated rainwash scene, led to by installing spray equipment and setting sandbox bottom angled The reduction of real scene is crossed, the precision for the demarcation of live thermal property tester provides guarantee.
3rd, caliberating device of the present utility model possesses various calibration method, can be selected according to practical situations.
Brief description of the drawings
The Figure of description for forming the part of the application is used for providing further understanding of the present application, and the application's shows Meaning property embodiment and its illustrate be used for explain the application, do not form the improper restriction to the application.
Fig. 1 is the utility model scene thermal property tester caliberating device system diagram;
Fig. 2 is the drilling drawing inside sandbox, engineer's scale in the thermal property tester caliberating device of the utility model scene 1:10;
Fig. 3 is the profile of the drilling inside the utility model Fig. 2 sandboxs.
In figure, 1 sandbox;2 first temperature sensors;3 flowmeters;4 testers;5 first triple valves;6 water circulating pumps;7 water Case;8 water supply tanks;9 second triple valves;10 second temperature sensors;11 data acquisition devices;12 spray equipments;13PE32 is managed;14 Pipe of concrete.
Embodiment
The utility model is described in further detail with embodiment below in conjunction with the accompanying drawings.
It is noted that described further below is all exemplary, it is intended to provides further instruction to the application.It is unless another Indicate, all technologies used herein and scientific terminology are with usual with the application person of an ordinary skill in the technical field The identical meanings of understanding.
It should be noted that term used herein above is merely to describe embodiment, and be not intended to restricted root According to the illustrative embodiments of the application.As used herein, unless the context clearly indicates otherwise, otherwise singulative It is also intended to include plural form, additionally, it should be understood that, when in this manual using term "comprising" and/or " bag Include " when, it indicates existing characteristics, step, operation, device, component and/or combinations thereof.
In the case where not conflicting, the feature in embodiment and embodiment in the application can be mutually combined.
Embodiment one
Present embodiments provide a kind of live thermal property tester caliberating device.
As shown in figure 1, the device includes:The buried tubing loop of sandbox and exterior line.
The buried tubing loop of sandbox includes sandbox 1, and uniform fine sand, sandbox known to thermal physical property parameter are filled up in the sandbox 1 Central horizontal places drilling, and drilling, it is concrete prefabricated to use, and the thermal physical property parameter of cement is, it is known that be embedded to single U of PE materials in drilling Type underground pipe;The open top of sandbox 1, provided with dismountable thermal baffle;Certain distance sets spray equipment above sandbox 1 12.The spray equipment is a sparge pipe, is equipped with spray apertures thereon, and sparge pipe is connected with the water pipe on ground;The bottom of sandbox 1 With constant slope, tilted towards the side of water tank 7, sandbox 1 is provided with discharge outlet towards the lower section of the side of water tank 7, and water tank is externally provided with Gutter.Drawing and pulling type maintenance door is left in the side of sandbox 1, facilitates the back-up sand in later stage and the inspection toward equipment such as effluent sand and sensors Repair.The exterior wall of sandbox 1 is made using insulation foam plate and cement mortar.It is additionally provided with what is be connected with data acquisition device 11 in sandbox 1 Three-temperature sensor.
Exterior line includes the first temperature sensor 2, flowmeter 3, the first triple valve 5, water circulating pump 6, water tank 7, second Triple valve 9, second temperature sensor 10, data acquisition device 11, wherein, the outlet of water circulating pump 6 connects with the import of water tank 7 Connect, the second triple valve of outlet 9 of the water tank 7 is connected with the import of single U-shaped underground pipe;Heater is set in water tank 7;Institute The first triple valve of outlet 5 for stating single U-shaped underground pipe is connected with the entrance of the water circulating pump 6;First temperature sensor 2 and stream For gauge 3 between the outlet of the U-shaped underground pipe of the list and the first triple valve 5, second temperature sensor 10 is located at described second Between the import of triple valve 9 and single U-shaped underground pipe;First temperature sensor 2, flowmeter 3 and second temperature sensor 10 It is connected with data acquisition device 11;Water supply tank 8 is additionally provided between water circulating pump 6 and water tank 7.
The inlet and outlet of thermal property tester 4 to be calibrated passes through the 3rd interface with the first triple valve 5 respectively Connected with the 3rd interface of the second triple valve 9 and be incorporated to exterior line.
The inlet and outlet of thermal property tester 4 to be calibrated passes through the 3rd interface and second of the first triple valve 5 respectively The 3rd interface connection of triple valve 9.
In the present embodiment, the size of sandbox 1 is 2.55 × 2.55 × 21m, and its agent structure is armored concrete, and thickness is 250mm;The uniform fine sand filled up in sandbox 1 is used to alternatively descend ground;The drilling that sandbox 1 central horizontal is placed uses one Diameter 15cm concrete column, drill the single U-shaped underground pipe of interior insertion, and U-tube is horizontal positioned, its axis and concrete column center superposition. Sliding door is left in the side of sandbox 1, facilitates the back-up sand in later stage and past effluent sand.To avoid influence of the indoor environment to sandbox, The external wall of sandbox 1 need to do isothermal holding, be completed using insulation foam plate and cement mortar.The thickness of warming plate is 50mm.
Alternatively, demarcated to be realized to the thermal property tester under seepage flow scene, the open top of sandbox 1, in sand Certain distance sets spray equipment 12 above case;The spray equipment is a drainpipe, and spray apertures, the draining are played on drainpipe Pipe is connected with the water pipe in earth's surface.In the present embodiment, drainpipe is arranged on above sandbox at 1m~1.5m.Spray equipment 12 To simulate underground percolation.
Now, the bottom of sandbox 1 has constant slope, and the gradient is i=0.005 slope aspect water tanks side;Sandbox is towards water tank one The lower section of side is provided with discharge outlet, is convenient for draining during Seepage Experiment.
Heater is set in the water tank 7, for the water in heating water tank.
Alternatively, water supply tank 8 is additionally provided between the water circulating pump 6 and water tank 7, for making up water when caliberating device is run Loss in the place such as pipeline junction.
According to different scenes or demarcation foundation, the application method of the caliberating device is referring to embodiment two-five.
Embodiment two
The present embodiment uses foundation of known sand and the backfilling material thermal physical property parameter as demarcation in sandbox, there is provided A kind of thermal property tester scaling method using caliberating device in embodiment one, comprise the following steps:
Step 1:The switch of the first triple valve 5 and the second triple valve 9 is controlled, makes thermal property tester 4 and sand to be calibrated Connected between case 1, close the connection with water tank (7) and pump (6);
Step 2:Start thermal property tester 4 to be calibrated, the water inside thermal property tester 4 is passed through in sandbox 1 Single U-shaped underground pipe circulates;
Step 3:Using carried inside thermal property tester 4 instrument (temperature, flow sensor) measure and record temperature, stream The parameter such as amount and power is as test data;
Step 4:Using gained test data and known mathematical modeling, estimate in sandbox 1 and backfilled in sand and/or drilling The thermal physical property parameter of material;
Step 5:The parameter estimated is compared with the thermal physical property parameter of known sand and backfilling material, with Demarcate the thermal property tester 4.
Embodiment three
The present embodiment is using foundation of the thermal physical property parameter that the caliberating device measures as demarcation, there is provided using implementation The thermal property tester scaling method of caliberating device, comprises the following steps in example one:
Step 1:The switch of the first triple valve 5 and the second triple valve 9 is controlled, makes to connect between water tank 7 and sandbox 1, makes mark Determine to fill water in device;
Step 2:Water circulating pump 6 is opened, drives the water in the caliberating device pipeline to flow, and controls heater with solid Determine power to heat the water in water tank 7;The first temperature sensor 2, flowmeter 3, the are gathered using data acquisition device 11 The parameters such as temperature that two temperature sensors 10 measure, flow are as test data;
Step 3:The test data and given mathematical modeling gathered according to data acquisition device 11, estimates sand in sandbox 1 And/or drilling in backfilling material thermal physical property parameter;
Step 4:The switch of the first triple valve 5 and the second triple valve 9 is controlled, makes thermal property tester 4 and sand to be calibrated Connected between case 1;
Step 5:Start thermal property tester 4 to be calibrated, the water inside thermal property tester 4 is passed through the U in sandbox 1 Type underground pipe circulates;Measure using instrument (temperature, flow sensor) is carried inside thermal property tester 4 and record temperature The parameters such as degree, flow and power are as test data;
Step 6:The test data and given mathematical modeling measured according to thermal property tester 4 to be calibrated, estimate sandbox 1 The thermal physical property parameter of backfilling material in interior sand and/or drilling;
Step 7:Step 6 is compared with the thermal physical property parameter that step 3 is calculated, to demarcate thermal property tester Inside carries instrument.
During test, water is filled in systems first, performance adjustment is carried out to detection platform.When detection platform each side is run When normal, the detection of thermal property tester can be carried out.Devices to test is done to test running experiment on monitor station, by monitor station with Devices to test is connected, and adjustment valve connects whole loop operation, and now water circulating pump (5) is closed, and fluid flows from sandbox (1) Enter in Devices to test by triple valve (4) after going out, flow back into by triple valve (4) during sandbox (1) exchanged heat.Check Whether communication, data acquisition between equipment and output normal, and whether there is the place of leak, if all go well operation work it Afterwards, the performance detection of equipment can be carried out.The thermal physical property parameter for the quartz sand that Devices to test is measured and known accurate data It is analyzed, compares the error and accuracy of Devices to test test.
Example IV
Foundation of the temperature data of specified point as demarcation in the sandbox that the present embodiment is gathered using data acquisition device 11, One kind is provided in the case of having seepage action of ground water, using the thermal property tester demarcation side of caliberating device described in embodiment one Method, comprise the following steps:
Step 1:The switch of the first triple valve 5 and the second triple valve 9 is controlled, makes thermal property tester 4 and sand to be calibrated Connected between case 1, close the connection with water tank 7 and pump 6;
Step 2:Start spray equipment 12, in the sandbox measured using the collection three-temperature sensor of data acquisition device 11 The temperature data of specified point;After certain time, start thermal property tester 4 to be calibrated, make inside thermal property tester 4 Water is circulated by the U-shaped underground pipe of list in sandbox 1;
Step 3:Using carried inside thermal property tester 4 instrument (temperature, flow sensor) measure and record temperature, stream The parameter such as amount and power is as test data;
Step 4:Using gained test data and known mathematical modeling, estimate in sandbox 1 and backfilled in sand and/or drilling The thermal physical property parameter of material;
Step 5:The parameter and known models estimated according to step 3, the thermo parameters method of fine sand inside sandbox is calculated, is obtained The temperature value of the specified point.
Step 6:The temperature value for the point that the temperature value of the specified point is measured with data acquisition device 11 compares, with mark Determine thermal property tester 4.
Embodiment five
The present embodiment is using foundation of the thermal physical property parameter that the caliberating device measures as demarcation, there is provided one kind uses Thermal property tester scaling method under the underground percolation situation of caliberating device, comprises the following steps in embodiment one:
Step 1:The switch of the first triple valve 5 and the second triple valve 9 is controlled, makes to connect between water tank 7 and sandbox 1, makes mark Determine to fill water in device;
Step 2:Start spray equipment 12, open water circulating pump 6, drive the water in the caliberating device pipeline to flow, and And control heater is heated with constant power to the water in water tank 7;The first temperature is gathered using data acquisition device 11 to pass The parameters such as temperature that sensor 2, flowmeter 3, second temperature sensor 10 measure, flow are as test data;
Step 3:The test data and given mathematical modeling gathered according to data acquisition device 11, estimates sand in sandbox 1 And/or drilling in backfilling material thermal physical property parameter;
Step 4:The switch of the first triple valve 5 and the second triple valve 9 is controlled, makes thermal property tester 4 and sand to be calibrated Connected between case 1;
Step 5:After certain time (being 30 minutes in the present embodiment), start thermal property tester 4 to be calibrated, make hot thing Water inside property tester 4 is circulated by the U-shaped underground pipe in sandbox 1;Using carrying instrument inside thermal property tester 4 (temperature, flow sensor) measures and records the parameters such as temperature, flow and power as test data;
Step 6:The test data and given mathematical modeling measured according to thermal property tester 4 to be calibrated, estimate sandbox In 1 sand and/or drilling in backfilling material thermal physical property parameter;
Step 7:Step 6 is compared with the thermal physical property parameter that step 3 is calculated, with the hot physical property measurement in demarcation scene Instrument 4.
The utility model is respectively adopted water tank and underground pipe pipeline is connected with thermal property tester, is used to demarcate ginseng to obtain According to normal data and actual test data, based on therebetween difference carry out tester demarcation, ensure that hot physical property measurement The precision of instrument.The tester that the utility model is applied to different scenes is demarcated, and the precision for the demarcation of live thermal property tester carries Supply to ensure.
It is not new to this practicality although above-mentioned specific embodiment of the present utility model is described with reference to accompanying drawing The limitation of type protection domain, one of ordinary skill in the art should be understood that on the basis of the technical solution of the utility model, ability Field technique personnel need not pay the various modifications that creative work can make or deformation still in protection model of the present utility model Within enclosing.

Claims (8)

1. a kind of live thermal property tester caliberating device, including the buried tubing loop of sandbox and exterior line;
The buried tubing loop of sandbox includes sandbox (1), and uniform fine sand is filled up in the sandbox (1), and sandbox central horizontal places drilling, Single U-shaped underground pipe is embedded in drilling;Wherein, known to the thermal physical property parameter of the fine sand and the backfilling material in drilling;
Exterior line includes the first temperature sensor (2), flowmeter (3), the first triple valve (5), water circulating pump (6), water tank (7), the second triple valve (9), second temperature sensor (10), data acquisition device (11), wherein, the outlet of water circulating pump (6) Import with water tank (7) is connected, and the triple valve of outlet second (9) of the water tank (7) is connected with the import of single U-shaped underground pipe; The triple valve of outlet first (5) of the U-shaped underground pipe of list is connected with the entrance of the water circulating pump (6);First TEMP Device (2) and flowmeter (3) are between the outlet of the U-shaped underground pipe of the list and the first triple valve (5), second temperature sensor (10) between the import of second triple valve (9) and single U-shaped underground pipe;First temperature sensor (2), flowmeter (3) it is connected with second temperature sensor (10) with data acquisition device (11);
Thermal property tester (4) inlet and outlet to be calibrated passes through the 3rd interface with the first triple valve (5) and respectively The 3rd interface connection of two triple valves (9) is incorporated to exterior line.
A kind of 2. live thermal property tester caliberating device as claimed in claim 1, it is characterised in that sandbox (1) top Portion's opening, certain distance sets spray equipment (12) above sandbox;Sandbox (1) bottom has constant slope, towards water tank one Roll oblique, for sandbox towards discharge outlet is additionally provided with below water tank side, water tank is externally provided with gutter.
A kind of 3. live thermal property tester caliberating device as claimed in claim 2, it is characterised in that the spray equipment (12) it is a drainpipe, beats spray apertures on drainpipe, the drainpipe is connected with the water pipe in earth's surface.
4. a kind of live thermal property tester caliberating device as claimed in claim 2 or claim 3, it is characterised in that in the sandbox 1 It is additionally provided with the three-temperature sensor being connected with data acquisition device (11).
5. a kind of live thermal property tester caliberating device as claimed in claim 1, it is characterised in that in the water tank (7) Heater is set.
A kind of 6. live thermal property tester caliberating device as claimed in claim 1, it is characterised in that the water circulating pump (6) water supply tank (8) is additionally provided between water tank (7).
A kind of 7. live thermal property tester caliberating device as claimed in claim 1, it is characterised in that the sandbox (1) one Drawing and pulling type maintenance door is left in side, facilitates back-up sand and the sediment outflow in later stage.
A kind of 8. live thermal property tester caliberating device as claimed in claim 1, it is characterised in that sandbox (1) external wall It is made using insulation foam plate and cement mortar.
CN201721248889.0U 2017-09-27 2017-09-27 Live thermal property tester caliberating device Active CN207148019U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201721248889.0U CN207148019U (en) 2017-09-27 2017-09-27 Live thermal property tester caliberating device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201721248889.0U CN207148019U (en) 2017-09-27 2017-09-27 Live thermal property tester caliberating device

Publications (1)

Publication Number Publication Date
CN207148019U true CN207148019U (en) 2018-03-27

Family

ID=61668560

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201721248889.0U Active CN207148019U (en) 2017-09-27 2017-09-27 Live thermal property tester caliberating device

Country Status (1)

Country Link
CN (1) CN207148019U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107525821A (en) * 2017-09-27 2017-12-29 山东省地矿工程集团有限公司 Live thermal property tester caliberating device and method

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107525821A (en) * 2017-09-27 2017-12-29 山东省地矿工程集团有限公司 Live thermal property tester caliberating device and method

Similar Documents

Publication Publication Date Title
Luo et al. Thermo-economic analysis of four different types of ground heat exchangers in energy piles
CN106017965B (en) A kind of U-shaped ground heat exchanger heat-moisture transmission performance simulating test device and test method
CN108827833A (en) Indoor tracer test system based on karst dielectric attribute inverting
CN109946103A (en) A kind of underground heat parameter test system and method based on mid-deep strata ground heat exchanger
CN101393149B (en) High precision soil thermophysical nature measurer for ground source heat pump
CN202442821U (en) Soil source heat pump buried pipe heat exchanging and soil thermal property testing apparatus
CN102680515B (en) Device for simulating ground source heat pump
Li et al. Experimental and numerical investigations on heat transfer in stratified subsurface materials
CN101299000B (en) Heat exchange tester of ground source heat pump underground heat exchanger
CN201166615Y (en) Tester for exchanging heat of buried tube of earth source heat pump
CN206974932U (en) Ground geo-thermal response test system
CN103091358A (en) Indoor model test apparatus for ground source heat pump rock soil thermal response testing and application thereof
CN108951724B (en) Energy pile test monitoring system and test method
CN207148019U (en) Live thermal property tester caliberating device
CN205879561U (en) Wet transmission performance simulating measurement setup of U type ground pipe laying heat exchanger heat
Cai et al. Testing and analysis of the influence factors for the ground thermal parameters
CN103616405B (en) A kind of pick-up unit to ground buried pipe of ground source heat pump system
CN203587534U (en) Detection device for buried pipe system of ground source heat pump
CN107525821A (en) Live thermal property tester caliberating device and method
CN204694654U (en) The hot physical property of combined type ground source heat pump rock-soil and underground pipe heat exchange tester
CN102539471A (en) Well group rechecking testing device and testing method thereof
CN102830730A (en) System and method for intelligent water supply temperature control test
CN108318524A (en) Ground heat exchanger scene thermophysical property measurement instrument calibration equipment Special temperature measurement stick
KR100997157B1 (en) Method for measuring the effective thermal conductivity of the ground using multi-cable
CN207829870U (en) A kind of oil-field flooding fouling experimental provision

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant