CN103792255A - Rock soil cold and hot response testing system - Google Patents

Rock soil cold and hot response testing system Download PDF

Info

Publication number
CN103792255A
CN103792255A CN201410028636.7A CN201410028636A CN103792255A CN 103792255 A CN103792255 A CN 103792255A CN 201410028636 A CN201410028636 A CN 201410028636A CN 103792255 A CN103792255 A CN 103792255A
Authority
CN
China
Prior art keywords
water
pipe
circulating pump
underground pipe
temperature
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.)
Granted
Application number
CN201410028636.7A
Other languages
Chinese (zh)
Other versions
CN103792255B (en
Inventor
杜佳军
陈煜�
赵彦杰
邢立亮
赵宏恺
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 JIANKE BUILDING ENERGY SERVICE CO Ltd
Original Assignee
SHANDONG JIANKE BUILDING ENERGY SERVICE CO Ltd
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 JIANKE BUILDING ENERGY SERVICE CO Ltd filed Critical SHANDONG JIANKE BUILDING ENERGY SERVICE CO Ltd
Priority to CN201410028636.7A priority Critical patent/CN103792255B/en
Publication of CN103792255A publication Critical patent/CN103792255A/en
Application granted granted Critical
Publication of CN103792255B publication Critical patent/CN103792255B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Testing Of Devices, Machine Parts, Or Other Structures Thereof (AREA)

Abstract

The invention discloses a rock soil cold and hot response testing system, and relates to the technical field of ground source heat pumps, aiming to solve the technical problems of testing time shortening and the rock soil heat exchange capability calculation. The system comprises a data collecting device, a constant-temperature water bath device, a circulation water tank, a first circulation water pump, a second circulation water pump and two testing wells, wherein a buried pipe is embedded in each of the two testing wells respectively, wherein one buried pipe is a first buried pipe, and the other buried pipe is a second buried pipe; a water outlet of the constant-temperature water bath device is connected with a water inlet of the constant-temperature water bath device by the first buried pipe and the first circulation water pump; pipe openings in two ends of the first buried pipe are respectively provided with a pipe opening temperature sensor; each vertical pipe section of two buried pipes is respectively provided with a plurality of pipe internal temperature sensors; the water outlet of the circulation water tank is connected to a water inlet of the circulation water tank by the second buried pipe and the second circulation water pump. The system disclosed by the invention is suitable for rock soil cold and hot response testing.

Description

Ground cold/thermal response pilot system
Technical field
The present invention relates to ground source heat pump technology, particularly relate to a kind of technology of ground cold/thermal response pilot system.
Background technology
Earth-source hot-pump system utilizes earth surface geothermal using resource as Cooling and Heat Source, by inputting a small amount of high-grade energy, can realize the transfer of energy from low-temperature heat source to high temperature heat source, have stable, energy-conserving and environment-protective, the series of advantages such as maintenance cost is low, have obtained increasing application in the society now of being becoming tight energy day, are the exchange capability of heat of ground for the core foundation of soil source heat pump system design.A large amount of engineering practices prove, the ground exchange capability of heat of different regions has very large difference, and therefore, design is carried out ground thermal property test and have vital effect early stage.
In the hot property test system of traditional ground source heat pump rock-soil, exist following problem:
1) the hot property test system of traditional ground source heat pump rock-soil generally adopts electric heater unit or source pump to do that system heats, refrigeration module, the former can only carry out thermal response test, although the latter can carry out hot and cold response test, there is the problems such as volume is large, system complex;
2) the hot property test system of traditional ground source heat pump rock-soil is generally for single testing well, start after test need do not open heat, under the prerequisite of refrigeration module operational system to record the initial temperature of ground, then unlatching heats, refrigeration module is tested, when calculate the Average heat transfer amount of every meter of this testing well after system stability by the flow that collects and import and export water temperature value, the relative test duration is longer, and cannot analyze the impact between the exchange capability of heat of DIFFERENT SOIL layer and adjacent testing well.
Summary of the invention
For the defect existing in above-mentioned prior art, technical matters to be solved by this invention is to provide one can realize the hot and cold response test of ground, and the test duration is short, can calculate the ground cold/thermal response pilot system of different depth ground exchange capability of heat.
In order to solve the problems of the technologies described above, a kind of ground cold/thermal response pilot system provided by the present invention, is characterized in that: comprise data collector, constant temperature water bath apparatus, cyclic water tank, the first water circulating pump, the second water circulating pump, and two testing wells;
In described two testing wells, be respectively embedded with a underground pipe, the underground pipe in one of them testing well is the first underground pipe, and the underground pipe in another testing well is the second underground pipe;
The water delivering orifice of described constant temperature water bath apparatus is received the water inlet end mouth of pipe of the first underground pipe, and the water delivering orifice of constant temperature water bath apparatus is equipped with a flow sensor for detection of its water flow;
The water side mouth of pipe of described the first underground pipe is received the water inlet of the first water circulating pump, and the water delivering orifice of the first water circulating pump is received the water inlet of constant temperature water bath apparatus;
In the water inlet end mouth of pipe of described the first underground pipe and in the mouth of pipe of water side, be respectively provided with a mouth of pipe temperature sensor, in each vertical segment of the first underground pipe, be respectively provided with temperature sensor in multiple pipes of laying along vertical equi-spaced apart;
The water delivering orifice of described cyclic water tank is received the water inlet end mouth of pipe of the second underground pipe, and the water delivering orifice of cyclic water tank is equipped with a flow sensor for detection of its water flow;
The water side mouth of pipe of described the second underground pipe is received the water inlet of the second water circulating pump, and the water delivering orifice of the second water circulating pump is received the water inlet of cyclic water tank;
In each vertical segment of described the second underground pipe, be respectively provided with temperature sensor in multiple pipes of laying along vertical equi-spaced apart;
Temperature sensor in two flow sensors and two mouth of pipe temperature sensors, each pipe, receives respectively the data acquisition port of data collector.
Further, in each pipe, the vertical laying spacing of temperature sensor is 5~10 meters.
Further, the physical dimension of described two testing wells is all consistent, and the spacing between two testing wells is 2~5 meters.
Further, described the first water circulating pump, the second water circulating pump are variable frequency pump, and the water inlet of the water inlet of the first water circulating pump and the second water circulating pump is respectively equipped with an expansion tank.
Ground cold/thermal response pilot system provided by the invention, can carry out the cold response test of ground source heat pump rock-soil and thermal response test, testing apparatus compact conformation, control accuracy are high, temperature sensing module is placed in underground pipe and can reuses, can measure different depth place tube fluid temperature, calculate the exchange capability of heat of different depth ground, can in measuring ground initial temperature, carry out hot and cold response test, shorten the test duration.
Accompanying drawing explanation
Fig. 1 is the structural representation of the ground cold/thermal response pilot system of the embodiment of the present invention.
Embodiment
Below in conjunction with accompanying drawing explanation, embodiments of the invention are described in further detail, but the present embodiment is not limited to the present invention, every employing analog structure of the present invention and similar variation thereof, all should list protection scope of the present invention in.
As shown in Figure 1, a kind of ground cold/thermal response pilot system that the embodiment of the present invention provides, is characterized in that: comprise data collector 8, constant temperature water bath apparatus 2, cyclic water tank 1, the first water circulating pump 31, the second water circulating pump 32, and two testing wells;
In described two testing wells, be respectively embedded with a underground pipe, the underground pipe in one of them testing well is the first underground pipe 51, and the underground pipe in another testing well is the second underground pipe 52;
The water delivering orifice of described constant temperature water bath apparatus 2 is received the water inlet end mouth of pipe of the first underground pipe 51, and the water delivering orifice of constant temperature water bath apparatus 2 is equipped with a flow sensor 41 for detection of its water flow, and this flow sensor 41 is first flow sensor;
The water side mouth of pipe of described the first underground pipe 51 is received the water inlet of the first water circulating pump 31, and the water delivering orifice of the first water circulating pump 31 is received the water inlet of constant temperature water bath apparatus 2;
In the water inlet end mouth of pipe of described the first underground pipe 51 and be respectively provided with in the mouth of pipe of water side in each vertical segment of a mouth of pipe temperature sensor 6, the first underground pipes 51 and be respectively provided with temperature sensor 7 in multiple pipes of laying along vertical equi-spaced apart;
The water delivering orifice of described cyclic water tank 1 is received the water inlet end mouth of pipe of the second underground pipe 52, and the water delivering orifice of cyclic water tank 1 is equipped with a flow sensor 42 for detection of its water flow, and this flow sensor 42 is second quantity sensor;
The water side mouth of pipe of described the second underground pipe 52 is received the water inlet of the second water circulating pump 32, and the water delivering orifice of the second water circulating pump 32 is received the water inlet of cyclic water tank 1;
In each vertical segment of described the second underground pipe 52, be respectively provided with temperature sensor 7 in multiple pipes of laying along vertical equi-spaced apart;
Temperature sensor 7 in two flow sensors 41,42 and two mouth of pipe temperature sensors 6, each pipe, receives respectively the data acquisition port of data collector 8.
In the embodiment of the present invention, described data collector, constant temperature water bath apparatus are prior art, data collector is for gathering the detection data of temperature sensor in each flow sensor and each mouth of pipe temperature sensor, each pipe, data collector can adopt recording instrument without paper, or there is the miscellaneous equipment of data acquisition function, constant temperature water bath apparatus, for the thermostatted water of 5~70 ℃ is provided, is realized cold response test and the thermal response test of permanent leaving water temperature.
In the embodiment of the present invention, described flow sensor is electromagnetic flowmeter, and in described mouth of pipe temperature sensor, pipe, temperature sensor is high-precision platinum resistor temperature sensor, and in each pipe, the vertical laying spacing of temperature sensor is 5~10 meters.
In the embodiment of the present invention, the physical dimension of described two testing wells is all consistent, and the spacing between two testing wells is 2~5 meters.
In the embodiment of the present invention, described the first water circulating pump, the second water circulating pump are variable frequency pump, and the water inlet of the water inlet of the first water circulating pump 31 and the second water circulating pump 32 is respectively equipped with an expansion tank 9.
The use-pattern of the embodiment of the present invention is as follows:
While carrying out ground thermal response test, constant temperature water bath apparatus is adjusted to thermal response pattern, open the first water circulating pump, the second water circulating pump, and utilize data collector to gather two flow sensors and two mouth of pipe temperature sensors, the detection data of temperature sensor in each pipe, the acquisition interval time is 2 minutes, and regulate the frequency of operation of the first water circulating pump and the second water circulating pump according to the detection data of two flow sensors, make both there is identical discharge, control the water inlet end mouth of pipe temperature (this temperature can detect by the mouth of pipe temperature sensor in this mouth of pipe) of the first underground pipe by the leaving water temperature of regulating thermostatic water bath device,
When the detected temperature value of temperature sensor in each pipe in the second underground pipe in 4 hours when obviously fluctuating, think that the interior detected temperature value of temperature sensor of each pipe in the second underground pipe is the initial temperature value of soil, the mean value that is positioned at the detected temperature of each pipe temperature sensor of same depth in the second underground pipe is the initial temperature of this deep soil.
When the detected temperature value of temperature sensor in each pipe in the first underground pipe in 4 hours when obviously fluctuating, and when obvious fluctuation of the import and export water temperature that two mouth of pipe temperature sensors of the first underground pipe mouth of pipe detect nothing in 4 hours, think that this thermal response (or cold response) test reaches stable, the mean value that is positioned at the detected temperature of each pipe temperature sensor of same depth in the first underground pipe is the temperature-averaging value of this deep soil, the flow value detecting according to first flow sensor, and the import and export water temperature that detects of two mouth of pipe temperature sensors of the first underground pipe mouth of pipe, the temperature-averaging value of each deep soil in the first underground pipe, can calculate the heat exchange amount of the first testing well at different depth, in this process, recirculated water in the first underground pipe rejects heat in soil and along horizontal direction the second testing well is exerted an influence, in this process in the second underground pipe in the pipe of each depth temperature sensor monitors to temperature value there will be rising phenomenon, the flow detection value of each flow sensor collecting according to each moment and the temperature detection value of each temperature sensor, can test thermal response time, the coefficient of heat conductivity of each moment different depth place ground calculates, the coefficient of heat conductivity of different depth ground is averaged and can be tried to achieve the mean coefficient of heat conductivity of thermal response when test ground,
While carrying out the cold response test of ground, constant temperature water bath apparatus is adjusted to cold response modes, other test process and thermal response test process are similar.

Claims (4)

1. a ground cold/thermal response pilot system, is characterized in that: comprise data collector, constant temperature water bath apparatus, cyclic water tank, the first water circulating pump, the second water circulating pump, and two testing wells;
In described two testing wells, be respectively embedded with a underground pipe, the underground pipe in one of them testing well is the first underground pipe, and the underground pipe in another testing well is the second underground pipe;
The water delivering orifice of described constant temperature water bath apparatus is received the water inlet end mouth of pipe of the first underground pipe, and the water delivering orifice of constant temperature water bath apparatus is equipped with a flow sensor for detection of its water flow;
The water side mouth of pipe of described the first underground pipe is received the water inlet of the first water circulating pump, and the water delivering orifice of the first water circulating pump is received the water inlet of constant temperature water bath apparatus;
In the water inlet end mouth of pipe of described the first underground pipe and in the mouth of pipe of water side, be respectively provided with a mouth of pipe temperature sensor, in each vertical segment of the first underground pipe, be respectively provided with temperature sensor in multiple pipes of laying along vertical equi-spaced apart;
The water delivering orifice of described cyclic water tank is received the water inlet end mouth of pipe of the second underground pipe, and the water delivering orifice of cyclic water tank is equipped with a flow sensor for detection of its water flow;
The water side mouth of pipe of described the second underground pipe is received the water inlet of the second water circulating pump, and the water delivering orifice of the second water circulating pump is received the water inlet of cyclic water tank;
In each vertical segment of described the second underground pipe, be respectively provided with temperature sensor in multiple pipes of laying along vertical equi-spaced apart;
Temperature sensor in two flow sensors and two mouth of pipe temperature sensors, each pipe, receives respectively the data acquisition port of data collector.
2. ground cold/thermal response pilot system according to claim 1, is characterized in that: in each pipe, the vertical laying spacing of temperature sensor is 5~10 meters.
3. ground cold/thermal response pilot system according to claim 1, is characterized in that: the physical dimension of described two testing wells is all consistent, and the spacing between two testing wells is 2~5 meters.
4. ground cold/thermal response pilot system according to claim 1, is characterized in that: described the first water circulating pump, the second water circulating pump are variable frequency pump, the water inlet of the water inlet of the first water circulating pump and the second water circulating pump is respectively equipped with an expansion tank.
CN201410028636.7A 2014-01-21 2014-01-21 Rock soil cold and hot response testing system Active CN103792255B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201410028636.7A CN103792255B (en) 2014-01-21 2014-01-21 Rock soil cold and hot response testing system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201410028636.7A CN103792255B (en) 2014-01-21 2014-01-21 Rock soil cold and hot response testing system

Publications (2)

Publication Number Publication Date
CN103792255A true CN103792255A (en) 2014-05-14
CN103792255B CN103792255B (en) 2017-01-18

Family

ID=50668126

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201410028636.7A Active CN103792255B (en) 2014-01-21 2014-01-21 Rock soil cold and hot response testing system

Country Status (1)

Country Link
CN (1) CN103792255B (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104964996A (en) * 2015-06-16 2015-10-07 北京中科华誉能源技术发展有限责任公司 Bidirectional checking rock and soil thermal response test system
CN110514693A (en) * 2019-09-10 2019-11-29 北京中创绿色***科技有限公司 A kind of underground ground thermal parameter detection system and detection method
CN110567747A (en) * 2019-09-30 2019-12-13 安徽省方舟科技开发有限责任公司 Closed energy well energy measuring instrument and energy calculating method

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101430294A (en) * 2007-11-09 2009-05-13 北京华清荣昊新能源开发有限责任公司 Superficial layer earth temperature energy hot/cold response test equipment and test carriage
CN201852804U (en) * 2010-11-24 2011-06-01 中国建筑西南勘察设计研究院有限公司 Device for testing rock-soil thermophysical properties
CN102565121A (en) * 2010-12-31 2012-07-11 北京华清新源科技有限公司 Ground source heat pump-based soil thermophysical property tester and testing vehicle
CN102721722A (en) * 2012-06-20 2012-10-10 扬州大学 In-situ thermal response testing method of stratified thermal properties of underground rock and soil
CN203705380U (en) * 2014-01-21 2014-07-09 上海建科建筑节能技术股份有限公司 Rock-soil cold-hot response testing system

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101430294A (en) * 2007-11-09 2009-05-13 北京华清荣昊新能源开发有限责任公司 Superficial layer earth temperature energy hot/cold response test equipment and test carriage
CN201852804U (en) * 2010-11-24 2011-06-01 中国建筑西南勘察设计研究院有限公司 Device for testing rock-soil thermophysical properties
CN102565121A (en) * 2010-12-31 2012-07-11 北京华清新源科技有限公司 Ground source heat pump-based soil thermophysical property tester and testing vehicle
CN102721722A (en) * 2012-06-20 2012-10-10 扬州大学 In-situ thermal response testing method of stratified thermal properties of underground rock and soil
CN203705380U (en) * 2014-01-21 2014-07-09 上海建科建筑节能技术股份有限公司 Rock-soil cold-hot response testing system

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104964996A (en) * 2015-06-16 2015-10-07 北京中科华誉能源技术发展有限责任公司 Bidirectional checking rock and soil thermal response test system
CN110514693A (en) * 2019-09-10 2019-11-29 北京中创绿色***科技有限公司 A kind of underground ground thermal parameter detection system and detection method
CN110514693B (en) * 2019-09-10 2024-03-08 北京中创绿色***科技有限公司 Underground rock-soil thermal parameter detection system and detection method
CN110567747A (en) * 2019-09-30 2019-12-13 安徽省方舟科技开发有限责任公司 Closed energy well energy measuring instrument and energy calculating method
CN110567747B (en) * 2019-09-30 2024-05-10 安徽省方舟科技开发有限责任公司 Closed energy well energy measuring instrument and energy calculating method

Also Published As

Publication number Publication date
CN103792255B (en) 2017-01-18

Similar Documents

Publication Publication Date Title
CN102590271B (en) Ground source heat pump rock-soil heat response dynamic testing system and testing method
CN104237301B (en) In-situ thermal response testing method for layered rock and soil thermophysical properties
CN202442821U (en) Soil source heat pump buried pipe heat exchanging and soil thermal property testing apparatus
CN102721722A (en) In-situ thermal response testing method of stratified thermal properties of underground rock and soil
CN206974932U (en) Ground geo-thermal response test system
CN106838628A (en) A kind of multisensor heat supply network leaks early-warning monitoring method
CN204203709U (en) A kind of ground thermal property tester based on PLC
CN103792255B (en) Rock soil cold and hot response testing system
CN204694654U (en) The hot physical property of combined type ground source heat pump rock-soil and underground pipe heat exchange tester
CN103048243A (en) Simulative friction measuring device
CN206235584U (en) A kind of experimental system for verifying energy stake Calculation of Heat Transfer model under the conditions of seepage action of ground water
CN105865746B (en) A kind of experimental provision and method of detection seepage flow and pressure and temp relationship
CN104280257A (en) Heat exchange capability testing equipment of underground heat exchanger of ground source heat pump
CN103018274A (en) Rock-soil thermophysical property tester
CN109557126A (en) A kind of measuring device of soil thermal property parameter and seepage parameters
CN203705380U (en) Rock-soil cold-hot response testing system
CN205785754U (en) A kind of experimental provision detecting seepage flow and pressure and temp relation
CN101294857A (en) Heat flow meter and measuring method thereof
CN102539471A (en) Well group rechecking testing device and testing method thereof
KR101202247B1 (en) Method of measuring ground thermal conductivity
CN202649147U (en) Device for testing field thermal response of underground geotechnical layered thermal properties
CN104132962A (en) Test method and test measuring system of mid-high temperature geothermal single well heat exchange amount measurement
Javed Thermal response testing: Results and experiences from a ground source heat pump test facility with multiple boreholes
CN102288637B (en) Single-hole heat exchange power processing method in ground source heat pump
CN204086187U (en) The hot physical property testing device of a kind of layering

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
CB02 Change of applicant information

Address after: 200032 Shanghai city Xuhui District Wanping Road No. 75 on the third floor of 301-A

Applicant after: SHANGHAI JIANKE BUILDING ENERGY-SAVING TECHNOLOGY CO., LTD.

Address before: 200032 Shanghai city Xuhui District Wanping Road No. 75 on the third floor of 301-A

Applicant before: Shandong Jianke Building Energy Service Co., Ltd.

COR Change of bibliographic data
C14 Grant of patent or utility model
GR01 Patent grant