Fabricated energy-saving building and construction method thereof

By adopting a temperature-regulating wall structure in prefabricated buildings and using the combination of solar heat collectors and thermal conductors, the shortcomings in existing prefabricated buildings in terms of heat utilization and temperature control are solved, and more efficient energy utilization and finer temperature control are achieved.

CN119981277APending Publication Date: 2025-05-13ZHEJIANG LIUJIAN CONSTR CO LTD
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Patent Information

Application Number
CN202510157102.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-13
Publication Date
2025-05-13

AI Technical Summary

Technical Problem

Existing prefabricated buildings are inefficient in utilizing solar heat, and have poor heat conduction and temperature control effects.

Method used

The temperature-regulating wall structure is adopted that includes two wall panels and a temperature adjustment device arranged between the two wall panels. The temperature-regulating device includes a solar heat collecting pipe, a heat insulation unit, a water pipe, a pressurized water pump, a water circulation chamber and a transversely movable thermal conductor. Through the movement of the thermal conductor and the cooperation of the temperature control system, the full utilization of heat and the fine control of temperature are achieved.

Benefits of technology

It improves the utilization rate of outdoor solar energy, enhances the heat conduction effect and temperature control accuracy, and improves the overall energy-saving performance of the building.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a fabricated energy-saving building and a construction method thereof, and aims to provide a fabricated energy-saving building which is high in sufficient utilization rate of heat, good in conduction effect and good in temperature control effect. The temperature adjusting device and the wall plate are combined; the temperature adjusting device is further arranged to comprise solar heat collecting pipes arranged on the outer sides of the wallboards, a plurality of heat preservation units arranged between the two wallboards, a water pipe connected with the solar heat collecting pipes, and water pipes which are provided with extending parts and distribute the extending parts on the sides, close to the wallboards on the inner sides, of the heat preservation units. As the temperature of the water pipe is increased through the solar heat collection pipe, and the heat preservation units are mutually independent, the solar energy can be better utilized, and the heat preservation system is suitable for the technical field of energy-saving buildings.
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Description

Technical Field

[0001] The present invention relates to the technical field of energy-saving buildings, and more specifically, to an assembled energy-saving building and a construction method thereof. Background Art

[0002] Energy-saving prefabricated buildings are a current trend in housing. The construction period of prefabricated housing is extremely short, and it can improve the quality problems of traditional housing such as leakage and cracking. At the same time, through the use of thermal insulation and heat insulation materials, the housing can have certain fire prevention and energy-saving properties. Therefore, prefabricated buildings are an important manifestation of architectural modernization.

[0003] Existing prefabricated buildings generally use insulation materials to fill the walls, so that the buildings have higher thermal insulation and cold-proof properties. However, better heat insulation will also result in the indoor application of outdoor heat energy. For example, when the temperature is low, the heat energy generated by outdoor sunlight to the building will be isolated outside the building, making it impossible for the prefabricated building to utilize the sun's heat energy.

[0004] To this end, the Chinese patent application number 2022106393757 on the market discloses an assembled energy-saving building and construction method. It uses a heat-regulating wall to adjust the heat transfer between the indoor and outdoor of the building, and then can utilize external heat energy to improve the energy efficiency of the assembled building. The present invention can improve the filling comprehensiveness between the two wall panels and the temperature insulation effect through the specific structural setting of the adjustable connecting block. However, there is no clear solution for whether the heat is fully utilized, the conduction of heat and the control of its temperature. Therefore, there is currently a need for an assembled energy-saving building with high full utilization rate of heat, good conduction effect, and good temperature control effect. Summary of the invention

[0005] In view of the shortcomings of the prior art, the object of the present invention is to provide an assembled energy-saving building with high heat utilization rate, good heat conduction effect and good temperature control effect.

[0006] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: an assembled energy-saving building, comprising two wall panels and a temperature regulating device arranged between the two wall panels, the two wall panels and the temperature regulating device are connected to form a temperature-regulating wall, the temperature regulating device comprises a solar heat collecting tube arranged on the outside of the wall panel, a plurality of insulation units arranged between the two wall panels, a water pipe connected to the solar heat collecting tube, a water pipe with an extension portion and the extension portion is distributed on the side of each insulation unit close to the inner wall panel, a booster water pump for driving the water in the water pipe to surround the insulation layer, and a water circulation cavity placed in the wall and used to provide water circulation, a gap is set between the water pipe and the inner wall panel, and a heat conductor is provided between the two, and the heat conductor is configured to transfer the heat in the water pipe to the inner wall panel by moving its position laterally.

[0007] The present invention is further configured as follows: the temperature regulating device also includes a driven frame arranged between the inner wall panel and the water pipe, an active frame arranged opposite to the driven frame, a sliding track arranged on the driven frame and the driven frame, a heat conductor arranged on the sliding track and capable of horizontal reciprocating movement on the sliding track, and a driving device for driving the heat conductor to move horizontally.

[0008] The present invention is further configured as follows: the driving device includes a worm arranged on the heat conducting plate, a worm wheel arranged on the inner wall and drivingly connected to the worm, and a driving motor for driving the worm wheel to rotate.

[0009] The present invention is further configured as follows: the temperature regulating device also includes a temperature control system for controlling temperature changes, the temperature control system includes a thermal switch arranged indoors, a mounting frame arranged on an active frame, an electromagnet arranged on the mounting frame and electrically connected to the thermal switch, an on-off switch and a power supply electrically connected to the thermal switch and the electromagnet respectively, a guide rod arranged on the electromagnet, a permanent magnet slidably sleeved outside the guide rod and arranged opposite to the electromagnet, a spring arranged between the electromagnet and the permanent magnet, and a push rod connected to the permanent magnet and in contact with the heat conductor, wherein the thermal switch and the on-off switch are connected in parallel.

[0010] The present invention is further configured to include: a controller and a temperature detector for detecting the heating temperature of the water pipe, wherein the controller includes a receiving unit for receiving the temperature detected by the temperature detector; a comparing unit for setting the limit temperature value of the water pipe, and comparing the detected temperature with the limit temperature value, and setting the maximum temperature threshold of the heat conducting plate as W1; a starting unit for controlling the on / off switch and the start / stop of the motor,

[0011] The specific control method of the temperature control system is as follows: S1, the start unit controls the on-off switch to be in the on state, the electromagnet has strong magnetism and attracts the permanent magnet, the heat conduction plate is in the initial state of being in contact with the inner wall of the inner wall, and the temperature of the heat conduction plate continues to rise under the heating of the water pipe, so that the indoor temperature continues to rise;

[0012] S2. When the temperature of the water pipe exceeds the set value W1, the start unit controls the on-off switch to be in the off state. At this time, because the thermistor is under high temperature, the resistance of the thermistor continues to increase, and the magnetism of the electromagnet continues to weaken;

[0013] S3. When the permanent magnet loses its attraction, it slides on the guide rod under the action of the spring, and pushes the heat conductor away from the water pipe through the push rod;

[0014] S4. When the heat conductor gradually moves away from the surface of the water pipe, the temperature transmitted by the heat conductor gradually decreases, and the temperature detector detects the surface temperature of the heat conductor in real time;

[0015] S5, until the surface temperature of the heat conductor reaches the W0 value, the resistance of the thermal switch decreases, and the start unit controls the on-off switch to be in the on state. At this time, the electromagnet is energized, generating suction force on the permanent magnet, and the push rod is reset. At this time, the controller starts the motor to drive the worm gear to reset the heat conductor and fit it to the surface of the water pipe;

[0016] S6. Repeat the above steps S1-S5.

[0017] The present invention is further configured such that when the temperature detector detects that the surface temperature of the heat conductor is W0 or W1, the next operation is performed.

[0018] By adopting the above technical scheme, the beneficial effects are as follows: 1. In order to improve the utilization rate of outdoor solar energy, the traditional heat conduction method is changed, and it is set to include two wall panels and a temperature regulating device arranged between the two wall panels. The two wall panels and the temperature regulating device are connected to form a temperature-regulating wall. By adopting a combination of the temperature regulating device and the wall panels, a structure that can control the wall temperature is formed between the temperature regulating device and the wall panels. The temperature regulating device is further set to include a solar heat collecting tube arranged on the outside of the wall panel, a plurality of insulation units arranged between the two wall panels, a water pipe connected to the solar heat collecting tube, and a water pipe with an extension portion distributed on the side of each insulation unit close to the inner wall panel. Because the temperature of the water pipe is heated by the solar heat collecting tube, and each insulation unit is independent of each other, after coordinating with the arrangement of the water pipe, it can better utilize solar energy and transfer this part of the energy to the room, which not only increases the utilization rate of energy, but also improves the overall The invention provides a heat preservation effect, and a booster water pump for driving the water in the water pipe to surround the heat preservation layer and a water circulation cavity placed in the wall for providing water circulation, so that the water can flow, the heat can be continuously transferred, and the heat energy is continuously utilized. Furthermore, a gap is set between the water pipe and the inner wall panel, and a heat conductor is arranged between the two. The heat conductor is configured to transfer the heat in the water pipe to the inner wall panel by moving the position laterally. Through the above-mentioned structural setting, a heat conductor can be arranged in the gap between the water pipe and the inner wall panel, and the movement of the heat conductor can directly affect the heat conduction of the water pipe. The most important thing is that the traditional way of regulating temperature is changed, because the water temperature cannot be directly cooled down after reaching a certain level. For example, when the human body feels hot, it cannot adjust the temperature immediately, and a corresponding adjustment process is required. If the heat conductor is directly transferred for movement, this can reduce the heat conduction, thereby reducing the indoor temperature.

[0019] 2. In order to ensure that the displacement of the heat conductor can be set more smoothly, the temperature adjustment device also includes a driven frame arranged between the inner wall plate and the water pipe, an active frame arranged opposite to the driven frame, a sliding track arranged on the driven frame and the driven frame, a heat conductor arranged on the sliding track and capable of horizontal reciprocating movement on the sliding track, and a driving device for driving the heat conductor to move horizontally. The sliding tracks arranged on the active frame and the driven frame can make the heat conductor form displacement under the action of the driving device, so as to achieve the effect of being away from the water pipe and close to the water pipe;

[0020] 3. In order to improve the ability of the heat conductor to automatically adjust its position, the temperature regulating device is configured to also include a temperature control system for controlling temperature changes, the temperature control system includes a thermal switch arranged indoors, a mounting frame arranged on an active frame, an electromagnet arranged on the mounting frame and electrically connected to the thermal switch, a power supply electrically connected to the thermal switch and the electromagnet respectively, a guide rod arranged on the electromagnet, a permanent magnet slidably sleeved outside the guide rod and arranged opposite to the electromagnet, a spring arranged between the electromagnet and the permanent magnet, and a push rod connected to the permanent magnet and in contact with the heat conductor, in conjunction with a control method for the temperature control system, the thermal switch can be used as the main method for controlling the on-off of the current, and when the power is on, the electromagnet maintains a strong magnetism and adsorbs the permanent magnet, the heat conductor always maintains a heat-conducting state, and when the thermal switch reaches a certain temperature and the circuit is disconnected, the electromagnet loses the corresponding magnetism, at this time, the push rod pushes the heat conductor away from the water pipe under the action of the spring, thereby achieving the effect of temperature control and cooling;

[0021] 4. In terms of control method, the present invention further adds a controller and a temperature detector for detecting the heating temperature of the water pipe. The controller includes a receiving unit for receiving the temperature detected by the temperature detector; a comparing unit for setting the limit temperature value of the water pipe, and comparing the detected temperature with the limit temperature value, and setting the maximum temperature threshold of the heat transfer plate to W1; a starting unit for controlling the on and off of the on-off switch and the start and stop of the motor. By detecting the water temperature and setting the maximum threshold, the indoor temperature is instantly controlled to a great extent, reducing human discomfort and greatly improving practicality.

[0022] A construction method suitable for the above-mentioned assembled energy-saving building also includes a roof structure, using a steel structure as a basic framework, and after the wall panels are built on the basic framework, steel bars are laid on the remaining steel structure, and a roof structure is built. The roof structure is made of thermal insulation materials, and specifically includes the following steps:

[0023] S1. Steel structure construction: Build the steel structure and form a flat structure;

[0024] S2. Wall installation: Install the wall along the built steel structure and adjust the controller to the best temperature control mode;

[0025] S3. Roof installation: Install the roof structure along the built steel structure;

[0026] S4. Complete the construction. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] Figure 1 This is a structural diagram of the building construction part of an embodiment of an assembled energy-saving building and an adjustment method thereof of the present invention.

[0028] Figure 2 The present invention is a schematic structural diagram of a temperature-adjusting wall of an assembled energy-saving building and a method for adjusting the same.

[0029] Figure 3 It is a structural schematic diagram of a temperature regulating device in an embodiment of an assembled energy-saving building and a regulating method thereof of the present invention.

[0030] Figure 4 The present invention is a schematic structural diagram of the temperature control of an assembled energy-saving building and a regulation method thereof.

[0031] The reference numerals in the figure are: 10, inner wall panel; 11, outer wall panel; 2, solar collector tube; 3, water pipe; 4, insulation unit; 20, driven frame; 21, active frame; 22, sliding track; 23, heat conductor; 230, worm; 231, worm gear; 232, drive motor; 50, thermal switch; 51, mounting frame; 51, electromagnet; 52, power supply; 520, on-off switch; 53, guide rod; 54, permanent magnet; 55, spring; 56, push rod; 6, steel structure; 7, roof structure. DETAILED DESCRIPTION

[0032] Reference Figures 1 to 4 The present invention further describes an assembled energy-saving building and an adjustment method thereof.

[0033] For ease of explanation, spatial relative terms such as "upper", "lower", "left", "right" and the like are used in the embodiments to illustrate the relationship of one element or feature shown in the figure relative to another element or feature. It should be understood that, in addition to the orientation shown in the figure, the spatial terms are intended to include different orientations of the device in use or operation. For example, if the device in the figure is inverted, the element described as being "under" other elements or features will be positioned "on" other elements or features. Therefore, the exemplary term "under" can include both upper and lower orientations. The device can be positioned in other ways (rotated 90 degrees or in other orientations), and the spatial relative descriptions used here can be interpreted accordingly.

[0034] Furthermore, relational terms such as “first” and “second” and the like are merely used to distinguish one component from another having the same name, but do not necessarily require or imply any such actual relationship or order between these components.

[0035] An assembled energy-saving building comprises two wall panels and a temperature regulating device arranged between the two wall panels. The two wall panels and the temperature regulating device are connected to form a temperature regulating wall. The temperature regulating device comprises a solar heat collecting tube 2 arranged on the outside of the wall panel, a plurality of heat preservation units 4 arranged between the two wall panels, a water pipe 3 connected to the solar heat collecting tube 2, a water pipe 3 provided with an extension portion and distributed on a side of each heat preservation unit 4 close to an inner wall panel 10, a booster water pump for driving water in the water pipe 3 to surround the heat preservation layer, and a water circulation cavity placed in the wall and used for providing water circulation. A gap is provided between the water pipe 3 and the inner wall panel 10, and a heat conductor 23 is provided between the two. The heat conductor 2 3 is configured to transfer the heat in the water pipe 3 to the inner wall panel 10 by moving the position laterally. In order to improve the utilization rate of outdoor solar energy, the traditional heat conduction method is changed. It is configured to include two wall panels and a temperature regulating device arranged between the two wall panels. The two wall panels and the temperature regulating device are connected to form a temperature regulating wall. By adopting a combination between the temperature regulating device and the wall panels, a structure that can control the wall temperature is formed between the temperature regulating device and the wall panels. The temperature regulating device is further configured to include a solar heat collecting pipe 2 arranged on the outside of the wall panel, a plurality of heat preservation units 4 arranged between the two wall panels, a water pipe 3 connected to the solar heat collecting pipe 2, and an extension portion and The extended part is distributed in the water pipe 3 on the side of each of the insulation units 4 close to the inner wall panel 10. Because the temperature of the water pipe 3 is heated by the solar heat collecting tube 2, and each insulation unit 4 is independent of each other, after coordinating with the arrangement of the water pipe 3, it is possible to better utilize the solar energy and transfer this part of the energy to the room, which not only increases the energy utilization rate, but also improves the overall insulation effect. In addition, a booster water pump is used to drive the water in the water pipe 3 to surround the insulation layer, and a water circulation cavity is placed in the wall and used to provide water circulation, so that the water can flow, the heat can be continuously transferred, and the thermal energy is continuously utilized. Further, a gap is set between the water pipe 3 and the inner wall panel 10, and the two A heat conductor 23 is provided between the two, and the heat conductor 23 is configured to transfer the heat in the water pipe 3 to the inner wall panel 10 by moving the position laterally. Through the above-mentioned structural setting, the heat conductor 23 can be set in the gap between the water pipe 3 and the inner wall panel, and the movement of the heat conductor 23 can directly affect the conduction of heat by the water pipe 3. The most important thing is that the traditional way of controlling temperature is changed, because the water temperature cannot be directly cooled down after reaching a certain level. For example, when the human body feels hot, it cannot adjust the temperature immediately, and a corresponding adjustment process is required. Then, if the heat conductor 23 is moved directly by transfer, this can reduce the conduction of heat, thereby reducing the indoor temperature.

[0036] The present invention is further configured that the temperature regulating device also includes a driven frame 20 arranged between the inner wall panel 10 and the water pipe 3, an active frame 21 arranged opposite to the driven frame 20, a sliding track 22 arranged on the driven frame 20 and the driven frame 20, a heat conductor 23 arranged on the sliding track 22 and capable of horizontal reciprocating movement on the sliding track 22, and a driving device for driving the heat conductor 23 to move horizontally. In order to ensure that the displacement of the heat conductor 23 can be set more smoothly, the temperature regulating device also includes a driven frame 20 arranged on the inner wall panel 10 and the water pipe 3, and a driven frame 21 arranged on the driven frame 20. A driven frame 20 between the plate 10 and the water pipe 3, an active frame 21 arranged opposite to the driven frame 20, a sliding track 22 arranged on the driven frame 20 and the driven frame 20, a heat conductor 23 arranged on the sliding track 22 and capable of horizontal reciprocating movement on the sliding track 22, and a driving device for driving the heat conductor 23 to move horizontally. The sliding track 22 arranged on the active frame 21 and the driven frame 20 can cause the heat conductor 23 to form a displacement under the action of the driving device, thereby achieving the effect of being away from the water pipe 3 and approaching the water pipe 3.

[0037] The present invention is further configured such that the driving device includes a worm 230 arranged on the heat conducting plate, a worm wheel 231 arranged on the inner wall and transmission-connected to the worm 230, and a driving motor 232 for driving the worm wheel 231 to rotate. A simple transmission structure is used to reset the heat conducting plate, thereby forming an effect of regulating the heat conduction amount of the heat conducting plate. The present invention has strong practicality and simple structure.

[0038] The present invention is further configured that the temperature regulating device also includes a temperature control system for controlling temperature changes, the temperature control system includes a thermal switch 50 arranged indoors, a mounting frame 51 arranged on the active frame 21, an electromagnet 51 arranged on the mounting frame 51 and electrically connected to the thermal switch 50, an on-off switch 520 and a power supply 52 electrically connected to the thermal switch 50 and the electromagnet 51 respectively, a guide rod 53 arranged on the electromagnet 51, a permanent magnet 54 slidably sleeved outside the guide rod 53 and arranged opposite to the electromagnet 51, a spring 55 arranged between the electromagnet 51 and the permanent magnet 54, and a push rod 56 connected to the permanent magnet 54 and in contact with the heat conductor 23, the thermal switch 50 and the on-off switch 520 are connected in parallel, in order to improve the ability of the heat conductor 23 to automatically adjust its position, by configuring the temperature regulating device to also include a temperature control system for controlling temperature changes, the temperature control system includes the thermal switch 50 arranged indoors, a The mounting frame 51 placed on the active frame 21, the electromagnet 51 arranged on the mounting frame 51 and electrically connected to the thermal switch 50, the power supply 52 electrically connected to the thermal switch 50 and the electromagnet 51 respectively, the guide rod 53 arranged on the electromagnet 51, the permanent magnet 54 slidably sleeved outside the guide rod 53 and arranged opposite to the electromagnet 51, the spring 55 arranged between the electromagnet 51 and the permanent magnet 54, and the push rod 56 connected to the permanent magnet 54 and in contact with the heat conductor 23, in conjunction with the control method for the temperature control system, can use the thermal switch 50 as the main method for controlling the on and off of the current, and when the power is on, the electromagnet 51 maintains a strong magnetism and adsorbs the permanent magnet 54, and the heat conductor 23 always maintains a heat-conducting state, and when the thermal switch 50 reaches a certain temperature and the circuit is disconnected, the electromagnet 51 loses the corresponding magnetism, at this time, the push rod 56 pushes the heat conductor 23 away from the water pipe 3 under the action of the spring 55, thereby achieving the effect of temperature control and cooling.

[0039] The present invention is further configured to further include a controller and a temperature detector for detecting the heating temperature of the water pipe 3, wherein the controller includes a receiving unit for receiving the temperature detected by the temperature detector; a comparing unit for setting the limit temperature value of the water pipe 3, and comparing the detected temperature with the limit temperature value, and setting the maximum temperature threshold of the heat conducting plate to W1; a starting unit for controlling the on / off of the on / off switch 520 and the start / stop of the motor,

[0040] The specific control method of the temperature control system is as follows:

[0041] S1, the start unit controls the on-off switch 520 to be in the on state, the electromagnet 51 has strong magnetism and attracts the permanent magnet 54, the heat conducting plate is in the initial state of being in contact with the inner wall of the inner wall, and the temperature of the heat conducting plate continues to rise under the heating of the water pipe 3, so that the indoor temperature continues to rise;

[0042] S2. When the temperature of the water pipe 3 exceeds the set value W1, the start unit controls the on-off switch 520 to be in an off state. At this time, because the thermistor is under high temperature, the resistance of the thermistor continues to increase, and the magnetism of the electromagnet 51 continues to weaken;

[0043] S3, when the permanent magnet 54 loses its suction force, it slides on the guide rod 53 under the action of the spring 55, and pushes the heat conductor 23 away from the water pipe 3 through the push rod 56;

[0044] S4, when the heat conductor 23 gradually moves away from the surface of the water pipe 3, the temperature transmitted by the heat conductor 23 gradually decreases, and the temperature detector detects the surface temperature of the heat conductor 23 in real time;

[0045] S5, until the surface temperature of the heat conductor 23 reaches the W0 value, the resistance of the thermal switch 50 decreases, and the start unit controls the on-off switch 520 to be in the on state. At this time, the electromagnet 51 is energized to generate suction force on the permanent magnet 54, and the push rod 56 is reset. At this time, the controller starts the motor to drive the worm gear 231 to reset the heat conductor 23 and fit the surface of the water pipe 3;

[0046] S6. Repeat the above steps S1 to S5.

[0047] The present invention is further configured such that when the temperature detector detects that the surface temperature of the heat conductor 23 is W0 or W1, the next operation is performed.

[0048] In terms of the control method, the present invention further adds a controller and a temperature detector for detecting the heating temperature of the water pipe 3. The controller includes a receiving unit for receiving the temperature detected by the temperature detector; a comparison unit for setting the limit temperature value of the water pipe 3, and comparing the detected temperature with the limit temperature value, and setting the maximum temperature threshold of the heat conduction plate to W1; a starting unit for controlling the on and off of the on-off switch 520 and the start and stop of the motor. By detecting the water temperature and setting the maximum threshold, the indoor temperature is instantly controlled to a great extent, reducing human discomfort and greatly improving practicality.

[0049] In the embodiment of the present invention, the traditional heat conversion method is changed by setting up two sets of temperature detection means. First, the temperature of the water pipe 3 is detected. When the water pipe 3 reaches a certain temperature, the water temperature is controlled. The on-off switch 520 can be closed to allow the thermal switch 50 to intervene, and the second circuit can be intervened. The on-off control of the second circuit is performed according to the temperature change in the room, so as to realize the thermal conductivity adjustment of the heat conductor 23, thereby controlling the indoor temperature.

[0050] On the contrary, when the indoor temperature reaches the W0 value, the resistance of the thermal switch 50 decreases, and the starting unit controls the on-off switch 520 to be in the on state. At this time, the electromagnet 51 is energized, generating suction to the permanent magnet 54, and the push rod 56 is reset. At this time, the controller starts the motor to drive the worm gear 231 to reset the heat conductor 23 and fit the surface of the water pipe 3 to achieve the effect of continued heat conduction, thereby realizing the control of the indoor temperature and having strong practicality.

[0051] A construction method suitable for the above-mentioned assembled energy-saving building also includes a roof structure 7, using a steel structure 6 as a basic framework, and after the wall panels are built on the basic framework, steel bars are laid on the remaining part of the steel structure 6, and the roof structure 7 is built. The roof structure 7 is made of insulation material, and specifically includes the following steps:

[0052] S1. Build the steel structure 6: Build the steel structure 6 and form a flat structure;

[0053] S2. Wall installation: Install the wall along the built steel structure 6, and adjust the controller to the best temperature control mode;

[0054] S3, roof installation: install the roof structure 7 along the built steel structure 6;

[0055] S4. Complete the construction.

[0056] By adopting the above-mentioned construction method to construct an energy-saving building, the steel structure 6 is used as the basic framework, and then the temperature-adjusting wall and the roof structure 7 are installed on the steel structure 6 framework. The assembly effect is good, and the roof structure 7 is made of thermal insulation material, thereby improving the overall energy-saving effect of the building and greatly improving the practicality.

[0057] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Common changes and substitutions made by those skilled in the art within the scope of the technical solution of the present invention should be included in the protection scope of the present invention.

Claims

1. An assembled energy-saving building, characterized in that: The invention comprises two wall panels and a temperature regulating device arranged between the two wall panels, wherein the two wall panels and the temperature regulating device are connected to form a temperature regulating wall, wherein the temperature regulating device comprises a solar heat collecting tube (2) arranged on the outside of the wall panel, a plurality of heat preservation units (4) arranged between the two wall panels, a water pipe (3) connected to the solar heat collecting tube (2), a water pipe (3) provided with an extension portion and distributed on a side of each heat preservation unit (4) close to an inner wall panel (10), a booster water pump for driving water in the water pipe (3) to surround the heat preservation layer, and a water circulation cavity arranged in the wall and for providing water circulation, wherein a gap is arranged between the water pipe (3) and the inner wall panel (10), and a heat conductor (23) is arranged between the two, and the heat conductor (23) is configured to conduct the heat in the water pipe (3) to the inner wall panel (10) by moving the position laterally.

2. The assembled energy-saving building according to claim 1, characterized in that: The temperature regulating device further comprises a driven frame (20) arranged between the inner wall plate (10) and the water pipe (3), an active frame (21) arranged opposite to the driven frame (20), sliding rails (22) respectively arranged on the active frame (21) and the driven frame (20), a heat conductor (23) arranged on the sliding rail (22) and capable of transverse reciprocating movement on the sliding rail (22), and a driving device for driving the heat conductor (23) to move transversely.

3. The assembled energy-saving building according to claim 2, characterized in that: The driving device comprises a worm (230) arranged on the heat conducting plate, a worm wheel (231) arranged on the inner wall and drivingly connected to the worm (230), and a driving motor (232) for driving the worm wheel (231) to rotate.

4. The assembled energy-saving building according to claim 3, characterized in that: The temperature regulating device further comprises a temperature control system for controlling temperature changes, the temperature control system comprising a thermal switch (50) arranged indoors, a mounting frame (51) arranged on an active frame (21), an electromagnet (51) arranged on the mounting frame (51) and electrically connected to the thermal switch (50), an on-off switch (520) and a power source (52) electrically connected to the thermal switch (50) and the electromagnet (51), respectively, a guide rod (53) arranged on the electromagnet (51), a permanent magnet (54) slidably sleeved outside the guide rod (53) and arranged opposite to the electromagnet (51), a spring (55) arranged between the electromagnet (51) and the permanent magnet (54), and a push rod (56) connected to the permanent magnet (54) and in contact with the heat conductor (23), wherein the thermal switch (50) and the on-off switch (520) are connected in parallel.

5. The assembled energy-saving building according to claim 4, characterized in that: It also includes a controller and a temperature detector for detecting the heating temperature of the water pipe (3), wherein the controller includes a receiving unit for receiving the temperature detected by the temperature detector; a comparing unit for setting a limit temperature value of the water pipe (3), comparing the detected temperature with the limit temperature value, and setting a maximum temperature threshold value of the heat conducting plate as W1; A starting unit is used to control the on / off of the on / off switch (520) and the start / stop of the motor, The specific control method of the temperature control system is as follows: S1, the start unit controls the on-off switch (520) to be in the on state, the electromagnet (51) has strong magnetism and attracts the permanent magnet (54), the heat conducting plate is in the initial state of being in contact with the inner wall of the inner wall, the temperature of the heat conducting plate is continuously increased under the heating of the water pipe (3), so that the temperature in the room is continuously increased; S2, when the temperature of the water pipe (3) exceeds the set value W1, the start unit controls the on-off switch (520) to be in an off state. At this time, because the thermistor is at a high temperature, the resistance of the thermistor continues to increase, and the magnetism of the electromagnet (51) continues to weaken; S3. When the permanent magnet (54) loses its suction force, it slides on the guide rod (53) under the action of the spring (55), and pushes the heat conductor (23) away from the water pipe (3) through the push rod (56); S4, when the heat conductor (23) gradually moves away from the surface of the water pipe (3), the temperature transmitted by the heat conductor (23) gradually decreases, and the temperature detector detects the surface temperature of the heat conductor (23) in real time; S5, until the surface temperature of the heat conductor (23) reaches the W0 value, the resistance of the thermal switch (50) decreases, and the start unit controls the on-off switch (520) to be in the on state, at which time the electromagnet (51) is energized to generate suction force on the permanent magnet (54), and the push rod (56) is reset. At this time, the controller starts the motor to drive the worm gear (231) to reset the heat conductor (23) and fit it to the surface of the water pipe (3); S6. Repeat the above steps S1 to S5.

6. The assembled energy-saving building according to claim 5, characterized in that: When the temperature detector detects that the surface temperature of the heat conductor (23) is W0 or W1, the next step is performed.

7. A construction method for an assembled energy-saving building according to any one of claims 1 to 6, characterized in that: The method further comprises a roof structure (7), wherein the steel structure (6) is used as a basic framework, and after the wall panels are built on the basic framework, steel bars are laid on the remaining steel structure (6), and a roof structure (7) is built. The roof structure (7) is made of a heat-insulating material, and specifically comprises the following steps: S1. Build the steel structure (6): build the steel structure (6) to form a flat structure; S2. Wall installation: Install the wall along the built steel structure (6) and adjust the controller to the best temperature control mode; S3, roof installation: installing the roof structure (7) along the built steel structure (6); S4. Complete the construction.

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