A water supply and drainage system based on proton building and its construction method
By introducing vacuum sewage discharge devices, wastewater wells, and decay pools into the water supply and drainage system of the proton building, and by wrapping the pipes with lead sheets, the problem of radioactive wastewater treatment in the proton building was solved, and the safe discharge of radioactive wastewater was achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- HUST WUHAN HUASHENG ENG CONSTR
- Filing Date
- 2023-09-06
- Publication Date
- 2026-04-10
AI Technical Summary
The proton tower's water supply and drainage system needs to be designed to handle radioactive wastewater in order to prevent environmental pollution.
A water supply and drainage system based on a proton therapy building was designed, including a vacuum sewage discharge device, a wastewater well and a decay pool. The proton therapy area is connected to the outside world through a sleeve. Radioactive wastewater is treated using medical wastewater drainage pipes and decay pools, and the pipes are wrapped with lead sheeting for radiation protection.
Effective treatment and discharge of radioactive wastewater from proton therapy areas are essential. Wastewater must be discharged only after it has reached discharge standards in decay pools to prevent environmental pollution.
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Figure CN117145011B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of building, in particular to a water supply and drainage system based on a proton building and a construction method thereof. BACKGROUND
[0002] Proton therapy uses high-energy rays with ionizing radiation. Ionizing radiation refers to the process that when protons enter the human body and reach the location of tumor cells, the protons with positive electrons will attract the electrons in the cancer cells, thereby inducing the “radiation ionization” of tumor cells (the process of cells losing electrons). Because of the high division rate of cancer cells and the reduced ability to repair damaged DNA, the DNA of cancer cells is particularly susceptible to attack, so this radiation ionization is particularly prone to occur on the DNA of tumor cells. When a large number of genes on the DNA are damaged to an extent that cannot be repaired, the tumor cells will stop dividing or die. Because of the good effect of proton therapy, more and more proton buildings dedicated to proton therapy are being planned.
[0003] And because proton therapy is a method of radiation therapy, the patients just treated and the medical staff in the proton therapy area will carry radioactive elements. The wastewater after cleaning the patients or medical staff carrying radioactive elements also contains radioactive elements, and random discharge will pollute the environment.
[0004] Therefore, the water supply and drainage system of the proton building cannot be the same as that of the ordinary functional building, and a water supply and drainage system suitable for the proton building needs to be designed. SUMMARY
[0005] In view of the above problems, the present application aims to at least solve the above technical problems by providing a water supply and drainage system based on a proton building and a construction method thereof.
[0006] The present application achieves the above-mentioned purposes through the following technical solutions:
[0007] In a first aspect, the present application provides a water supply and drainage system based on a proton building; the proton building comprises a proton therapy area, the proton therapy area comprises a sewage collection place for collecting sewage of the proton therapy area, and the water supply and drainage system based on the proton building comprises:
[0008] a vacuum sewage discharge device, which is arranged adjacent to the sewage collection place of the proton therapy area;
[0009] a wastewater well and a decay tank, which are arranged outside the proton building;
[0010] a sleeve, comprising a first drainage sleeve embedded in a wall, the first drainage sleeve being connected to the proton therapy area inside the proton building and the outside of the proton building;
[0011] The medical sewage drainage pipeline comprises a first medical sewage collecting pipe section, a second medical sewage collecting pipe section and a third medical sewage collecting pipe section, the first medical sewage collecting pipe section passes through the first water supply sleeve pipe, the sewage collecting place of the proton therapy area, the first medical sewage collecting pipe section, the vacuum sewage device, the second medical sewage collecting pipe section, the decay tank, the third medical sewage collecting pipe section and the waste water well are sequentially communicated.
[0012] In the first aspect, preferably, the proton building is externally provided with a water supply area, and the proton therapy area is further provided with a proton therapy device;
[0013] The sleeve pipe further comprises a first water supply sleeve pipe embedded in the wall body, and the first water supply sleeve pipe connects the proton building outside and the proton therapy area inside the proton building;
[0014] The water supply and drainage system further comprises:
[0015] The cooling water device is arranged in the proton therapy area, and the cooling water device is used for supplying water to the proton therapy device;
[0016] The medical water supply pipeline passes through the first water supply sleeve pipe, and the water inlet of the medical water supply pipeline is communicated with the water outlet of the water supply area, and the water outlet is used for supplying water to the proton therapy area and the cooling water device respectively.
[0017] In the first aspect, preferably, the proton building further comprises a domestic water area, and the domestic water area also has a sewage collecting place for collecting sewage;
[0018] The sleeve pipe further comprises a second water supply sleeve pipe and a second drainage sleeve pipe embedded in the wall body, and the second water supply sleeve pipe and the second drainage sleeve pipe respectively connect the proton building outside and the domestic water area inside the proton building;
[0019] The water supply and drainage system further comprises:
[0020] The domestic water supply pipeline passes through the second water supply sleeve pipe, and the water inlet of the domestic water supply pipeline is communicated with the water outlet of the water supply area, and the water outlet supplies water to the domestic water area;
[0021] The domestic sewage drainage pipeline passes through the second drainage sleeve pipe, and the water inlet of the domestic sewage drainage pipeline is communicated with the sewage collecting place of the domestic water area, and the water outlet is communicated with the waste water well.
[0022] In the first aspect, preferably, the proton building further comprises a first fire extinguishing area and a second fire extinguishing area, the first fire extinguishing area is provided with an automatic water spray fire extinguishing system, and the second fire extinguishing area is provided with a fire water tank and a high-pressure fine water mist pump group fire extinguishing system, the fire water tank is used to supply water to the high-pressure fine water mist pump group fire extinguishing system;
[0023] The sleeve further comprises a third water supply sleeve and a fourth water supply sleeve embedded in the wall body, the third water supply sleeve connects the outside of the proton building and the first fire extinguishing area in the proton building, and the fourth water supply sleeve connects the outside of the proton building and the second fire extinguishing area in the proton building;
[0024] The water supply and drainage system further comprises:
[0025] A first fire extinguishing water supply pipeline passes through the third water supply sleeve, a water inlet of the first fire extinguishing water supply pipeline is connected with the water supply area, and a water outlet supplies water to the automatic water spray fire extinguishing system;
[0026] A second fire extinguishing water supply pipeline passes through the fourth water supply sleeve, a water inlet of the second fire extinguishing water supply pipeline is connected with the water supply area, and a water outlet supplies water to the fire water tank.
[0027] In the first aspect, preferably, the proton building further comprises a roof, and the roof is provided with a hot water machine room;
[0028] The sleeve further comprises a fifth water supply sleeve and a sixth water supply sleeve embedded in the wall body, the fifth water supply sleeve connects the outside of the proton building and the roof of the proton building, and the sixth water supply sleeve connects the outside of the proton building and a domestic water area in the proton building;
[0029] The water supply and drainage system further comprises:
[0030] A machine room water supply pipeline passes through the fifth water supply sleeve, a water inlet of the machine room water supply pipeline is connected with the water supply area, and a water outlet supplies water to the hot water machine room;
[0031] A hot water supply pipeline passes through the sixth water supply sleeve, a water inlet of the hot water supply pipeline is connected with the hot water machine room, and a water outlet supplies water to the domestic water area.
[0032] In the first aspect, preferably, the proton building comprises an outer wall;
[0033] The water supply and drainage system further comprises:
[0034] The main water supply pipeline comprises a first main water supply pipe section and a second main water supply pipe section connected in sequence with the water supply area, the second main water supply pipe section is vertically installed on the outer wall, the second main water supply pipe section has a plurality of water outlets, the domestic water supply pipeline, the medical water supply pipeline, the first fire extinguishing water supply pipeline, the second fire extinguishing water supply pipeline and the machine room water supply pipeline are respectively communicated with the corresponding water outlets on the second main water supply pipe section.
[0035] The variable frequency water pump is installed on the first main water supply pipe section.
[0036] In the first aspect, preferably, the wall of the roof is further provided with a rainwater drainage opening.
[0037] The water supply and drainage system further comprises:
[0038] The rainwater drainage pipeline has a water inlet communicated with the rainwater drainage opening and a water outlet communicated with the domestic sewage drainage pipeline.
[0039] In the first aspect, preferably, the medical sewage drainage pipeline is respectively formed by electrically heating and melting a plurality of HDPE pipe sections.
[0040] In the first aspect, preferably, the main water supply pipeline, the medical water supply pipeline, the domestic water supply pipeline, the first fire extinguishing water supply pipeline, the second fire extinguishing water supply pipeline, the machine room water supply pipeline and the hot water supply pipeline are respectively connected by socket and spigot argon arc welding of a plurality of stainless steel pipe sections.
[0041] In the first aspect, preferably, the domestic sewage drainage pipeline and the rainwater drainage pipeline are respectively connected by socket and spigot adhesion of a plurality of UPVC pipe sections.
[0042] In the first aspect, preferably, the inner surface of the sleeve is sequentially provided with a rust-proof paint layer and a finish paint layer.
[0043] In the first aspect, preferably, the outer periphery of the first medical sewage collection pipe section and the second medical sewage collection pipe section is provided with lead sheet, and the thickness of the lead sheet is 3mm.
[0044] In the second aspect, the application further provides a construction method of a water supply and drainage system based on a proton building; the construction method comprises:
[0045] S1: embedding a first drainage sleeve at a first batch of target points of a target wall, the first drainage sleeve being communicated with a proton treatment area inside the proton building and outside the proton building;
[0046] S2: laying a medical sewage drainage pipeline; the medical sewage drainage pipeline comprises a first medical sewage collection pipe section, a second medical sewage collection pipe section, and a third medical sewage collection pipe section, and the first medical sewage collection pipe section passes through the first drainage sleeve, and the sewage collection place of the proton treatment area, the first medical sewage collection pipe section, the vacuum sewage device, the second medical sewage collection pipe section, the decay tank, the third medical sewage collection pipe section, and the waste water well are sequentially communicated;
[0047] S3: wrapping the medical sewage drainage pipeline with lead sheets on the outer periphery, and completing the construction of the water supply and drainage system based on the proton building.
[0048] In the second aspect, preferably, in the S1, a first water supply sleeve is also pre-buried at the first batch of target points of the target wall, and the first water supply sleeve communicates the proton building outside and the proton treatment area inside the proton building;
[0049] In the S2, a medical water supply pipeline is also laid; the medical water supply pipeline passes through the first water supply sleeve, the water inlet of the medical water supply pipeline is communicated with the water outlet of the water supply area, and the water outlets of the medical water supply pipeline supply water to the proton treatment area and the cooling water device, respectively.
[0050] In the second aspect, preferably, in the S1, a second water supply sleeve and a second drainage sleeve are also pre-buried at the second batch of target points of the target wall, respectively, so that the second water supply sleeve and the second drainage sleeve respectively communicate the domestic water area outside the proton building and inside the proton building;
[0051] In the S2, a domestic water supply pipeline and a domestic sewage drainage pipeline are also laid; the domestic water supply pipeline passes through the second water supply sleeve, the water inlet of the domestic water supply pipeline is communicated with the water outlet of the water supply area, and the water outlet of the domestic water supply pipeline supplies water to the domestic water area; the domestic sewage drainage pipeline passes through the second drainage sleeve, the water inlet of the domestic sewage drainage pipeline is communicated with the sewage collection place of the domestic water area, and the water outlet of the domestic sewage drainage pipeline is communicated with the waste water well.
[0052] In the second aspect, preferably, in the S1, a third water supply sleeve and a fourth water supply sleeve are also pre-buried at the third batch of target points of the target wall, respectively, so that the third water supply sleeve communicates the first fire extinguishing area outside the proton building and inside the proton building, and the fourth water supply sleeve communicates the second fire extinguishing area outside the proton building and inside the proton building;
[0053] In the S2, the first fire extinguishing water supply pipe and the second fire extinguishing water supply pipe are laid, the first fire extinguishing water supply pipe passes through the third water supply sleeve, the water inlet of the first fire extinguishing water supply pipe is communicated with the water supply area, and the water outlet is supplied to the automatic sprinkler system in the first fire extinguishing area, the second fire extinguishing water supply pipe passes through the fourth water supply sleeve, the water inlet of the second fire extinguishing water supply pipe is communicated with the water supply area, and the water outlet is supplied to the fire water tank in the second fire extinguishing area.
[0054] In the second aspect, preferably, in the S1, the fifth water supply sleeve and the sixth water supply sleeve are pre-buried at the fourth batch of target points of the target wall, the fifth water supply sleeve is communicated with the outside of the proton building and the top floor of the proton building, and the sixth water supply sleeve is communicated with the outside of the proton building and the domestic water area in the proton building.
[0055] In the S2, the machine room water supply pipe and the hot water supply pipe are laid, the machine room water supply pipe passes through the fifth water supply sleeve, the water inlet of the machine room water supply pipe is communicated with the water supply area, and the water outlet is supplied to the hot water machine room, and the hot water supply pipe passes through the sixth water supply sleeve, the water inlet of the hot water supply pipe is communicated with the hot water machine room, and the water outlet is supplied to the domestic water area.
[0056] Preferably, in the S2, the main water supply pipe is laid, the main water supply pipe comprises a first main water supply pipe segment and a second main water supply pipe segment connected with the water supply area in sequence, a variable frequency water pump is installed on the first main water supply pipe segment, the second main water supply pipe segment is vertically installed on the outer wall of the proton building, a plurality of water outlets are formed on the second main water supply pipe segment, and the water inlets of the domestic water supply pipe, the medical water supply pipe, the first fire extinguishing water supply pipe, the second fire extinguishing water supply pipe, and the machine room water supply pipe are communicated with the water outlets of the second main water supply pipe segment in one-to-one correspondence.
[0057] In the second aspect, preferably, in the S1, a rainwater drainage opening communicated with the outside of the proton building is formed at the fifth batch of target points of the top floor wall.
[0058] In the S2, the rainwater drainage pipe is laid, the water inlet of the rainwater drainage pipe is communicated with the rainwater drainage opening, and the water outlet is communicated with the domestic sewage drainage pipe.
[0059] In the second aspect, preferably, in the S2, a plurality of HDPE pipe segments are sequentially spliced into a to-be-connected pipe, and any two adjacent HDPE pipe segments are connected by electric heating melting to form the medical sewage drainage pipe.
[0060] In the second aspect, preferably, in the S2, several stainless steel pipe segments are spliced into multiple to-be-connected pipelines, and any two adjacent stainless steel pipe segments are connected by socket argon arc welding to form the main water supply pipeline, the medical water supply pipeline, the domestic water supply pipeline, the first fire extinguishing water supply pipeline, the second fire extinguishing water supply pipeline, the machine room water supply pipeline, and the hot water supply pipeline, respectively.
[0061] In the second aspect, preferably, in the S2, several UPVC pipe segments are spliced into multiple to-be-connected pipelines, and any two adjacent UPVC pipe segments are socket bonded to form the domestic sewage drainage pipeline and the rainwater drainage pipeline, respectively.
[0062] In the second aspect, preferably, in the S1, before the pre-buried sleeve, the inner surface of the sleeve needs to be rusted, and then the inner surface of the sleeve is brushed with anti-rust paint and finish paint in sequence.
[0063] Preferably, in the S2, the outer periphery of the first medical sewage collection pipe segment and the outer periphery of the second medical sewage collection pipe segment are wrapped with lead sheets, and the thickness of the lead sheets is 3mm.
[0064] Beneficial effects:
[0065] The application provides a water supply and drainage system based on a proton building and a construction method thereof; a proton treatment area comprises a sewage collection area for collecting sewage in the proton treatment area, a vacuum sewage discharge device is arranged adjacent to the sewage collection area of the proton treatment area, a waste water well and a decay tank are arranged outside the proton building, respectively, a first drainage sleeve is pre-buried in a wall, the first drainage sleeve connects the proton treatment area inside the proton building and the proton building outside, a medical sewage drainage pipeline comprises a first medical sewage collection pipe segment, a second medical sewage collection pipe segment and a third medical sewage collection pipe segment, the first medical sewage collection pipe segment passes through the first drainage sleeve, the sewage collection area of the proton treatment area, the first medical sewage collection pipe segment, the vacuum sewage discharge device, the second medical sewage collection pipe segment, the decay tank, the third medical sewage collection pipe segment and the waste water well are connected in sequence, so that the radioactive sewage collected in the sewage collection area of the proton treatment area is collected in the decay tank through the first medical sewage collection pipe segment, the vacuum sewage discharge device and the second medical sewage collection pipe segment in sequence, the radioactive sewage is treated in the decay tank and reaches a discharge standard, and then is discharged into the waste water well through the third medical sewage collection pipe segment, and the medical sewage drainage pipeline is wrapped with lead sheets on the outer periphery to perform anti-radiation treatment.
[0066] The above description is only a summary of the technical solutions of the present application, in order to more clearly understand the technical means of the present application, and can be implemented according to the content of the specification, and in order to make the above and other purposes, characteristics and advantages of the present application more obvious and easy to understand, the specific embodiments of the present application are as follows. BRIEF DESCRIPTION OF DRAWINGS
[0067] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed in the embodiments will be briefly introduced as follows. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor on the basis of these drawings.
[0068] Fig. 1 Structure diagram of a water supply and drainage system based on a proton building in the present application;
[0069] Fig. 2 Structure diagram of a water supply and drainage system based on a proton building in the present application;
[0070] Fig. 3 Structure diagram of a water supply and drainage system based on a proton building in the present application; the drawings are marked as:
[0071] 1-proton building;
[0072] 1a-inside the proton building;
[0073] 1b-outside the proton building;
[0074] 101-proton treatment area;
[0075] 1011-wastewater collection place of the proton treatment area;
[0076] 1012-proton treatment equipment;
[0077] 102-domestic water area;
[0078] 1021-wastewater collection place of the domestic water area;
[0079] 103-first fire extinguishing area;
[0080] 104-second fire extinguishing area;
[0081] 105-roof;
[0082] 1051-rainwater drainage outlet;
[0083] 106-outer wall;
[0084] 2-main water supply pipeline;
[0085] 201 - first main water supply pipe section;
[0086] 202 - second main water supply pipe section;
[0087] 3 - medical sewage drainage pipe;
[0088] 301 - first medical sewage collection pipe section;
[0089] 302 - second medical sewage collection pipe section;
[0090] 303 - third medical sewage collection pipe section;
[0091] 4 - medical water supply pipe;
[0092] 5 - domestic water supply pipe;
[0093] 6 - domestic sewage drainage pipe;
[0094] 7 - first fire extinguishing water supply pipe;
[0095] 8 - second fire extinguishing water supply pipe;
[0096] 9 - machine room water supply pipe;
[0097] 10 - hot water supply pipe;
[0098] 11 - variable frequency water pump;
[0099] 12 - rainwater drainage pipe;
[0100] 13 - vacuum sewage device;
[0101] 14 - wastewater well;
[0102] 15 - decay tank;
[0103] 16 - water supply area;
[0104] 17 - cooling water device;
[0105] 18 - automatic sprinkler fire extinguishing system;
[0106] 19 - fire water tank;
[0107] 20 - high-pressure water mist pump group fire extinguishing system;
[0108] 21 - hot water machine room. DETAILED DESCRIPTION
[0109] The technical solutions in the embodiments of the present specification will be clearly and completely described in the present specification with reference to the drawings in the embodiments of the present specification. Obviously, the described embodiments are only some of the embodiments of the present specification, rather than all the embodiments. Based on the embodiments in the present specification, all other embodiments obtained by those skilled in the art belong to the scope of protection of the present application; wherein the keyword "and / or" involved in the present embodiment means and, or both cases, in other words, A and / or B mentioned in the embodiments of the present specification means A and B, A or B, which describes three states of A and B, such as A and / or B, which means only A without B; only B without A; including A and B.
[0110] At the same time, in the embodiments of the present specification, when one component is considered to be "connected" to another component, it can be directly connected to another component or there can be a middle component. When one component is considered to be "disposed on" another component, it can be directly disposed on another component or there can be a middle component.
[0111] Embodiment one
[0112] Please refer to Figs. 1-3The application provides a water supply and drainage system based on a proton building; the proton building 1a comprises a proton treatment area 101, and a sewage collection place for collecting sewage of the proton treatment area 101 is arranged at the proton treatment area 101; the water supply and drainage system based on the proton building 1 comprises: a vacuum sewage discharge device 13, which is arranged adjacent to the sewage collection place 1011 of the proton treatment area; a waste water well 14 and a decay tank 15, which are arranged outside the proton building 1b; a sleeve, which comprises a first drainage sleeve pipe that is pre-buried at a target point of a target wall body, and the first drainage sleeve pipe is connected with the proton treatment area 101 of the proton building 1a and the proton building 1b outside; a medical sewage drainage pipeline 3, which comprises a first medical sewage collection pipe section 301, a second medical sewage collection pipe section 302 and a third medical sewage collection pipe section 303, the first medical sewage collection pipe section 301 passes through the first drainage sleeve pipe, and the sewage collection place 1011 of the proton treatment area, the first medical sewage collection pipe section 301, the vacuum sewage discharge device 13, the second medical sewage collection pipe section 302, the decay tank 15, the third medical sewage collection pipe section 303 and the waste water well 14 are sequentially connected. The proton building 1b outside has a water supply area 16, and the proton treatment area 101 is provided with a proton treatment equipment 1012; the sleeve further comprises a first water supply sleeve pipe that is pre-buried at a target point of a target wall body, and the first water supply sleeve pipe is connected with the proton treatment area 101 of the proton building 1a and the proton building 1b outside; the water supply and drainage system further comprises: a cooling water device 17, which is arranged in the proton treatment area 101, and the cooling water device 17 is used for supplying water to the proton treatment equipment 1012; and a medical water supply pipeline 4, which passes through the first water supply sleeve pipe, and a water inlet of the medical water supply pipeline 4 is connected with the water supply area 16, and water outlets are used for supplying water to the proton treatment area 101 and the cooling water device 17 respectively.
[0113] Specifically, the proton building outside 1b has a water supply area 16, which can be a water supply tank or a municipal pipe network, and the proton building inside 1a includes a proton treatment area 101 provided with a proton treatment device 1012, which is a proton cyclotron for proton treatment. The first drainage sleeve is pre-buried at the target point corresponding to the target wall body, and the first drainage sleeve is connected with the proton treatment area 101 of the proton building outside 1b and the proton building inside 1a respectively. The medical water supply pipeline 4 passes through the first water supply sleeve. The cooling water device 17 is arranged in the proton treatment area 101, and is used for supplying water to the proton treatment device 1012. The water inlet of the medical water supply pipeline 4 is communicated with the water outlet of the water supply area 16. The water outlet of the medical water supply pipeline 4 has a plurality of outlets, part of which is used for supplying water to the proton treatment area 101, and the other part is communicated with the cooling water device 17, so that the water in the water supply area 16 is used by the personnel in the proton treatment area 101 through the medical water supply pipeline 4, and the water in the water supply area 16 is also supplied to the cooling water device 17 through the medical water supply pipeline 4. The cooling water device 17 cools the water for use of the proton treatment device 1012; the proton treatment area 101 includes a sewage collection place for collecting sewage in the proton treatment area 101. The vacuum sewage device 13 is arranged adjacent to the sewage collection place 1011 of the proton treatment area. The waste water well 14 and the decay tank 15 are arranged in the proton building outside 1b. The first drainage sleeve is pre-buried at the target point corresponding to the target wall body, and the first drainage sleeve is connected with the proton treatment area 101 of the proton building outside 1b and the proton building inside 1a. The medical sewage drainage pipeline 3 includes a first medical sewage collection pipe section 301, a second medical sewage collection pipe section 302, and a third medical sewage collection pipe section 303. The first medical sewage collection pipe section 301 passes through the first drainage sleeve. The sewage collection place 1011 of the proton treatment area, the first medical sewage collection pipe section 301, the vacuum sewage device 13, the second medical sewage collection pipe section 302, the decay tank 15, the third medical sewage collection pipe section 303, and the waste water well 14 are sequentially communicated, so that the radioactive sewage collected in the sewage collection place 1011 of the proton treatment area is sequentially collected to the decay tank 15 through the first medical sewage collection pipe section 301, the vacuum sewage device 13, and the second medical sewage collection pipe section 302. After the radioactive sewage is treated by the decay tank 15 and reaches the discharge standard, it is discharged into the waste water well 14 through the third medical sewage collection pipe section 303.
[0114] In a possible implementation, the proton building 1a further comprises a domestic water area 102, the domestic water area 102 also has a sewage collection place for collecting sewage; the sleeve further comprises a second water supply sleeve and a second drainage sleeve pre-buried at the corresponding target point of the target wall, the second water supply sleeve and the second drainage sleeve are respectively connected with the domestic water area 102 of the proton building 1a and the proton building 1b outside 1b; the water supply and drainage system further comprises: a domestic water supply pipeline 5 passing through the second water supply sleeve, the water inlet of the domestic water supply pipeline 5 being connected with the water outlet of the water supply area 16, and the water outlet of the domestic water supply pipeline 5 supplying water to the domestic water area 102; and a domestic sewage drainage pipeline 6 passing through the second drainage sleeve, the water inlet of the domestic sewage drainage pipeline 6 being connected with the sewage collection place 1021 of the domestic water area, and the water outlet of the domestic sewage drainage pipeline 6 being connected with the wastewater well 14.
[0115] Specifically, the proton building 1a further comprises a domestic water area 102, the domestic water area 102 being another daily water area arranged away from the proton device area, the domestic water supply pipeline 5 passing through the second water supply sleeve, the water inlet of the domestic water supply pipeline 5 being connected with the water outlet of the water supply area 16, the water outlet of the domestic water supply pipeline 5 supplying water to the domestic water area 102, so that the water of the water supply area 16 is supplied to the domestic water area 102 through the domestic water supply pipeline 5; the domestic water area 102 also has a sewage collection place for collecting sewage, the sewage collection place 1021 of the domestic water area being used for collecting sewage in the domestic water area 102, the domestic sewage drainage pipeline 6 passing through the second drainage sleeve, the water inlet of the domestic sewage drainage pipeline 6 being connected with the sewage collection place 1021 of the domestic water area, and the water outlet of the domestic sewage drainage pipeline 6 being connected with the wastewater well 14, so that the sewage collected by the sewage collection place 1021 of the domestic water area is discharged into the wastewater well 14 through the domestic sewage drainage pipeline 6.
[0116] In a possible implementation, the proton building 1a further comprises a first fire extinguishing area 103 and a second fire extinguishing area 104, the first fire extinguishing area 103 being provided with an automatic water spray fire extinguishing system 18, and the second fire extinguishing area 104 being provided with a fire water tank 19 and a high-pressure fine water mist pump group type fire extinguishing system 20, the fire water tank 19 being used for supplying water to the high-pressure fine water mist pump group type fire extinguishing system 20; the sleeve further comprises a third water supply sleeve and a fourth water supply sleeve pre-buried at the corresponding target point of the target wall, the third water supply sleeve being connected with the first fire extinguishing area 103 of the proton building 1a and the proton building 1b outside 1b, and the fourth water supply sleeve being connected with the second fire extinguishing area 104 of the proton building 1a and the proton building 1b outside 1b; the water supply and drainage system further comprises: a first fire extinguishing water supply pipeline 7 passing through the third water supply sleeve, the water inlet of the first fire extinguishing water supply pipeline 7 being connected with the water supply area 16, and the water outlet of the first fire extinguishing water supply pipeline 7 supplying water to the automatic water spray fire extinguishing system 18; and a second fire extinguishing water supply pipeline 8 passing through the fourth water supply sleeve, the water inlet of the second fire extinguishing water supply pipeline 8 being connected with the water supply area 16, and the water outlet of the second fire extinguishing water supply pipeline 8 supplying water to the fire water tank 19.
[0117] Specifically, the first fire extinguishing area 103 is a common area where large water can be directly sprayed to extinguish fire. The first fire extinguishing area 103 is provided with an automatic water spraying fire extinguishing system 18. A first fire extinguishing water supply pipeline 7 passes through a third water supply sleeve. A water inlet of the first fire extinguishing water supply pipeline 7 is communicated with the water supply area 16. A water outlet of the first fire extinguishing water supply pipeline 7 supplies water to the automatic water spraying fire extinguishing system 18. Water in the water supply area 16 passes through the first fire extinguishing water supply pipeline 7 to supply water to the automatic water spraying fire extinguishing system 18. The second fire extinguishing area 104 is an area such as an equipment room, a medical room, and a power distribution room, which cannot directly spray large water to extinguish fire. The second fire extinguishing area 104 is provided with a fire water tank 19 and a high-pressure fine water mist pump group fire extinguishing system 20. A second fire extinguishing water supply pipeline 8 passes through a fourth water supply sleeve. A water inlet of the second fire extinguishing water supply pipeline 8 is communicated with the water supply area 16. A water outlet of the second fire extinguishing water supply pipeline 8 supplies water to the fire water tank 19. Water in the water supply area 16 passes through the second fire extinguishing water supply pipeline 8 to supply water to the fire water tank 19. The fire water tank 19 supplies water to the high-pressure fine water mist pump group fire extinguishing system 20.
[0118] In a possible implementation, the proton building 1a further includes a roof 105 provided with a hot water machine room 21. The sleeve further includes a fifth water supply sleeve and a sixth water supply sleeve pre-buried at target points corresponding to target walls. The fifth water supply sleeve is communicated with the proton building outside 1b and the roof of the proton building 1. The sixth water supply sleeve is communicated with the proton building outside 1b and the domestic water area 102 of the proton building inside 1a. The water supply and drainage system further includes: a machine room water supply pipeline 9 passing through the fifth water supply sleeve. A water inlet of the machine room water supply pipeline 9 is communicated with the water supply area 16. A water outlet of the machine room water supply pipeline 9 supplies water to the hot water machine room 21. A hot water supply pipeline 10 passes through the sixth water supply sleeve. A water inlet of the hot water supply pipeline 10 is communicated with the hot water machine room 21. A water outlet of the hot water supply pipeline 10 supplies water to the domestic water area 102.
[0119] Specifically, the roof 105 is provided with the hot water machine room 21. The machine room water supply pipeline 9 passes through the fifth water supply sleeve. A water inlet of the machine room water supply pipeline 9 is communicated with the water supply area 16. A water outlet of the machine room water supply pipeline 9 supplies water to the hot water machine room 21. Water in the water supply area 16 passes through the machine room water supply pipeline 9 to supply water to the hot water machine room 21. The hot water supply pipeline 10 passes through the sixth water supply sleeve. A water inlet of the hot water supply pipeline 10 is communicated with the hot water machine room 21. A water outlet of the hot water supply pipeline 10 supplies water to the domestic water area 102. Water heated by the hot water machine room 21 passes through the hot water supply pipeline 10 to supply hot water to the domestic water area 102.
[0120] In a possible implementation, the proton building 1 comprises an outer wall 106; the water supply and drainage system further comprises: a main water supply pipeline 2 comprising a first main water supply pipe section 201 and a second main water supply pipe section 202 connected in sequence with the water supply area 16, the second main water supply pipe section 202 being vertically installed on the outer wall 106, the second main water supply pipe section 202 having a plurality of water outlets, the domestic water supply pipeline 5, the medical water supply pipeline 4, the first fire extinguishing water supply pipeline 7, the second fire extinguishing water supply pipeline 8, and the machine room water supply pipeline 9 being in communication with the water outlets of the second main water supply pipe section 202 respectively; and a variable frequency water pump 11 installed on the first main water supply pipe section 201.
[0121] Specifically, the main water supply pipeline 2 comprises the first main water supply pipe section 201 and the second main water supply pipe section 202 connected in sequence with the water supply area 16, the second main water supply pipe section 202 being vertically installed on the outer wall 106, the second main water supply pipe section 202 having a plurality of water outlets, the domestic water supply pipeline 5, the medical water supply pipeline 4, the first fire extinguishing water supply pipeline 7, the second fire extinguishing water supply pipeline 8, and the machine room water supply pipeline 9 being in communication with the water outlets of the second main water supply pipe section 202 respectively, the water supply area 16 supplies domestic water to the domestic water area 102 through the main water supply pipeline 2 and the domestic water supply pipeline 5, the water supply area 16 supplies water to the proton therapy area 101 and the cooling water device 17 through the main water supply pipeline 2 and the medical water supply pipeline 4, the water supply area 16 supplies water to the first fire extinguishing area 103 through the main water supply pipeline 2 and the first fire extinguishing water supply pipeline 7, the water supply area 16 supplies water to the second fire extinguishing area 104 through the main water supply pipeline 2 and the second fire extinguishing water supply pipeline 8, and the water supply area 16 supplies water to the hot water machine room 21 through the main water supply pipeline 2 and the machine room water supply pipeline 9; the variable frequency water pump 11 is installed on the first main water supply pipe section 201 to increase the water supply pressure.
[0122] In a possible implementation, the wall of the roof 105 is further provided with a rainwater drainage opening 1051; the water supply and drainage system further comprises: a rainwater drainage pipeline 12, a water inlet of the rainwater drainage pipeline 12 being in communication with the rainwater drainage opening 1051, and a water outlet of the rainwater drainage pipeline 12 being in communication with the domestic sewage drainage pipeline 6.
[0123] Specifically, the wall of the roof 105 is provided with the rainwater drainage opening 1051 communicating with the outside of the proton building 1a; the water inlet of the rainwater drainage pipeline 12 is in communication with the rainwater drainage opening 1051, and the water outlet of the rainwater drainage pipeline 12 is in communication with the domestic sewage drainage pipeline 6, so that the rainwater of the roof 105 is drained into the waste water well 14 through the rainwater drainage pipeline 12 and the domestic sewage drainage pipeline 6.
[0124] In a possible implementation, the medical sewage drainage pipes 3 are respectively formed by electrically heat-melting a plurality of HDPE pipe segments. The main water supply pipe 2, the medical water supply pipe 4, the domestic water supply pipe 5, the first fire-fighting water supply pipe 7, the second fire-fighting water supply pipe 8, the machine room water supply pipe 9, and the hot water supply pipe 10 are respectively connected by socket and spigot argon arc welding of a plurality of stainless steel pipe segments. The domestic sewage drainage pipe 6 and the rainwater drainage pipe 12 are respectively connected by socket and spigot adhesion of a plurality of UPVC pipe segments.
[0125] Specifically, the medical sewage drainage pipes 3 are respectively formed by electrically heat-melting a plurality of HDPE pipe segments, and have good sealing performance. The main water supply pipe 2, the medical water supply pipe 4, the domestic water supply pipe 5, the first fire-fighting water supply pipe 7, the second fire-fighting water supply pipe 8, the machine room water supply pipe 9, and the hot water supply pipe 10 are respectively connected by socket and spigot argon arc welding of a plurality of stainless steel pipe segments, and have good compression resistance. The domestic sewage drainage pipe 6 and the rainwater drainage pipe 12 are respectively connected by socket and spigot adhesion of a plurality of UPVC pipe segments, and have good corrosion resistance.
[0126] In a possible implementation, the inner surface of the sleeve is sequentially provided with a rust-proof paint layer and a finish paint layer.
[0127] Specifically, the inner surface of the sleeve is sequentially provided with a rust-proof paint layer and a finish paint layer, so as to avoid corrosion of the inner surface of the sleeve.
[0128] In a possible implementation, the outer periphery of the first medical sewage collection pipe segment 301 and the second medical sewage collection pipe segment 302 is wrapped with lead sheet. The thickness of the lead sheet is 3 mm.
[0129] Specifically, the outer periphery of the first medical sewage collection pipe segment 301 and the second medical sewage collection pipe segment 302 is wrapped with lead sheet, and the thickness of the lead sheet is 3 mm, so as to have good radiation protection effect.
[0130] Example Two
[0131] Please refer to Figs. 1-3The application further provides a construction method of the water supply and drainage system based on the proton building; the construction method comprises the following steps: S1, embedding a first drainage sleeve 02 at the first target points of the target wall, the first drainage sleeve connecting a proton treatment area 101 in the proton building 1a and outside the proton building 1b; S2, laying a medical sewage drainage pipeline 3, the medical sewage drainage pipeline 3 comprising a first medical sewage collection pipe section 301, a second medical sewage collection pipe section 302 and a third medical sewage collection pipe section 303, the first medical sewage collection pipe section 301 penetrating the first drainage sleeve, the sewage collection position 1011 of the proton treatment area, the first medical sewage collection pipe section 301, a vacuum sewage device 13, the second medical sewage collection pipe section 302, a decay tank 15, the third medical sewage collection pipe section 303 and a waste water well 14 being sequentially connected; S3, wrapping the medical sewage drainage pipeline 3 with lead skin, and completing the construction of the water supply and drainage system based on the proton building. In S1, a first water supply sleeve 01 also needs to be embedded at the first target points of the target wall, the first water supply sleeve connecting the proton treatment area 101 in the proton building 1a and outside the proton building 1b; in S2, a medical water supply pipeline 4 also needs to be laid, the medical water supply pipeline 4 penetrating the first water supply sleeve, the water inlet of the medical water supply pipeline 4 being connected with the water outlet of a water supply area 16, and the water outlets of the medical water supply pipeline 4 respectively supplying water to the proton treatment area 101 and a cooling water device 17.
[0132] Specifically, the proton building outside 1b has a water supply area 16, which can be a water supply tank or a municipal pipe network, and the proton building inside 1a includes a proton treatment area 101 provided with a proton treatment device 1012, which is a proton cyclotron. In S1, a first water supply sleeve 01 is pre-buried at the first batch of target points of the target wall, and the first water supply sleeve connects the proton building outside 1b and the proton treatment area 101 of the proton building inside 1a. In S2, a medical water supply pipeline 4 is laid, the medical water supply pipeline 4 passes through the first water supply sleeve, the water inlet of the medical water supply pipeline 4 is connected with the water supply area 16, a plurality of water outlets are arranged on the medical water supply pipeline 4, a part of the water outlets are used for water supply of the proton treatment area 101, and the other part of the water outlets are connected with the cooling water device 17, so that the water in the water supply area 16 is used by the personnel in the proton treatment area 101 through the medical water supply pipeline 4, and the water in the water supply area 16 is supplied to the cooling water device 17 through the medical water supply pipeline 4, and the cooling water device 17 cools the water for use of the proton treatment device 1012; the proton treatment area 101 includes a sewage collection area for collecting sewage of the proton treatment area 101, a vacuum sewage device 13 is arranged adjacent to the sewage collection area 1011 of the proton treatment area, a waste water well 14 and a decay tank 15 are arranged in the proton building outside 1b, S1, a first drainage sleeve 02 is pre-buried at the first batch of target points of the target wall, and the first drainage sleeve connects the proton building outside 1b and the proton treatment area 101 of the proton building inside 1a; S2, a medical sewage drainage pipeline 3 is laid, the medical sewage drainage pipeline 3 includes a first medical sewage collection pipe section 301, a second medical sewage collection pipe section 302, and a third medical sewage collection pipe section 303, the first medical sewage collection pipe section 301 passes through the first drainage sleeve, the sewage collection area 1011 of the proton treatment area, the first medical sewage collection pipe section 301, the vacuum sewage device 13, the second medical sewage collection pipe section 302, the decay tank 15, the third medical sewage collection pipe section 303, and the waste water well 14 are sequentially connected, the radioactive sewage collected by the sewage collection area 1011 of the proton treatment area is sequentially collected into the decay tank 15 through the first medical sewage collection pipe section 301, the vacuum sewage device 13, and the second medical sewage collection pipe section 302, and after the radioactive sewage is treated by the decay tank 15 and reaches the discharge standard, the radioactive sewage is discharged into the waste water well 14 through the third medical sewage collection pipe section 303; S3: the medical sewage drainage pipeline 3 is wrapped with lead skin on the outer periphery, and the medical sewage drainage pipeline 3 is subjected to anti-radiation treatment.
[0133] In a possible implementation, in S1, the second water supply sleeve 03 and the second drainage sleeve 04 are respectively pre-buried at the second batch of target points of the target wall, so that the second water supply sleeve 03 and the second drainage sleeve 04 are respectively connected to the domestic water area 102 outside the proton building 1b and inside the proton building 1a; in S2, the domestic water supply pipeline 5 and the domestic sewage drainage pipeline 6 are laid; the domestic water supply pipeline 5 passes through the second water supply sleeve 03, the water inlet of the domestic water supply pipeline 5 is connected to the water outlet of the water supply area 16, and the water outlet supplies water to the domestic water area 102; the domestic sewage drainage pipeline 6 passes through the second drainage sleeve 04, the water inlet of the domestic sewage drainage pipeline 6 is connected to the sewage collection area 1021 of the domestic water area, and the water outlet is connected to the wastewater well 14.
[0134] Specifically, the proton building 1a further includes the domestic water area 102, which is another daily water area away from the proton equipment area; in S1, the second water supply sleeve 03 and the second drainage sleeve 04 are respectively pre-buried at the second batch of target points of the target wall, so that the second water supply sleeve 03 and the second drainage sleeve 04 are respectively connected to the domestic water area 102 outside the proton building 1b and inside the proton building 1a; in S2, the domestic water supply pipeline 5 and the domestic sewage drainage pipeline 6 are laid; the domestic water supply pipeline 5 passes through the second water supply sleeve 03, the water inlet of the domestic water supply pipeline 5 is connected to the water outlet of the water supply area 16, and the water outlet of the domestic water supply pipeline 5 supplies water to the domestic water area 102, so that the water in the water supply area 16 is supplied to the domestic water area 102 through the domestic water supply pipeline 5; the domestic sewage drainage pipeline 6 passes through the second drainage sleeve 04, the water inlet of the domestic sewage drainage pipeline 6 is connected to the sewage collection area 1021 of the domestic water area, and the water outlet is connected to the wastewater well 14, so that the sewage collected by the sewage collection area 1021 of the domestic water area is discharged into the wastewater well 14 through the domestic sewage drainage pipeline 6.
[0135] In a possible implementation, in S1, the third water supply sleeve 05 and the fourth water supply sleeve 06 are respectively pre-buried at the third batch of target points of the target wall, so that the third water supply sleeve 05 is connected to the first fire extinguishing area 103 outside the proton building 1b and inside the proton building 1a, and the fourth water supply sleeve 06 is connected to the second fire extinguishing area 104 outside the proton building 1b and inside the proton building 1a; in S2, the first fire extinguishing water supply pipeline 7 and the second fire extinguishing water supply pipeline 8 are laid, the first fire extinguishing water supply pipeline 7 passes through the third water supply sleeve 05, the water inlet of the first fire extinguishing water supply pipeline 7 is connected to the water supply area 16, and the water outlet supplies water to the automatic water spray fire extinguishing system 18 located in the first fire extinguishing area 103; the second fire extinguishing water supply pipeline 8 passes through the fourth water supply sleeve 06, the water inlet of the second fire extinguishing water supply pipeline 8 is connected to the water supply area 16, and the water outlet supplies water to the fire water tank 19 located in the second fire extinguishing area 104.
[0136] Specifically, the first fire extinguishing area 103 is a common area where large water can be directly sprayed to extinguish fire, the first fire extinguishing area 103 is provided with an automatic water spraying fire extinguishing system 18, the second fire extinguishing area 104 is a device room, a medical room, a power distribution room and other areas where large water cannot be directly sprayed to extinguish fire, the second fire extinguishing area 104 is provided with a fire water tank 19 and a high-pressure fine water mist pump group fire extinguishing system 20, in S1, further comprising pre-burying a third water supply sleeve pipe 05 and a fourth water supply sleeve pipe 06 at the third batch of target points of the target wall respectively, connecting the third water supply sleeve pipe 05 with the first fire extinguishing area 103 inside the proton building 1a and outside the proton building 1b, and connecting the fourth water supply sleeve pipe 06 with the second fire extinguishing area 104 inside the proton building 1a and outside the proton building 1b; in S2, further comprising laying a first fire extinguishing water supply pipeline 7 and a second fire extinguishing water supply pipeline 8, making the first fire extinguishing water supply pipeline 7 pass through the third water supply sleeve pipe 05, the water inlet of the first fire extinguishing water supply pipeline 7 being connected with the water supply area 16, and the water outlet of the first fire extinguishing water supply pipeline 7 supplying water to the automatic water spraying fire extinguishing system 18 located in the first fire extinguishing area 103, the water in the water supply area 16 passing through the first fire extinguishing water supply pipeline 7 to supply water to the automatic water spraying fire extinguishing system 18; making the second fire extinguishing water supply pipeline 8 pass through the fourth water supply sleeve pipe 06, the water inlet of the second fire extinguishing water supply pipeline 8 being connected with the water supply area 16, and the water outlet of the second fire extinguishing water supply pipeline 8 supplying water to the fire water tank 19 located in the second fire extinguishing area 104, the water in the water supply area 16 passing through the second fire extinguishing water supply pipeline 8 to supply water to the fire water tank 19, and the fire water tank 19 supplying water to the high-pressure fine water mist pump group fire extinguishing system 20.
[0137] In a possible implementation, in S1, further comprising pre-burying a fifth water supply sleeve pipe 07 and a sixth water supply sleeve pipe 08 at the fourth batch of target points of the target wall respectively, connecting the fifth water supply sleeve pipe 07 with the top floor of the proton building 1 and outside the proton building 1b, and connecting the sixth water supply sleeve pipe 08 with the water area for daily use 102 inside the proton building 1a and outside the proton building 1b; in S2, further comprising laying a machine room water supply pipeline 9 and a hot water supply pipeline 10, making the machine room water supply pipeline 9 pass through the fifth water supply sleeve pipe 07, the water inlet of the machine room water supply pipeline 9 being connected with the water supply area 16 and the water outlet supplying water to the hot water machine room 21; making the hot water supply pipeline 10 pass through the sixth water supply sleeve pipe 08, the water inlet of the hot water supply pipeline 10 being connected with the hot water machine room 21 and the water outlet supplying water to the water area for daily use 102.
[0138] Specifically, the roof 105 is provided with a hot water machine room 21; in S1, a fifth water supply sleeve 07 and a sixth water supply sleeve 08 are further embedded at the fourth batch of target points of the target wall, so that the fifth water supply sleeve 07 is connected with the outside 1b of the proton building and the roof of the proton building 1, and the sixth water supply sleeve 08 is connected with the outside 1b of the proton building and the domestic water area 102 of the inside 1a of the proton building; in S2, a machine room water supply pipeline 9 and a hot water supply pipeline 10 are further laid, the machine room water supply pipeline 9 passes through the fifth water supply sleeve 07, the water inlet of the machine room water supply pipeline 9 is connected with the water supply area 16, the water outlet of the machine room water supply pipeline 9 supplies water to the hot water machine room 21, and the water in the water supply area 16 is supplied to the hot water machine room 21 through the machine room water supply pipeline 9; the hot water supply pipeline 10 passes through the sixth water supply sleeve 08, the water inlet of the hot water supply pipeline 10 is connected with the hot water machine room 21, the water outlet of the hot water supply pipeline 10 supplies water to the domestic water area 102, and the water heated by the hot water machine room 21 is supplied to the domestic water area 102 through the hot water supply pipeline 10.
[0139] In a possible implementation, in S2, a main water supply pipeline 2 is further laid, the main water supply pipeline 2 includes a first main water supply pipe section 201 and a second main water supply pipe section 202 connected with the water supply area 16 in sequence, a variable frequency water pump 11 is installed on the first main water supply pipe section 201, the second main water supply pipe section 202 is vertically installed on the outer wall 106 of the proton building 1, a plurality of water outlets are formed on the second main water supply pipe section 202, and the water inlets of the domestic water supply pipeline 5, the medical water supply pipeline 4, the first fire extinguishing water supply pipeline 7, the second fire extinguishing water supply pipeline 8, and the machine room water supply pipeline 9 are respectively connected with the water outlets of the second main water supply pipe section 202.
[0140] Specifically, in S2, the main water supply pipeline 2 is also laid, the main water supply pipeline 2 comprises a first main water supply pipeline section 201 and a second main water supply pipeline section 202 connected with the water supply area 16 in sequence, the second main water supply pipeline section 202 is vertically installed on the outer wall 106 of the proton building 1, a plurality of water outlets are formed on the second main water supply pipeline section 202, the water inlets of the domestic water supply pipeline 5, the medical water supply pipeline 4, the first fire extinguishing water supply pipeline 7, the second fire extinguishing water supply pipeline 8 and the machine room water supply pipeline 9 are communicated with the water outlets of the second main water supply pipeline section 202 in one-to-one correspondence, so that the water supply area 16 supplies domestic water to the domestic water area 102 through the main water supply pipeline 2 and the domestic water supply pipeline 5, supplies water to the proton therapy area 101 and the cooling water device 17 through the main water supply pipeline 2 and the medical water supply pipeline 4, supplies water to the first fire extinguishing area 103 through the main water supply pipeline 2 and the first fire extinguishing water supply pipeline 7, supplies water to the second fire extinguishing area 104 through the main water supply pipeline 2 and the second fire extinguishing water supply pipeline 8, and supplies water to the hot water machine room 21 through the main water supply pipeline 2 and the machine room water supply pipeline 9; the frequency conversion water pump 11 is installed on the first main water supply pipeline section 201 to increase the water supply pressure.
[0141] In a possible implementation, in S1, the rainwater drainage openings 1051 communicating with the outside 1b of the proton building are also formed at the fifth batch of target points of the roof wall; in S2, the rainwater drainage pipeline 12 is also laid, the water inlet of the rainwater drainage pipeline 12 is communicated with the rainwater drainage openings 1051, and the water outlet of the rainwater drainage pipeline 12 is communicated with the domestic sewage drainage pipeline 6.
[0142] Specifically, in S1, the rainwater drainage openings 1051 communicating with the outside 1b of the proton building are also formed at the fifth batch of target points of the roof wall; in S2, the rainwater drainage pipeline 12 is also laid, the water inlet of the rainwater drainage pipeline 12 is communicated with the rainwater drainage openings 1051, and the water outlet of the rainwater drainage pipeline 12 is communicated with the domestic sewage drainage pipeline 6, so that the rainwater of the roof 105 is drained into the waste water well 14 through the rainwater drainage pipeline 12 and the domestic sewage drainage pipeline 6.
[0143] In a possible implementation manner, in S2, a plurality of HDPE pipe segments are sequentially spliced into a plurality of to-be-connected pipelines, and any two adjacent HDPE pipe segments are connected by electrothermal melting, to form the medical sewage drainage pipeline 3. In S2, a plurality of stainless steel pipe segments are spliced into a plurality of to-be-connected pipelines, and any two adjacent stainless steel pipe segments are connected by socket argon arc welding, to form the main water supply pipeline 2, the medical water supply pipeline 4, the domestic water supply pipeline 5, the first fire extinguishing water supply pipeline 7, the second fire extinguishing water supply pipeline 8, the machine room water supply pipeline 9, and the hot water supply pipeline 10. In S2, a plurality of UPVC pipe segments are spliced into a plurality of to-be-connected pipelines, and any two adjacent UPVC pipe segments are connected by socket adhesion, to form the domestic sewage drainage pipeline 6 and the rainwater drainage pipeline 12.
[0144] Specifically, in S2, a plurality of HDPE pipe segments are sequentially spliced into a plurality of to-be-connected pipelines, and any two adjacent HDPE pipe segments are connected by electrothermal melting, to form the medical sewage drainage pipeline 3, and the HDPE pipe has good airtightness. In S2, a plurality of stainless steel pipe segments are spliced into a plurality of to-be-connected pipelines, and any two adjacent stainless steel pipe segments are connected by socket argon arc welding, to form the main water supply pipeline 2, the medical water supply pipeline 4, the domestic water supply pipeline 5, the first fire extinguishing water supply pipeline 7, the second fire extinguishing water supply pipeline 8, the machine room water supply pipeline 9, and the hot water supply pipeline 10, so that the main water supply pipeline 2, the medical water supply pipeline 4, the domestic water supply pipeline 5, the first fire extinguishing water supply pipeline 7, the second fire extinguishing water supply pipeline 8, the machine room water supply pipeline 9, and the hot water supply pipeline 10 have good compression resistance. In S2, a plurality of UPVC pipe segments are spliced into a plurality of to-be-connected pipelines, and any two adjacent UPVC pipe segments are connected by socket adhesion, to form the domestic sewage drainage pipeline 6 and the rainwater drainage pipeline 12, so that the domestic sewage drainage pipeline 6 and the rainwater drainage pipeline 12 have good corrosion resistance.
[0145] In a possible implementation manner, in S1, before the sleeve pipe is pre-buried, the inner surface of the sleeve pipe needs to be rusted, and then the inner surface of the sleeve pipe is brushed with anti-rust paint and finish paint in sequence.
[0146] Specifically, in S1, before the sleeve pipe is pre-buried, the inner surface of the sleeve pipe needs to be rusted, and then the inner surface of the sleeve pipe is brushed with anti-rust paint and finish paint in sequence, to avoid corrosion of the inner surface of the sleeve pipe.
[0147] In a possible implementation manner, in S2, the outer periphery of the first medical sewage collection pipe segment 301 and the outer periphery of the second medical sewage collection pipe segment 302 are wrapped with lead sheets respectively, and the thickness of the lead sheets is 3 mm.
[0148] Specifically, in S2, the first medical sewage collecting pipe section 301 and the second medical sewage collecting pipe section 302 are wrapped with lead sheets, and the thickness of the lead sheets is 3 mm, and the radiation protection effect is good.
[0149] It should be noted that the structures, proportions, sizes, etc. shown in the drawings attached to the present specification are only used to cooperate with the content disclosed in the specification, to be understood and read by those skilled in the art, and do not define the limiting conditions for the implementation of the present application, so they do not have technical significance. Any modification of the structure, change of the proportional relationship or adjustment of the size, without affecting the effect and purpose that the present application can produce, should still fall within the scope of the technical content disclosed by the present application. At the same time, the terms such as "upper", "lower", "left", "right", "middle" and "one" in the present specification are only for the convenience of clear understanding and description, and are not used to limit the scope of the present application. The change or adjustment of the relative relationship, without substantially changing the technical content, is also considered as the implementation of the present application.
[0150] The above is only the preferred embodiment of the present application, and does not limit the present application in any form. Although the present application has been disclosed as above with the preferred embodiment, it is not intended to limit the present application. Any person skilled in the art can make some changes or modifications to the above disclosed technical content without departing from the scope of the technical solution of the present application, and any simple modification, equivalent change and modification of the above embodiment according to the technical essence of the present application, as long as it does not deviate from the content of the technical solution of the present application, still belongs to the scope of the technical solution of the present application.
Claims
1. A water supply and drainage system based on a proton therapy building, the proton therapy building including a proton therapy area, the proton therapy area including a wastewater collection point for collecting wastewater from the proton therapy area, characterized in that, The water supply and drainage system based on the proton tower includes: A vacuum wastewater discharge device is installed adjacent to the wastewater collection point in the proton therapy area; Wastewater wells and decay pools are located outside the proton building; The sleeve includes a first drainage sleeve embedded in the wall, the first drainage sleeve connecting the outside of the proton building and the proton therapy area inside the proton building; The medical wastewater drainage pipeline includes a first medical wastewater collection pipe section, a second medical wastewater collection pipe section, and a third medical wastewater collection pipe section. The first medical wastewater collection pipe section passes through the first drainage sleeve. The wastewater collection point of the proton therapy area, the first medical wastewater collection pipe section, the vacuum sewage discharge device, the second medical wastewater collection pipe section, the decay pool, the third medical wastewater collection pipe section, and the wastewater well are connected in sequence. The proton building has a water supply area outside, and the proton therapy area is also equipped with proton therapy equipment; The sleeve also includes a first water supply sleeve pre-embedded in the wall, the first water supply sleeve connecting the outside of the proton building and the proton therapy area inside the proton building; The water supply and drainage system also includes: A cooling water device is installed in the proton therapy area, and the cooling water device is used to supply water to the proton therapy equipment; A medical water supply pipeline passes through the first water supply sleeve. The inlet of the medical water supply pipeline is connected to the water supply area, and the outlet is used to supply water to the proton therapy area and the cooling water device, respectively. The proton building also includes a domestic water supply area, which also has a wastewater collection point for collecting sewage. The sleeve also includes a second water supply sleeve and a second drainage sleeve pre-embedded in the wall, the second water supply sleeve and the second drainage sleeve being respectively connected to the domestic water area outside the proton building and inside the proton building; The water supply and drainage system also includes: A domestic water supply pipe passes through the second water supply sleeve, and the inlet of the domestic water supply pipe is connected to the outlet of the water supply area, and the outlet supplies water to the domestic water area; A domestic sewage drainage pipe passes through the second drainage sleeve. The inlet of the domestic sewage drainage pipe is connected to the sewage collection point of the domestic water area, and the outlet is connected to the wastewater well. The proton building also includes a first fire extinguishing zone and a second fire extinguishing zone. The first fire extinguishing zone is equipped with an automatic sprinkler system, and the second fire extinguishing zone is equipped with a fire water tank and a high-pressure fine water mist pump group fire extinguishing system. The fire water tank is used to supply water to the high-pressure fine water mist pump group fire extinguishing system. The sleeve also includes a third water supply sleeve and a fourth water supply sleeve embedded in the wall. The third water supply sleeve connects the outside of the proton building and the first fire extinguishing zone inside the proton building, and the fourth water supply sleeve connects the outside of the proton building and the second fire extinguishing zone inside the proton building. The water supply and drainage system also includes: The first fire-fighting water supply pipe passes through the third water supply sleeve. The inlet of the first fire-fighting water supply pipe is connected to the water supply area, and the outlet supplies water to the automatic sprinkler fire extinguishing system. The second fire-fighting water supply pipeline passes through the fourth water supply sleeve. The inlet of the second fire-fighting water supply pipeline is connected to the water supply area, and the outlet supplies water to the fire water tank.
2. The water supply and drainage system based on a proton tower as described in claim 1, characterized in that: The proton building also includes a rooftop, on which a hot water machine room is installed; The sleeve also includes a fifth water supply sleeve and a sixth water supply sleeve pre-embedded in the wall. The fifth water supply sleeve connects the outside of the proton building to the top floor of the proton building, and the sixth water supply sleeve connects the outside of the proton building to the domestic water area inside the proton building. The water supply and drainage system also includes: The water supply pipe for the computer room passes through the fifth water supply sleeve. The inlet of the water supply pipe for the computer room is connected to the water supply area, and the outlet supplies water to the hot water computer room. A hot water supply pipe passes through the sixth water supply sleeve. The inlet of the hot water supply pipe is connected to the hot water machine room, and the outlet supplies water to the domestic water area.
3. A construction method for a water supply and drainage system based on a proton tower, used in the water supply and drainage system according to any one of claims 1-2, the construction method comprising: S1: A first drainage sleeve is pre-embedded at the first batch of target points on the target wall. The first drainage sleeve connects the outside of the proton building and the proton therapy area inside the proton building. S2: Laying medical wastewater drainage pipes; the medical wastewater drainage pipes include a first medical wastewater collection pipe section, a second medical wastewater collection pipe section, and a third medical wastewater collection pipe section, such that the first medical wastewater collection pipe section passes through the first drainage sleeve, and the wastewater collection point of the proton therapy area, the first medical wastewater collection pipe section, the vacuum sewage discharge device, the second medical wastewater collection pipe section, the decay pool, the third medical wastewater collection pipe section, and the wastewater well are connected in sequence; S3: Wrap the outer periphery of the medical wastewater drainage pipe with lead sheeting to complete the construction of the water supply and drainage system based on the proton building.
4. The construction method of a water supply and drainage system based on a proton tower as described in claim 3, characterized in that: S1 also includes pre-embedding a first water supply sleeve at the first batch of target points on the target wall, the first water supply sleeve connecting the outside of the proton building and the proton therapy area inside the proton building; In step S2, the method further includes laying a medical water supply pipeline; the medical water supply pipeline passes through the first water supply sleeve, the inlet of the medical water supply pipeline is connected to the outlet of the water supply area, and the outlet of the medical water supply pipeline supplies water to the proton therapy area and the cooling water device respectively.
5. The construction method of a water supply and drainage system based on a proton tower as described in claim 4, characterized in that: In S1, a second water supply sleeve and a second drainage sleeve are pre-embedded at the second batch of target points on the target wall, so that the second water supply sleeve and the second drainage sleeve are respectively connected to the domestic water area outside the proton building and inside the proton building. In step S2, the method further includes laying domestic water supply pipes and domestic sewage drainage pipes according to the design drawings; the domestic water supply pipes pass through the second water supply sleeve, the inlet of the domestic water supply pipes is connected to the outlet of the water supply area, and the outlet supplies water to the domestic water area; the domestic sewage drainage pipes pass through the second drainage sleeve, the inlet of the domestic sewage drainage pipes is connected to the sewage collection point of the domestic water area, and the outlet is connected to the wastewater well.
6. The construction method of a water supply and drainage system based on a proton tower as described in claim 5, characterized in that: S1 further includes pre-embedding a third water supply sleeve and a fourth water supply sleeve at the third batch of target points on the target wall, so that the third water supply sleeve connects the first fire extinguishing zone outside the proton building and inside the proton building, and the fourth water supply sleeve connects the second fire extinguishing zone outside the proton building and inside the proton building. In S2, the method further includes laying a first fire-fighting water supply pipe and a second fire-fighting water supply pipe, with the first fire-fighting water supply pipe passing through the third water supply sleeve. The inlet of the first fire-fighting water supply pipe is connected to the water supply area, and the outlet supplies water to the automatic sprinkler fire extinguishing system located in the first fire-fighting area. The second fire-fighting water supply pipe passes through the fourth water supply sleeve, with the inlet of the second fire-fighting water supply pipe connected to the water supply area, and the outlet supplies water to the fire water tank located in the second fire-fighting area.
7. The construction method of a water supply and drainage system based on a proton tower as described in claim 6, characterized in that: In S1, a fifth water supply sleeve and a sixth water supply sleeve are pre-embedded at the fourth batch of target points on the target wall, so that the fifth water supply sleeve connects the outside of the proton building and the top floor of the proton building, and the sixth water supply sleeve connects the outside of the proton building and the domestic water area inside the proton building. In step S2, the method further includes laying a water supply pipe for the computer room and a hot water supply pipe, such that the water supply pipe for the computer room passes through the fifth water supply sleeve, the inlet of the water supply pipe for the computer room is connected to the water supply area, and the outlet of the water supply pipe for the hot water computer room; and the hot water supply pipe for the computer room passes through the sixth water supply sleeve, such that the inlet of the hot water supply pipe is connected to the hot water computer room, and the outlet of the hot water supply pipe for the domestic water area.
Citation Information
Patent Citations
Water -saving radioactive waste liquid processing system
CN207474089U