WO2019223328A1 - 一种新型空气净化方法 - Google Patents

一种新型空气净化方法 Download PDF

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Publication number
WO2019223328A1
WO2019223328A1 PCT/CN2019/000105 CN2019000105W WO2019223328A1 WO 2019223328 A1 WO2019223328 A1 WO 2019223328A1 CN 2019000105 W CN2019000105 W CN 2019000105W WO 2019223328 A1 WO2019223328 A1 WO 2019223328A1
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air
water
annular
ring
air inlet
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PCT/CN2019/000105
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English (en)
French (fr)
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徐海锋
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徐友明
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Publication of WO2019223328A1 publication Critical patent/WO2019223328A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D47/00Separating dispersed particles from gases, air or vapours by liquid as separating agent
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D47/00Separating dispersed particles from gases, air or vapours by liquid as separating agent
    • B01D47/12Washers with plural different washing sections

Definitions

  • the invention belongs to the technical field of air purification, and particularly relates to a method for realizing a novel air purification.
  • the second is the principle of physical adsorption and classification purification.
  • the principles of filtration, oxidation, catalysis, and adsorption are used to remove harmful gas components in the air.
  • the filter sieve in this way is easy to accumulate dirty particles or stolen materials and needs to be cleaned or replaced regularly. Filter sieve, lasting working time is not long.
  • the present invention solves the above problems.
  • the device working with this method is like an automatic washing machine, and only needs to be connected to a faucet and a working power supply.
  • the technical problem to be solved by the present invention is how to solve the problem that the existing existing air purifiers need to be frequently replaced with filter screens, and the problems that the high-voltage electric air purifiers are not completely purified and the products are harmful to the human body.
  • the present invention provides a novel air purification method, which is based on the method of artificially generating raindrops using dense vertical drops and the high-speed sliding water flow on the surface of the annular tube.
  • the tuyere enters the tube and rotates and moves at high speed, and then sprays out from the dense air holes on the surface of the annular tube. It is pulled and washed by the high-speed sliding water flow close to the surface of the circular tube to perform a purification.
  • a circular tube body with one or more air inlets can be implemented in the following three ways: the end and end are connected into a circular tube, the tube body has several air inlets, and all the air inlets are oriented in the same direction at a certain inclination angle
  • the inner tube is blown to form a rotating vortex of the air flow in the tube; the head of the ring tube is used as an air inlet and the end is closed; the tube body of the ring tube is divided into several sections, and the head of each section is closed as an air inlet and the end is fixed into a large ring.
  • the cross section of the annular tube with one air inlet or multiple air inlets can be implemented in two ways: circular and rectangular.
  • the cross section of the annular thin tube above the annular tube with the air inlet can be implemented in two forms: circular and rectangular.
  • the novel air purification method includes the following steps:
  • Step 1 Drill a number of holes on the surface of a circular pipe with several air inlets, such as one, to serve as air outlets for contaminated air.
  • the central area surrounded by the circular pipe is empty, and the sliding water flow close to the surface of the circular pipe can flow down.
  • the annular pipe is placed in an annular water tank with a sound-absorbing buffer layer component installed at the bottom, and the central area of the water tank is also empty;
  • step 2 a high-speed water flow close to the surface is produced on the surface of the annular pipe with the air inlet where the air outlet is located in step 1, and the high-speed water flow flushes the polluted air out of the air hole;
  • Step 3 a number of circular thin tubes with the same central axis are distributed in a horizontal direction at a certain height above the annular tube with the air inlet. There are many small holes on the upper surface of the circular thin tube. These small holes are used to make dense Numerous small parallel fountains that spray water upwards are distributed. The falling water droplets of these small fountains generate dense vertical drops to artificially generate raindrops. Similarly, a number of annular thin tubes are also distributed in the vertical direction above the annular tube brought into the air inlet. There are many small holes on the upper surface of these annular thin tubes, and they also produce dense vertical drops to artificially generate raindrops.
  • a number of fans distributed symmetrically are installed above the annular tube with the air inlet to blow in the same direction to make the air in the dense
  • the vertical drop artificially generated raindrops are rotated again to increase the haze travel distance in the rain; the dense vertical drop artificially generated raindrops thus generated are used to repurify the air washed by the high-speed water flow in step 2.
  • Step 4 the ring tube with the air inlet in step 1 and the multi-ring thin tube in step 3 are set on a small water storage tank.
  • the water pump is used to generate the small fountain in step 3 and The high-speed water flow in step 2;
  • the water sound canceling component is provided above the ring pipe with the air inlet and the water pump in step 1;
  • the inner barrel of the machine is provided with an electric rotating ring with a brush for regular cleaning;
  • Step 5 the ring pipe with the air inlet in step 1 and the multi-ring pipe and the water storage tank in step 3 are all internal equipment of a bucket with a certain height with a sound-absorbing layer, and the bucket is provided with a connecting step outside.
  • the present invention uses a dense vertical drop to artificially generate raindrops and a high-speed sliding water flow on the surface of the annular pipe.
  • Foul air enters the pipe from a plurality of air inlets of the annular pipe and rotates and moves at high speed.
  • Dense air outlets are ejected, and are once purified by being pulled and washed by the high-speed sliding water flow close to the surface of the annular tube.
  • the high-speed sliding water flow close to the surface of the circular tube can form a certain height of the water vortex tube structure close to the outer surface of the ring and the inner surface of the ring.
  • Figure 1 is a schematic diagram of a device for a novel air purification method. The components are:
  • FIG. 2 is a schematic flowchart of a novel air purification method.
  • the present invention provides a method for realizing a new type of air purification.
  • the method is based on the method of artificially generating raindrops using dense vertical drops and high-speed sliding water flow on the surface of the annular tube.
  • Several of the air inlets enter the tube to rotate and move at high speed, and then spray out from the dense air holes on the surface of the annular tube. They are pulled and washed by the high-speed sliding water flow close to the surface of the circular tube to perform a purification.
  • a certain height water vortex tube structure is formed close to the outer surface of the ring and the inner surface of the ring, and there are dense vertical drops arranged side by side above the ring tube to artificially generate raindrops to fall down and re-purify the air after primary purification, forming The final purified air.
  • Step 1 Drill a number of holes at the end of a ring pipe with an air inlet at the end to serve as air outlets for contaminated air.
  • the central area surrounded by the ring pipe is empty, and the sliding water flow close to the ring pipe surface can flow down from this.
  • the annular pipe is placed in an annular water tank with a sound-absorbing buffer layer component installed at the bottom, and the central area of the water tank is also empty;
  • Step 2 the inner surface of the annular pipe ring with the air inlet opening where the air outlet is located is produced a high-speed water flow close to the inner surface of the annular pipe ring.
  • the high-speed water flow flushes the polluted air out of the air hole.
  • the water nozzle sprays water in the same direction in a certain direction to generate a high-speed water flow, forming a vortex center wall water vortex tube wall structure similar to a tornado vortex tube structure.
  • the water vortex tube formed by this flowing water is surrounded by a ring pipe with an air inlet while rotating at high speed.
  • the hollow central area of the tube drops; this way, the contaminated air haze particles coming out of the air vents on the surface of the annular tube of the air inlet are formed into a concentrated and orderly structure of the water vortex tube motion structure during high-speed fluid vortex motion. ;
  • Step 3 a number of circular thin tubes with the same central axis are distributed in a horizontal direction at a certain height above the annular tube with the air inlet. There are many small holes on the upper surface of the circular thin tube. These small holes are used to make dense Distributed small fountains that spray water upwards. The falling water droplets of these fountains generate dense vertical drops to artificially generate raindrops; similarly, several circles of thin circular tubes are also distributed in the vertical direction above the annular tube of the air inlet.
  • Step 4 the ring pipe with the air inlet in step 1 and the multi-ring thin pipe in step 3 are set on a small water storage tank.
  • a water pump in the water storage tank.
  • the water pump is used to generate the small fountain and step in step 3.
  • the high-speed water flow in 2; the water sound elimination parts are arranged above the ring pipe with the air inlet and the water pump in step 1; an electric rotating ring with a brush is provided in the barrel for periodic cleaning;
  • Step 5 the ring pipe with the air inlet in step 1 and the multi-ring pipe and the water storage tank in step 3 are all internal equipment of a bucket with a certain height with a sound-absorbing layer, and the bucket is provided with a connecting step outside.
  • Step 1 Close a number of holes in the inner surface and outer surface of the annular pipe ring at the end with an air inlet as the outlet for the contaminated air.
  • the central area surrounded by the annular pipe is empty and close to the surface of the annular pipe. The sliding water flow can flow down from this.
  • the lower surface of the annular pipe also has holes.
  • the annular pipe is placed in an annular water tank with a sound-absorbing buffer filter layer component installed at the bottom. The central area of the water tank is also empty.
  • step 2 a high-speed water flow close to the inner surface of the annular pipe ring and the outer surface of the ring is produced on the inner surface and outer surface of the annular pipe ring with the air inlet where the air outlet is located in step 1.
  • Polluted air is formed by a number of water jets spraying water in a certain direction in the same direction to generate high-speed water flow, forming a vortex tube wall of the vortex center area similar to a tornado vortex tube structure. Rotate one side to move and fall to the hollow central area surrounded by the annular pipe with the air inlet.
  • the vortex structure water flow on the inner surface of the ring will reach the water storage tank before the vortex structure water flow on the outer surface of the ring;
  • the contaminated air haze particles coming out of the air vents on the surface of the annular tube form a concentrated, ordered, and one outer, one inner, one large, and one small water vortex tube with a different diameter and movement structure and belt in the high-speed fluid vortex motion.
  • the in-plane water vortex motion structure at the bottom of the annular pipe of the air inlet is purified;
  • Step 3 a number of circular thin tubes with the same central axis are distributed in a horizontal direction at a certain height above the annular tube with the air inlet. There are many small holes on the upper surface of the circular thin tube. These small holes are used to create a dense distribution. Small fountains that spray water upwards, and the water droplets falling from these fountains generate dense vertical drops to artificially generate raindrops; similarly, a number of annular thin tubes are also distributed in the vertical direction above the annular tube brought into the air inlet. There are many small holes on the upper surface, which also make densely distributed small fountains that spray water upwards.
  • Drops from the falling fountains generate dense vertical drops and artificially generate raindrops; a number of fans symmetrically distributed are installed above the annular tube of the air inlet to the same direction. Blow to make the air rotate again in the dense vertical falling artificially generated raindrops to increase the travel distance of the haze particles in the rain; the dense vertical falling artificially generated raindrops thus generated are used to repurify the high-speed water scouring in step 2 Passing air.
  • Step 4 the ring pipe with the air inlet in step 1 and the multi-ring thin pipe in step 3 are set on a small water storage tank.
  • a water pump in the water storage tank.
  • the water pump is used to generate the small fountain and step in step 3.
  • the high-speed water flow in 2; the water sound elimination parts are arranged above the ring pipe with the air inlet and the water pump in step 1; an electric rotating ring with a brush is provided in the barrel for periodic cleaning;
  • Step 5 the ring pipe with the air inlet in step 1 and the multi-ring pipe and the water storage tank in step 3 are all internal equipment of a bucket with a certain height with a sound-absorbing layer, and the bucket is provided with a connecting step outside.
  • Step 1 Drill a number of holes in the inside and outside surfaces of the annular pipe ring with two or four air inlets as the air outlets for the contaminated air. Several air inlets of the annular pipe are blown in the same direction to generate air in the annular pipe. The vortex is a symmetrical spiral arm, so a high-speed rotating air flow is formed in the annular tube. Similar to the nuclear fusion Tokamak device, this high-speed rotating air flow will cause the air haze particles to be concentrated in an orderly manner. Air is sprayed to the air outlet on the surface. The central area surrounded by the annular tube is empty, and the sliding water flow close to the surface of the annular tube can flow down. The lower surface of the annular tube also has holes. The annular tube is placed on a bottom. In the ring-shaped water tank installed with the sound-absorbing buffer filter layer component, the central area of the water tank is also empty;
  • Step 2 the inner surface of the annular pipe ring with the air inlet opening where the air outlet is located is made a high-speed water flow close to the inner surface of the ring.
  • the high-speed water flow flushes out the contaminated air from the air hole.
  • the nozzle sprays water in the same direction in a certain direction, forming a vortex tube wall of the vortex center area similar to a tornado vortex tube structure.
  • the annular water flow tube formed by the flowing water drops at a high speed while falling into the hollow center area surrounded by the annular tube of the air inlet; In this way, the contaminated air haze particles coming out of the air holes on the surface of the annular tube of the air inlet are purified in the concentrated structure of the water vortex tube movement structure formed in the high-speed fluid vortex motion;
  • Step 3 a number of circular thin tubes with the same central axis are distributed in a horizontal direction at a certain height above the annular tube with the air inlet. There are many small holes on the upper surface of the circular thin tube. These small holes are used to create a dense distribution. Small fountains that spray water upwards, and the water droplets falling from these fountains generate dense vertical drops to artificially generate raindrops; similarly, a number of annular thin tubes are also distributed in the vertical direction above the annular tube brought into the air inlet. There are many small holes on the upper surface, which also make densely distributed small fountains that spray water upwards.
  • Drops from the falling fountains generate dense vertical drops and artificially generate raindrops; a number of fans symmetrically distributed are installed above the annular tube of the air inlet to the same direction. Blow to make the air rotate again in the dense vertical falling artificially generated raindrops to increase the travel distance of the haze particles in the rain; the dense vertical falling artificially generated raindrops thus generated are used to repurify the high-speed water scouring in step 2 Passing air.
  • Step 4 the ring pipe with the air inlet in step 1 and the multi-ring thin pipe in step 3 are set on a small water storage tank.
  • a water pump in the water storage tank.
  • the water pump is used to generate the small fountain and step in step 3.
  • the high-speed water flow in 2; the water sound elimination parts are arranged above the ring pipe with the air inlet and the water pump in step 1; an electric rotating ring with a brush is provided in the barrel for periodic cleaning;
  • Step 5 the ring pipe with the air inlet in step 1 and the multi-ring pipe and the water storage tank in step 3 are all internal equipment of a bucket with a certain height with a sound-absorbing layer, and the bucket is provided with a connecting step outside.

Abstract

一种空气净化方法,采用密集的竖直下落人工生成雨滴(10)和紧贴环形管(3)表面的高速滑动水流(8)的方法,污秽空气从环形管(3)的若干进风口进入管内高速旋转和运动,再从环形管(3)表面的密集出气孔喷出,被紧贴环形管(3)表面的高速滑动水流(8)拉动和冲刷进行一次净化,紧贴环形管(3)表面的高速滑动水流(8)可形成紧贴环外侧表面和环内侧表面的一定高度水旋涡管结构,而环形管(3)上方有并列排布的密集的竖直下落人工生成雨滴(10)落下来再次对一次净化后的空气进行二次净化,形成最终净化后的空气。

Description

一种新型空气净化方法 技术领域
本发明属于空气净化技术领域,具体涉及一种实现新型空气净化方法。
背景技术
传统空气净化器中,通常采用以下几种原理:一是静电吸附分解原理,这种方法(静电+臭氧)容易产生辐射,对人体产生副作用,已经被被欧美以及香港等国家或地区所抛弃;二是物理吸附、分级净化原理,采用过滤、氧化、催化、吸附等原理对空气中的有害气体成分进行清除,但这种方式中的过滤筛容易堆积污秽粒子或赃物,需要定期进行清洗或更换过滤筛,持续工作时间不长。
本发明解决上述问题,采用本方法工作的装置像自动洗衣机一样,只需要接入水龙头和工作电源即可。
发明内容
(一)要解决的技术问题
本发明要解决的技术问题是如何解决现有现有空气净化器需要经常更换过滤筛的问题,以及采用高压电空气净化器净化不彻底和产生物对人体有不利的问题。
(二)技术方案
为了解决上述技术问题,本发明提供了一种一种新型空气净化方法,所述方法基于采用密集的竖直下落人工生成雨滴和环形管表面高速滑动水流方法——污秽空气从环形管的若干进风口进入管内高速旋转和运动,再从环形管表面的密集出气孔喷出,被紧贴环形管表面的高速滑动水流拉动和冲刷进行一次净化,紧贴环形管表面的高速滑动水流可形成紧贴环外侧表面和环内侧表面的一定高度水旋涡管结 构,而环形管上方有并列排布的密集的竖直下落人工生成雨滴落下来再次对一次净化后的空气进行二次净化,形成最终净化后的空气。此方法有多种实施方式,具体面临的选择方式如下:
带一个或多个进风口的环形管管身,可以有以下三种实现方式:首尾端连通成环状管、管身带若干个进风口,所有进风口以一定的倾斜角按同一个方向向环形管内吹风形成管内空气流旋转旋涡;环形管首端作为进风口、末端封闭;环形管管身分成若干截段,每段首端作为进风口、末端封闭,共同固定成一个大的环形。
带一个或多个进风口的环形管的表面出气孔,除它的下表面也有钻孔外,它的表面出气孔可以有以下三种实现方式:环形管围住的环内侧表面排列许多出气孔;环形管的环外侧表面排列许多出气孔;环形管的环外侧表面和它围住的环内侧表面均排列许多出气孔。
带一个进风口或多个进风口的环形管的横截面,其横截面可有圆形的和矩形的两种实现方式。
带进风口环形管上方的环形细管,其横截面可有圆形的和矩形的两种实现方式。
竖直下落的人工生成雨滴,有多种生成方式,现列举其中两种:第一种是利用上表面有许多小孔的若干圈环形细管注入一定压力的水流,这些小孔用来制造出密集分布的向上喷水的众多并列小喷泉,由这些喷泉的下落水滴来生成密集的竖直下落的人工生成雨滴;第二种是利用电机带动切片周期性的高速横切密集的下落水流柱,让原来的众多近直线型水流柱变成一滴一滴的水滴分开竖直下落,这样来形成密集的竖直下落的人工生成雨滴。
所述一种新型空气净化方法包括如下步骤:
步骤1,在一个带若干进风口如一个的环形管表面钻许多孔,作为受污染空气出气孔,该环形管围住的中心区是空的,紧贴环形管表面的滑动水流可从此流下去,该环形管的下表面也有孔,该环形管放在一个底部安装有消音缓冲过滤层部件的环形水槽内,水槽的中心区也是空的;
步骤2,在步骤1中出气孔所在的带进风口环形管表面上制造出紧贴表面的高速水流,高速水流冲刷出气孔里出来的受污染空气;
步骤3,在步骤1中带进风口环形管上方一定高度处的水平方向上分布若干圈同中心轴的环形细管,环形细管的上表面有许多小孔,这些小孔用来制造出密集分布的向上喷水的众多并列小喷泉,由这些小喷泉的下落水滴来生成密集的竖直下落人工生成雨滴;同理,带进风口环形管上方的竖直方向上也分布若干圈环形细管,这些环形细管的上表面有许多小孔,也同样制造出密集的竖直下落人工生成雨滴;带进风口环形管上方安装有对称分布的若干风扇向同一方向吹风,以使空气在密集的竖直下落人工生成雨滴中再次旋转起来以加大雾霾粒子的雨中行驶路程;如此生成的密集的竖直下落人工生成雨滴用来再次净化步骤2中高速水流冲刷过的空气。
步骤4,步骤1中带进风口环形管及步骤3中的多圈环形细管均设置在一个小蓄水箱上面,蓄水箱里面有抽水泵,水泵用来产生步骤3中的小喷泉和步骤2中的高速水流;步骤1中带进风口环形管上方和水泵上方设置有水声消除部件;整机内桶设有带刷子的电动旋转环用于定期清扫;
步骤5,步骤1中带进风口环形管及步骤3中的多圈环形细管及蓄水箱,均为一个带消音层的有一定高度的桶的内部设备,该桶的外部设置有连接步骤1中进风口的进风设备、连通桶内蓄水箱的水质水位显示器和含进水阀的自动进水排水设备,及作为外挂备用暗室水箱的内外多层桶之间的空隙;最终净化后的空气从桶的顶盖出口排出。
(三)有益效果
与现有技术相比,本发明采用密集的竖直下落人工生成雨滴和环形管表面高速滑动水流方法——污秽空气从环形管的若干进风口进入管内高速旋转和运动,再从环形管表面的密集出气孔喷出,被紧贴环形管表面的高速滑动水流拉动和冲刷进行一次净化,紧贴环形管表面的高速滑动水流可形成紧贴环外侧表面和环内侧表面的一定高度水旋涡管结构,而环形管上方有并列排布的密集的竖直下落人工生成雨滴落下来再次对一次净化后的空气进行二次净化,形成最终净化后的空气,即实现一种新型空气净化方法的实施方案。
附图说明
图1为一种新型空气净化方法的装置示意图。其中组成部件是:
1——进风设备;
2——水泵;
3——带一个进风口或多个按同一方向和一定角度倾斜的进风口的环形管;
4——环形细管;
5——水声雨滴声消除部件;
6——含进水阀的自动进水排水设备;
7——水质水位显示器;
8——紧贴环形管表面的滑动水流;
9——暗室水箱;
10——密集的竖直下落人工生成雨滴;
11——桶内蓄水箱;
12——空的中心区;
13——净化后的空气出口
图2为一种新型空气净化方法的流程示意图。
具体实施方式
为使本发明的目的、内容、和优点更加清楚,下面结合附图和实施例,对本发明的具体实施方式作进一步详细描述。
为了解决现有空气净化设备中的容易积累污秽物、需要定期更换过滤筛的问题,以及部分空气净化器的高电压造成辐射对人体不利的问题。如图1及图2所示,本发明提供一种实现一种新型空气净化方法,所述方法基于采用密集的竖直下落人工生成雨滴和环形管表面高速滑动水流方法——污秽空气从环形管的若干进风口进入管内高速旋转和运动,再从环形管表面的密集出气孔喷出,被紧贴环形管表面的高速滑动水流拉动和冲刷进行一次净化,紧贴环形管表面的高速滑动水流可形成紧贴环外侧表面和环内侧表面的一定高度水旋涡管结构,而环形管上方有并列排布的密集的竖直下落人工生成雨滴落下来再次对一次净化后的空气进行二次净化,形成最终净化后的空气。
如技术方案所述,所述一种新型空气净化方法有多种实施方式,现举例3种,分别见如下实施步骤:
方式1实施步骤:
步骤1,在一个带一个进风口的末端封闭环形管表面钻许多孔,作为受污染空气出气孔,该环形管围住的中心区是空的,紧贴环形管表面的滑动水流可从此流下去,该环形管的下表面也有孔,该环形管放在一个底部安装有消音缓冲过滤层部件的环形水槽内,水槽的中心区也是空的;
步骤2,在步骤1中出气孔所在的带进风口环形管环内侧表面上制造出紧贴环形管环内侧表面的高速水流,高速水流冲刷出气孔里出来的受污染空气,是以若干个喷水口按照一定的方向同向喷水生成高速水流,形成类似龙卷风旋涡管结构的旋涡中心区水旋涡管管壁结构,这个流水形成的水流涡管一边高速旋转一边向带进风口环形管围住的空心中心区下落;这样使带进风口环形管表面上出气孔里出来的受污染空气雾霾粒子在高速流体旋涡运动中形成了集中的、有序化的 水旋涡涡管运动结构中被净化;
步骤3,在步骤1中带进风口环形管上方一定高度处的水平方向上分布若干圈同中心轴的环形细管,环形细管的上表面有许多小孔,这些小孔用来制造出密集分布的向上喷水的小喷泉,由这些喷泉的下落水滴来生成密集的竖直下落人工生成雨滴;同理,带进风口环形管上方的竖直方向上也分布若干圈环形细管,这些环形细管的上表面有许多小孔,也同样制造出密集的竖直下落人工生成雨滴;带进风口环形管上方安装有对称分布的若干风扇向同一方向吹风,以使空气在密集的竖直下落人工生成雨滴中再次旋转起来以加大雾霾粒子的雨中行驶路程;如此生成的密集的竖直下落人工生成雨滴用来再次净化步骤2中高速水流冲刷过的空气。
步骤4,步骤1中带进风口环形管及步骤3中的多圈环形细管均设置在一个小蓄水箱上面,蓄水箱里面有水泵,水泵用来产生步骤3中的小喷泉和步骤2中的高速水流;步骤1中带进风口环形管上方和水泵上方设置有水声消除部件;整机内桶设有带刷子的电动旋转环用于定期清扫;
步骤5,步骤1中带进风口环形管及步骤3中的多圈环形细管及蓄水箱,均为一个带消音层的有一定高度的桶的内部设备,该桶的外部设置有连接步骤1中进风口的进风设备、连通桶内蓄水箱的水质水位显示器和含进水阀的自动进水排水设备,及作为外挂备用暗室水箱的内外多层桶之间的空隙;最终净化后的空气从桶的顶盖出口排出。
方式2实施步骤:
步骤1,在一个带一个进风口的末端封闭环形管环内侧表面和环外侧表面钻许多孔,作为受污染空气出气孔,该环形管围住的中心区是空的,紧贴环形管表面的滑动水流可从此流下去,该环形管的下表面也有孔,该环形管放在一个底部安装有消音缓冲过滤层部件的环形水槽内,水槽的中心区也是空的;
步骤2,在步骤1中出气孔所在的带进风口环形管环内侧表面和环外侧表面上制造出紧贴环形管环内侧表面和环外侧表面的高速水流,高速水流冲刷出气孔里出来的受污染空气,是以若干个喷水口按照一定的方向同向喷水生成高速水流,形成类似龙卷风旋涡管结构的旋涡中心区水旋涡管管壁,这两个流水形成的环形水流涡管一边高速旋转一边向带进风口环形管围住的空心中心区运动和下落,环内侧表面上的涡管结构水流会比环外侧表面上的涡管结构水流先到达蓄水箱内;这样使带进风口环形管表面上出气孔里出来的受污染空气雾霾粒子在高速流体旋涡运动中形成了集中的、有序化的、并且一外一内一大一小不同直径的水旋涡管运动结构和带进风口环形管底部的平面内水旋涡运动结构中被净化;
步骤3,在步骤1中带进风口环形管上方一定高度处的水平方向上分布若干圈同中心轴的环形细管,环形细管上表面有许多小孔,这些小孔用来制造出密集分布的向上喷水的小喷泉,由这些喷泉下落水滴来生成密集的竖直下落人工生成雨滴;同理,带进风口环形管上方的竖直方向上也分布若干圈环形细管,该环形细管上表面有许多小孔,也制造出密集分布的向上喷水的小喷泉,由下落喷泉水滴生成密集的竖直下落人工生成雨滴;带进风口环形管上方安装有对称分布的若干风扇向同一方向吹风,以使空气在密集的竖直下落人工生成雨滴中再次旋转起来以加大雾霾粒子的雨中行驶路程;如此生成的密集的竖直下落人工生成雨滴用来再次净化步骤2中高速水流冲刷过的空气。
步骤4,步骤1中带进风口环形管及步骤3中的多圈环形细管均设置在一个小蓄水箱上面,蓄水箱里面有水泵,水泵用来产生步骤3中的小喷泉和步骤2中的高速水流;步骤1中带进风口环形管上方和水泵上方设置有水声消除部件;整机内桶设有带刷子的电动旋转环用于定期清扫;
步骤5,步骤1中带进风口环形管及步骤3中的多圈环形细管及蓄水箱,均为一个带消音层的有一定高度的桶的内部设备,该桶的外部设置有连接步骤1中进风口的进风设备、连通桶内蓄水箱的水质水位显示器和含进水阀的自动进水排水设备,及作为外挂备用暗室水箱的内外多层桶之间的空隙;最终净化后的空气从桶的顶盖出口排出。
方式3实施步骤:
步骤1,在一个带两个或四个进风口的首尾端连通环形管环内侧表面钻许多孔,作为受污染空气出气孔,环形管的若干进风口均向同一个方向吹风作为生成环形管内空气旋涡的对称旋臂,因此环形管内形成高速旋转的空气流,类似核聚变的托卡马克装置,这个高速旋转空气流会使空气雾霾粒子被有序化的集中起来,此空气流一边旋转一边向表面的出气孔喷出空气,该环形管围住的中心区是空的,紧贴环形管表面的滑动水流可从此流下去,该环形管的下表面也有孔,该环形管放在一个底部安装有消音缓冲过滤层部件的环形水槽内,水槽的中心区也是空的;
步骤2,在步骤1中出气孔所在的带进风口环形管环内侧表面上制造出紧贴环内侧表面的高速水流,高速水流冲刷出气孔里出来的受污染空气,并且是以若干个喷水口按照一定的方向同向喷水,形成类似龙卷风旋涡管结构的旋涡中心区旋涡管管壁,这个流水形成的环形水流管一边高速旋转一边向带进风口环形管围住的空心中心区下落;这样使带进风口环形管表面上出气孔里出来的受污染空气雾霾粒子在高速流体旋涡运动中形成了集中的、有序化的水旋涡涡管运动结构中被净化;
步骤3,在步骤1中带进风口环形管上方一定高度处的水平方向上分布若干圈同中心轴的环形细管,环形细管上表面有许多小孔,这些小孔用来制造出密集分布的向上喷水的小喷泉,由这些喷泉下落水滴来生成密集的竖直下落人工生成雨滴;同理,带进风口环形管上方 的竖直方向上也分布若干圈环形细管,该环形细管上表面有许多小孔,也制造出密集分布的向上喷水的小喷泉,由下落喷泉水滴生成密集的竖直下落人工生成雨滴;带进风口环形管上方安装有对称分布的若干风扇向同一方向吹风,以使空气在密集的竖直下落人工生成雨滴中再次旋转起来以加大雾霾粒子的雨中行驶路程;如此生成的密集的竖直下落人工生成雨滴用来再次净化步骤2中高速水流冲刷过的空气。
步骤4,步骤1中带进风口环形管及步骤3中的多圈环形细管均设置在一个小蓄水箱上面,蓄水箱里面有水泵,水泵用来产生步骤3中的小喷泉和步骤2中的高速水流;步骤1中带进风口环形管上方和水泵上方设置有水声消除部件;整机内桶设有带刷子的电动旋转环用于定期清扫;
步骤5,步骤1中带进风口环形管及步骤3中的多圈环形细管及蓄水箱,均为一个带消音层的有一定高度的桶的内部设备,该桶的外部设置有连接步骤1中进风口的进风设备、连通桶内蓄水箱的水质水位显示器和含进水阀的自动进水排水设备,及作为外挂备用暗室水箱的内外多层桶之间的空隙;最终净化后的空气从桶的顶盖出口排出。
以上所述仅是本发明的优选实施方式,应当指出,对于本技术领域的普通技术人员来说,在不脱离本发明技术原理的前提下,还可以做出若干改进和变形,这些改进和变形也应视为本发明的保护范围。

Claims (7)

  1. 一种新型空气净化方法,其特征在于,所述方法基于带进风口及表面许多出气孔的环形管的紧贴表面滑动水流和密集竖直下落人工生成雨滴来净化空气:
  2. 如权利要求1所述,带进风口环形管,其特征在于,管身带一个进风口或多个按同一方向和一定角度倾斜的进风口,从进风口进入污秽空气,环形管围住的中心区是空的,环形管管身方式如首尾端连通、首端敞开尾端封闭或分成若干截段三种;
  3. 如权利要求1所述,环形管表面许多出气孔,其特征在于,该环形管表面上如环外侧表面和环内侧表面钻了很多出气孔;
  4. 如权利要求1所述,环形管的紧贴表面滑动水流,其特征在于,在该环形管表面上制造出紧贴环形管表面上如环外侧表面和环内侧表面的高速滑动水流;
  5. 如权利要求1所述,密集竖直下落人工生成雨滴,其特征在于,在环形管上方设有若干圈环形细管,这些环形细管的上表面有许多钻孔,孔内向上喷出的水柱形成许多并列排列的向上喷水的小喷泉,众多并列小喷泉落下的水滴形成密集的竖直下落人工生成雨滴;
  6. 如权利要求1所述,密集竖直下落人工生成雨滴,其特征在于,在环形管上方利用电机带动切片周期性的高速横切密集的下落水流柱;
  7. 如权利要求1所述,净化空气时表面滑动水流形成一定的厚度并拉动出气孔内的受污染空气进入竖直下落人工生成雨滴净化区,带进风口环形管上方安装有对称分布的若干风扇向同一方向吹风,以使空气在人工生成雨滴区中再次旋转起来以加大雾霾粒子的雨中行驶路程,带进风口的环形管的上方及水泵上方均设置有水声雨滴声消除部件;整机内桶设有带刷子的电动旋转环用于定期清扫;
    所述一种新型空气净化方法包括如下步骤:
    步骤1:在一个带若干进风口如一个的环形管表面钻许多孔,作为受污染空气出气孔,该环形管围住的中心区是空的,紧贴环形管表面的滑动水流可从此流下去,该环形管的下表面也有孔,该环形管放在一个底部安装有消音缓冲过滤层部件的环形水槽内,水槽的中心区也是空的;
    步骤2,在步骤1中出气孔所在的带进风口环形管表面上制造出紧贴表面的高速水流,高速水流冲刷出气孔里出来的受污染空气;
    步骤3,在步骤1中带进风口环形管上方一定高度处的水平方向上分布若干圈同中心轴的环形细管,环形细管的上表面有许多小孔,这些小孔用来制造出密集分布的向上喷水的众多并列小喷泉,由这些小喷泉的下落水滴来生成密集的竖直下落人工生成雨滴;同理,带进风口环形管上方的竖直方向上也分布若干圈环形细管,这些环形细管的上表面有许多小孔,也同样制造出密集的竖直下落人工生成雨滴;带进风口环形管上方安装有对称分布的若干风扇向同一方向吹风,以使空气在密集的竖直下落人工生成雨滴中再次旋转起来以加大雾霾粒子的雨中行驶路程;如此生成的密集的竖直下落人工生成雨滴用来再次净化步骤2中紧贴带进风口环形管表面滑动的高速水流冲刷过的空气;
    步骤4,步骤1中带进风口环形管及步骤3中的多圈环形细管均设置在一个小蓄水箱上面,蓄水箱里面有抽水泵,水泵用来产生步骤3中的小喷泉和步骤2中的高速水流;步骤1中带进风口环形管上方和水泵上方设置有水声消除部件;整机内桶设有带刷子的电动旋转环用于定期清扫;
    步骤5,步骤1中带进风口环形管及步骤3中的多圈环形细管及蓄水箱,均为一个带消音层的有一定高度的桶的内部设备,该桶的外部设置有连接步骤1中进风口的进风设备、连通桶内蓄水箱的水质水位显示器和含进水阀的自动进水排水设备,及作为外挂备用暗室水箱 的内外多层桶之间的空隙;最终净化后的空气从桶的顶盖出口排出。
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CN206027310U (zh) * 2016-07-01 2017-03-22 杨凌盈科中药现代化研究中心 一种空气净化器的新型液体介质过滤系统
CN106474854A (zh) * 2016-11-18 2017-03-08 广西大学 一种环面进风除尘器
CN207356809U (zh) * 2017-05-17 2018-05-15 孙斌 多级水浴式空气净化器
CN107754502A (zh) * 2017-10-25 2018-03-06 天津天清环保科技股份有限公司 一种除尘装置

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