TWM305264U - Electricity generation system using thermal energy - Google Patents

Electricity generation system using thermal energy Download PDF

Info

Publication number
TWM305264U
TWM305264U TW95213597U TW95213597U TWM305264U TW M305264 U TWM305264 U TW M305264U TW 95213597 U TW95213597 U TW 95213597U TW 95213597 U TW95213597 U TW 95213597U TW M305264 U TWM305264 U TW M305264U
Authority
TW
Taiwan
Prior art keywords
thermal energy
unit
energy
scope
attached
Prior art date
Application number
TW95213597U
Other languages
English (en)
Inventor
Jia-Hua Fan
Original Assignee
Jia-Hua Fan
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Jia-Hua Fan filed Critical Jia-Hua Fan
Priority to TW95213597U priority Critical patent/TWM305264U/zh
Publication of TWM305264U publication Critical patent/TWM305264U/zh

Links

Landscapes

  • Hybrid Cells (AREA)

Description

M305264 八、新型說明: 【新型所屬之技術領域】 本新型係為一種「利用熱能產生電能之結構」,尤指一 • 種以現有之熱能,藉由熱電半導體之特殊結構,達成將熱能 轉換成電能之結構者。 【先前技術】 由於產業咼度發展,加上世界人口不斷增加,能源的取 得可說是越來越不容易。 坊間的熱電半導體,已被廣泛的應用在航太或電器用品 T傳統熱電半導體之應用方式,都是將熱電半導體輸入電 [使熱%半導體之兩相對端面分別產生低溫與高溫,藉以 應用所需之溫度於物品中。 曰 本案創作人對於熱電半導體之應用與理論甚為瞭解為 使用更為實際與更有貢獻’特進行實驗:將熱電半導體 =端面提供高熱源後,該熱電半導體之電壓接腳可 壓,亦即,習知熱電半導體之應用,普遍都Iα ^ 致n〜 3過郡疋以輪入電壓獲 :::與而溫;而本案則是將之逆向操作,提供高熱… 决¥ -,以令熱電半導體將該熱能轉換成電能輸出:、:电 來,可用以協助發電。傳統之發電方式,除少數之次: 力等發電外,么县 p 双心水力、風 不_疋採用火力、核能等發電方式, 相當之發電成本;反觀本孝, 而付出 规令杀丹有和水力、火力發兩〜 之低發電成本優點。 χ ι寺相同 【新型内容】 5 M305264 本新型之目的即為:利用現有之熱能,藉由軚電半導脚 之特殊結構,達成將熱能轉換成電能之目的,衍生之優點= :可將現有之太陽熱能或是工廢機具、引擎等原本為無用之 熱能’予以回收利用發電,其所花費之發電成本幾近為零, 甚具經濟效益。 【實施方式】
茲謹就本創作「利用熱能產生電能之結構」,其所產生 之功效’配合圖式’舉一本案之較佳實施例詳細說明如下。 …請參閱第-圖所示,本案之結構主要包括有:溫度導引 單元1、熱電半導體2、散熱單元3、穩壓單元4、電能儲 存單元5以及輸出單元6等,其中·· 該溫度導引單元1.,作用為收集熱能,其需以埶傳導性 良好之材質製成,例如以鋁材質製成,或以可吸熱之黑色材 貝更佳,該溫度導引單元i,一内端面與熱電半導體2緊密 貼合,以便將熱能儘可能完全傳導給熱電半導體2 ; * 該熱電半導體2 ,結構中具有兩個貼附端面2丄、2 2 ’以及電壓接腳2 3、2 4 ;傳统之靡用,及^ ^ 4 1寻、,’元(應用係將電壓接腳 23、24輸入電壓,俾令端面21 、2?公κ,丨立丄 ^ 1匕z刀別產生低溫與 高溫;而本案並不對電壓接腳23、24輸入電壓,而是欲 利用於端面2 1吸收熱能,以使熱電半導體2轉換該熱能而 提供電壓由電壓接腳2 3、2 4輸出; 散熱單元3,用以提供熱電半導體2之端面22散熱 用,其可貼附熱傳導性佳之鋁材,以達氣冷散熱之效用;^ 是利用貼附冷卻水箱,以達水冷散熱之目的;> ,/ 穩壓單元4,可將由電壓接腳2 3、24輪出之電壓藉 6 M3 05264 習知Μ電子電路達成穩定„之目的,以便由輪 取得之電壓穩定俾便應用; 電能錯存單元5,可將前述產生之電能予 留待需使用時再釋出; 可儲存 輸出單元6 ,作用為輸出電能。 2溫度導引單元!,可製成盤狀外形以利集熱,並可 :之對向機具、引擎、鋼爐等熱源,顯見前述熱源皆為現有 外花費成本即可以取得,如此一來,便 經潸之方式發電。 综上所述,本新型「利用熱能產生電能之結構」,其首 創藉由既有之熱能,配合埶電 期以h “ . 一 +導體將该熱能轉換成電能, ‘ ^電’且不會有火力、核能發電等影響環保 夫失,對於人類未來之電絲得有著突破性的 ❹容完全符合新型專狀取得要件。 以利用,於由士主么土说β /生呆上石隹貝付 知悉之技術::宰Π物或公開使用’且非為公眾所 題並達成相關使用者與=解術中長期存編 非能輕易完成。本案富具專利法規定之「產;=新〒: 穎性」與「進步性」等要件mf業利用性」、「新 詳查,並儘早為准+ _ 2依法“專利’懇請鈞局 權,俾勵創新。之審定’以保護申請人之智慧財產 本:型雖藉由前述實施例來描述,但 I:可型之精神而達成,並由熟悉此項技= 專利範圍所界U準Λ亚不以此為限制’應依後附之申請 M305264 【圖式簡單說明】 第一圖:係為本新型之結構方塊示意圖。 【主要元件符號說明】 1 :溫度導引單元 2 :熱電半導體 21:熱電半導體端面 f 22:熱電半導體端面 2 3 :電壓接腳 2 4 :電壓接腳 3 :散熱單元 4 :穩壓單元 5 :電能儲存單元 6 ··輸出單元 .
8

Claims (1)

  1. M305264 九、申請專利範圍·· 1、一種「利用熱能產生電能之結構」,包括: —溫度導引單元,可收集熱能; —熱電半導體,結構中具有兩個貼附端面以及電壓接 腳’其中一貼附端面係與溫度導引單元連結貼附; —散熱單元’用以提供熱電半導體之其中一端面散 包旎儲存單元,可儲存電能; 輪出單元,可輸出電能。 2、 如申請專利範圍第1項所诚「 之結構」,其中今⑽声墓 、 利用熱能產生電能 τ成/皿度導引單元,得 材製成為佳。 ’、熱傳導性良好之鋁 3、 如申請專利範圍第丄或2 "能之結構」’其中該温度導引單元、斤述「利用熱能產生 4、 如中請專利範圍第丄項 /黑色㉝材製成。 之結構」,其中 、;L利用熱能產生f & /曰 一甲5亥貼附於熱電半導俨 座玍兒月匕 付以虱冷或水冷一·〜端面之散熱單元, 叭丹肀一種實施。 9
TW95213597U 2006-08-02 2006-08-02 Electricity generation system using thermal energy TWM305264U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
TW95213597U TWM305264U (en) 2006-08-02 2006-08-02 Electricity generation system using thermal energy

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
TW95213597U TWM305264U (en) 2006-08-02 2006-08-02 Electricity generation system using thermal energy

Publications (1)

Publication Number Publication Date
TWM305264U true TWM305264U (en) 2007-01-21

Family

ID=38435756

Family Applications (1)

Application Number Title Priority Date Filing Date
TW95213597U TWM305264U (en) 2006-08-02 2006-08-02 Electricity generation system using thermal energy

Country Status (1)

Country Link
TW (1) TWM305264U (zh)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI410559B (zh) * 2011-11-15 2013-10-01 Univ Chienkuo Technology Engine cooling circulating water heat generating mechanism

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI410559B (zh) * 2011-11-15 2013-10-01 Univ Chienkuo Technology Engine cooling circulating water heat generating mechanism

Similar Documents

Publication Publication Date Title
Omer et al. Heat pipes thermoelectric solar collectors for energy applications
BR112015030913A8 (pt) dispositivo de processamento auto energizado, dispositivo de computação e sistema
GB2518083A (en) Method and system for high efficiency electricity generation using low energy thermal heat generation and thermionic devices
Hashim Full-spectrum solar energy harvesting using nanotechnology-enabled photovoltaic/thermoelectric hybrid system
TW201010104A (en) A solar energy recycling device and method
TWM305264U (en) Electricity generation system using thermal energy
bt Manaf An Applied Comparison Study on Thermoelectric Energy vs. Solar Energy
CN104571407A (zh) 电脑温差发电散热装置
Mohan et al. Solar And Wind Powered Hybrid System for Electric Vehicles using MPPT
Saadah et al. Graphene-enhanced thermal interface materials for heat removal from photovoltaic solar cells
Hashim et al. Investigate the maximum power output from solar cells for integration with thermoelectric generator in a hybrid solar energy system
Goumin Development of Thermoelectric Portable Device DC to AC Generator
Olanrewaju Multidomain modelling of multichip SiC power modules
Marangoni et al. Validação de protótipo de placa fotovoltaica híbrida: Validation of a hybrid photovoltaic prototype
Asnawi Developmen and Performance Analysis of Photovoltaic-Thermoelectric (PV-TE) Hybrid Module with Passive Cooling Element by using Labview
Tchertchian Hybrid plasma-semiconductor devices
bin Asri Energy Harvesting from Rooftop Ventilation Turbine
PDA AZIZ et al. A Hybrid Wind Generator Design for Low Wind Speed Application
Mugume Design and implementation of a low cost thermo electric generator for a rural homested to solve for electricity inaccessibility
CEB Japan International Cooperation Agency (JICA): National Transmission and Distribution Network Development and Efficiency Improvement Project-Contract Agreement 2018
Golzar et al. In this research, a Combined Cooling, Heat and Power (CCHP) system based on a solid oxide fuel cell (SOFC) is introduced. In order to obtain a solution, the reforming, electrochemical and thermal models are introduced and solved simultaneously. In order to use the part of heat that is more than demand, two scenario are suggested. In both scenarios excess heat is used to steam generation. In the first scenario, generated steam is injected to gas turbine. This causes to obtain 1.3 kW more power and improve trigeneration efficiency about 1.27%. In the second scenario, generated steam is used in steam turbine for power generation. Second scenario increases the output power by 1.7 kW and improves trigeneration efficiency about 1.7%. Therefore, in the case that the excess heat is recovered, an improved energy conversion system efficiency can be about 85%.
Shedge et al. Modelling and analysis of distributed generation sources and integration with AC grid using multilevel inverter
Richard Development of Thermoelectric Portable Device DC to AC Generator
RUSLI The Development of Portable Charger Using Wind or Water
Kohpayma Anionic structure of DST with various acceptors in DSSCs

Legal Events

Date Code Title Description
MM4K Annulment or lapse of a utility model due to non-payment of fees