스크랩

구간

각종 산업로의 열관리, 열정산 및 설계요령, 열수지계산

강대용 저 | 북랩 | 2015년 11월

북트리

정가
$50.00
판매가
$27.50 (45%↓) 최저가 보상
적립금
$0.55 (2%P)
출고예상일
2026년 10월 09일 수령예상일 안내
북카트 담기 바로구매하기 위시리스트담기

평점 -  ·  리뷰 0

리뷰 쓰기

ISBN : 9791155857830 / 528쪽 182 x 257 (㎜)

이 상품에 궁금하신점이 있으세요? 1:1상담문의

추천inside
Adobe Flash Player 가져오기

이 분야의 베스트셀러

아래의 도서와 구매하시면 이 도서들의 적립금을 즉시적용해 드립니다.

책 소개

출판사 리뷰

출판사 서평 이 저서는 열관리 실무자와 이공대학생, 기술 행정직, 각종 공업용 로爐 생산업체의 실무자에게 조금이나마 도움이 되고자 저술한 것이다. 특히 열관리기술수험생을 위한 참고서로도 좋은 자료가 된다고? 보며, 많은 예제와 해답을 써서 이해가 빠르게 힘썼다. 이 책에는 많은 도표를 실었으나 그중 열관리관계제량일람표(표 1.1) 개체열료시험일람도(도 4.1) 및 연료연소경과일람표(표 5.1과 표 5.2)는 이것들에 관련된 계산을 할 때 극히 편리하다고 생각한다. 특히 연소문제에서는 연료의 성분, 화학반응, 연소 가스 성분 등의 관계가 혼란되기... 이 저서는 열관리 실무자와 이공대학생, 기술 행정직, 각종 공업용 로爐 생산업체의 실무자에게 조금이나마 도움이 되고자 저술한 것이다. 특히 열관리기술수험생을 위한 참고서로도 좋은 자료가 된다고 보며, 많은 예제와 해답을 써서 이해가 빠르게 힘썼다. 이 책에는 많은 도표를 실었으나 그중 열관리관계제량일람표(표 1.1) 개체열료시험일람도(도 4.1) 및 연료연소경과일람표(표 5.1과 표 5.2)는 이것들에 관련된 계산을 할 때 극히 편리하다고 생각한다. 특히 연소문제에서는 연료의 성분, 화학반응, 연소 가스 성분 등의 관계가 혼란되기 쉬우나, 표 5.1 또는 표 5.2와 대조하면서 계산할 때는 일목요연해서 혼란이 생기지 않는다. 많은 후배와 대기업의 젊은 엘리트 사원들이 공업용 로의 설계와 플랜트 프로젝트를 수행하면서 프로세스 중의 핵심이 되는 로의 난해함 때문에 여러 외서를 구독하기 어려워 저자 본인에게 조속히 우리말 참고서를 저술하도록 충동했고, 본인이 대학생활과 연구소 생활을 거쳐 산업로 업계에 종사한 지도 어언간 삼십여 년이 되어 그동안 경험한 것들을 토대로 이 저술을 하게 된 것이다. -본문 ‘머리말’ 中에서 이 책의 구성 제1편 열관리에 관한 제 계산법 제1장 열관리 관계 제량 제2장 열과 증기 제3장 전열계산 제4장 연료시험법 제5장 연소계산 제6장 열정산 제7장 잡제雜題 제8장 열정산의 항목 및 계산방법 제2편 열관리와 열관리 계산에 필요한 기술자료 부록 열관련기술자료

저자 소개

경상북도 월성생
한양대학교 공과대학 화학공학과 졸업
국공업연구소 요업과
1973년~1975년 일급열관리사 열수지계산강의 및 출제위원
1984년~1986년 동자부 에너지절약대책 전문위원
1970년~1987년 조달청 기계설비분야 기술고문
1986년~1988년 포항로공업주식회사 설립 부사장
한국산업로공업협동조합 초대 이사장
세원로건설주식회사 대표이사 사장

목차

목차
머리말 ··················································································································· 4
제1편 열관리에 관한 제 계산법 ·························································· 12
제1장 열관리 관계 제량 ········································································ 12
제2장 열과 증기 ······················································································ 21
2.1 열에 의한 물체의 팽창 ·························································· 21
2.2 완전가스의 특성식열 및 가스정수 ····································· 22
2.3 가스와 증기 ············································································· 23
2.4 비열 ··························································································· 24
2.5 혼합 가스 ················································································· 24
2.6 열역학의 2법칙 ······································································· 25
2.7 엔탈피와 ENTROPY ······························································ 26
2.8 단열변화와 등압변화 ····························································· 27
2.9 수증기 ······················································································· 27
2.10 습한 공기 ··············································································· 30
2.11 관내의 유동에 의한 압력강하 ··········································· 32
2.12 조름絞······················································································ 34
2.13 증기 Accumulator ······························································· 35
2.14 열효율 ····················································································· 36
제3장 전열계산 ························································································ 79
3.1 열전도 ······················································································· 79
3.2 열전달 ······················································································· 82
3.3 열관류 ······················································································· 84
3.4 열방사 ······················································································· 88
3.5 전열 관계의 문제 ··································································· 90
제4장 연료시험법 ·················································································· 134
4.1 고체연료시험 ········································································· 134
4.2 전수분과 습분측정법(KS M 8811-1963) ······················· 136
4.3 공업분석(KS M 8812-1963) ············································· 136
4.4 원소분석(KS M 8813-1963) ············································· 137
4.5 발열량측정법(KS M 8814-1963) ····································· 139
제5장 연소계산 ······················································································ 154
5.1 연소의 기본반응식과 양적 관계 ······································· 154
5.2 연료의 발열량 ······································································· 156
5.3 연소에 필요한 공기량 ························································· 158
5.4 연소가스양과 그 조성 ························································· 159
5.5 연소경과의 일반적 해석 ····················································· 162
5.6 연소가스의 조성에 의한 연소상황의 판단 ····················· 162
5.7 연소온도 ················································································· 166
제6장 열정산 ·························································································· 215
6.1 연소효율 ················································································· 215
6.2 열정산 ····················································································· 216
6.3 물질정산 ················································································ 220
6.4 열정산의 문제 ······································································ 222
제7장 잡제雜題······················································································· 273
제8장 열정산의 항목 및 계산방법 ···················································· 313
8.

top